DeJong & Lebet designing new Mississippi riverboat

Naval architects and marine engineers DeJong & Lebet, Inc., Jacksonville, FL, have been contracted by the New Orleans Steamboat Co., owners of the Natchez, to design a new 600-passenger riverboat for Mississippi River operation.

DeJong & Lebet’s Andy Lebet tells Marine Log that the new river steamer will be a traditional powered vessel, with Tier 3 engines, props and built to U.S. Coast Guard Subchapter K requirements. In keeping with the New Orleans Steamboat Co.’s aim of offering top-notch cuisine and excellent customer service, the riverboat will be outfitted with a full galley and dining rooms on three decks, with two dumb waiters and a passenger elevator.

Right now, New Orleans Steamboat Co., has requested pricing from shipyards on building the vessel. According to New Orleans Steamboat Co. spokesperson Adrienne Thomas, those bids are expected to be in in January. Thomas says the new vessel would be delivered in the second quarter of 2017.

Meanwhile, Lebet says his company has been busy, with work on three Circle Line Sightseeing ferries being built at Gladding-Hearn Shipbuilding in Somerset, MA, and the design of a 400-passenger, Subchapter K vessel for Winston Knauss of Sir Winston Yachts. Lebet says that the new boat will be the 16th that DeJong & Lebet has worked on with Sir Winston Yachts. Many of the vessels are working in cities around the U.S.

 

 

ClassNK issues SoC to two Gujarat ship recyclers

Although the convention has yet to enter into force, ClassNK says that the two facilities — Shree Ram Vessel Scrap Pvt. Ltd  and Leela Ship Recycling Pvt. Ltd — have both carried out substantial improvements in a bid toward achieving safer and greener ship recycling and have developed the Ship Recycling Facility Plans (SRFPs) required for a competent authority’s certification under the convention. 

In addition to conducting on-site inspections before issuing the SoC, ClassNK reviewed the SRFPs prepared by Shree Ram and Leela, which comply with requirements of the HKC, and confirmed that their ship recycling processes follow their respective SRFPs  

The SoC are issued based on purely technical verifications of the facilities by ClassNK, which has so far done the same for ship recycling facilities around the world.

ClassNK says it will continue encouraging safe and environmentally sound ship recycling in accordance with the HKC through its issuance of SoC to facilities that meet the HKC standards.

  • News

The Best Ships of 2015

1. ISLA BELLA, WORLD’S FIRST LNG-FUELED CONTAINERSHIP (pictured above)

TOTE Maritime’s 3,100-TEU containership Isla Bella was due to set sail for San Juan, PR, on November 24, marking the first time a ship in a Jones Act liner service will burn Liquefied Natural Gas (LNG) as a marine fuel.  When the 764-foot-long Isla Bella transited the Panama Canal back on October 30 on her way to the Port of Jacksonville, Panama Canal Administrator/CEO Jorge L. Quijano called her “a true engineering feat.”

Among the principal maritime stakeholders involved in the successful launch of the Isla Bella and her sister Perla del Caribe are: owner and operator TOTE, shipbuilder General Dynamics NASSCO, designer DSEC (Daewoo Shipbuilding and Marine Engineering’s ship design arm), engine licensee MAN Diesel & Turbo, classification society ABS, and regulator U.S. Coast Guard.

The two Marlin Class containerships were contracted by TOTE in December 2012 and are being built at a total cost of about $375 million.

The 764-ft Isla Bella is equipped with the world’s first dual-fuel slow-speed engine, an 8L70ME-GI built by Korea’s Doosan Engine, under license from MAN Diesel & Turbo. With a 3,100 TEU capacity, the LNG-powered Isla Bella reduces NOx emissions by 98 percent, SOx emissions by 97 percent and CO2 emissions by 76 percent. The technology makes the ship one of the world’s most environmentally friendly containerships afloat.

During LNG will allow the Marlin Class Isla Bella to be fully compliant with strict emissions regulations while operating in both the North American Emissions Control Area and the U.S. Caribbean ECA.

At the time of her delivery, Kevin Graney, Vice President and General Manager of General Dynamics NASSCO, said, “Successfully building and delivering the world’s first LNG-powered containership here in the United States for coastwise service demonstrates that commercial shipbuilders, and owners and operators, are leading the world in the introduction of cutting-edge, green technology in support of the Jones Act.”

The moment is bittersweet for TOTE as it unfolds within the shadow of the tragic loss of the SS El Faro with all hands aboard during Hurricane Joaquin on October 1. The ship’s crew of 28 and five Polish nationals onboard were lost. The U.S. Navy, working with the National Transportation Safety Board (NTSB), has located the ship in waters 15,000 feet deep near the Crooked Island in the Bahamas.

The Isla Bella will be joined by the Perla del Caribe in Puerto Rico cargo service in the first quarter of 2016.

 


 

2. OHIO, LNG-READY PRODUCT TANKER
The 330,000 bbl Ohio was became the first product tanker to be built with the future consideration for the future use of LNG as fuel when it was delivered earlier this year to Crowley Maritime Corp. by Aker Philadelphia Shipyard, Philadelphia, PA.

New OhioWebThe Ohio received American Bureau of Shipping’s (ABS) LNG-Ready Level 1 approval, meaning Crowley has the option to convert the tanker to Liquefied Natural Gas (LNG) propulsion in the future.

The Ohio along with her three ships being built at Aker Philadelphia are based on a proven Hyundai Mipo Dockyards (HMD) design which incorporates numerous fuel efficiency features, flexible cargo capability, and a slow-speed diesel engine built under license from MAN Diesel & Turbo. The 600 feet long Ohio is capable of carrying crude oil or refined petroleum products.

Crowley’s Seattle-based, naval architecture and marine engineering subsidiary Jensen Maritime is providing construction management services for the product tankers. Jensen now has an on-site office and personnel at the Philadelphia shipyard to ensure strong working relationships with shipyard staff and a seamless construction and delivery program.

“We are excited to offer our customers cutting-edge technology available in these new tankers, which not only embraces operational excellence and top safety, but also offers the potential to be powered by environmentally friendly LNG in the future,” said Crowley’s Rob Grune, senior vice president and general manager, petroleum and chemical transportation. “Adding these new Jones Act tankers to our fleet allows us to continue providing our customers with diverse and modern equipment to transport their petroleum and chemical products in a safe and reliable manner.”


3. NEW MINI TANKER FOR NY HARBOR
Blount Boats, Inc., Warren, RI, delivered the Chandra B, a new mini-tanker for American Petroleum & Transport, Inc., Miller Place, NY. The 79 ft by 23 ft, double-hull bunkering tanker operates in New York Harbor and New Jersey supplying fuel to ferries, dinner boats, dredges, and other vessels.

ChandraBPropulsion power for the tanker is supplied by two EPA Tier 3-compliant Cummins Model QSL9, six-cylinder diesel engines rated at 330 hp at 1,800 rev/min with ZF Model W325 marine hydraulic gears that will have 4.91:1 reduction ratio. The self-propelled Chandra B is equipped with a 50 hp Wesmar hydraulic bow thruster, providing it with enhanced maneuverability.

Designed by Farrell & Norton Naval Architects, Newcastle, ME, the Chandra B is built to USCG Subchapter “D” specifications and is less than 100 gross tons. Farrell & Norton also designed one of the tank barges in American Petroleum & Transport’s fleet. The double-hull Chandra B will replace the 1979-built single hull Capt. Log in American Petroleum & Transport’s fleet.

American Petroleum & Transport (APT) has had to retire all of its single-hull tankers because of OPA 90 regulations.

APT vessels crisscross New York Harbor delivering ultra low sulfur diesel to clients such as Circle Line, New York Water Taxi, Great Lakes Dredge & Dock, and Sterling Equipment, as well as for the auxiliary engines of larger ships. The Chandra B has cargo fuel tankage is designed to hold a capacity of 56,450 gallons.

 


 

 4. SAKIGAKE, JAPAN’S FIRST LNG-POWERED TUG
This past year, NYK took delivery of Sakigake, Japan’s first LNG fueled tug. Built at NYK’s wholly owned subsidiary Keihin Dock Co’s Oppama shipyard, the 37.2 m x 10.2 m Sakigake is operated by Wing Maritime Service Corporation, mainly in the ports of Yokohama and Kawasaki. Wing Maritime also operates the hybrid tug Tsubasa.

Sakigake webThe Sakigake is equipped with two Niigata 6L28AHX-DF dual-fuel engines, each developing 1,618 kW. Propulsion is supplied by two Niigata Z-Pellers.

The DF engines can burn either LNG or diesel oil. The environmental advantages of operating on LNG as compared with conventionally powered tugs that use marine diesel oil is Sakigake emits about 30 percent less CO2, 80 percent less NOx, and no SOx.

While the project posed several challenges—the relatively small size and limited amount of space on the tug, and the large variation in engine power—Keihin Dock was able to achieve the desired level of environmental performance while maintaining the same hull form and steering performance of existing tugs. Keihin Dock worked closely with both Niigata Power Systems and Air Water Plant & Engineering Inc. to develop equipment for supplying LNG.

The project was supported by subsidies from Japan’s Ministry of Economy, Trade and Industry and the Ministry of Land, Infrastructure and Transport. ClassNK also provided joint research support.

 


 

5. JS INEOS INSIGHT, FIRST ETHANE-POWERED SHIP

Emblazoned on the JS Ineos Insight’s hull is the phrase, “Shale Gas for Manufacturing.” Built specifically to transport shale gas from the U.S. to Europe, the JS Ineos Insight is the first of eight 180m x 26.6m ethane gas carriers built by China’s Sinopacific for Denmark’s Evergas.

 

JSINEOSINSIGHT 2Named on July 14, the JS Ineos Insight can not only carry ethane, LPG or LNG, but can also burn ethane, LNG and conventional diesel in its two Wartsila 50DF dual fuel engines.

The eight Ineos ships will transport over 800,000 tons of ethane gas at -90°C per annum across the Atlantic from the U.S. to Norway and Scotland.

Classed by Bureau Veritas, the Dragon vessels were originally designed as dual-fuel LNG/diesel-powered vessels, with two 1,000 m3 LNG tanks on deck powering two Wärtsilä 6L20 DF main engines with a total output of 2,112 kW and two shaft generators with a total output of 3,600 kW power. The vessels will initially transport ethane from the U.S, to the U.K. Ineos refineries, the ability to also burn ethane was added to allow use of the cargo gas as fuel. 

At the christening of the JS Ineos Insight and the JS Ineos Ingenuity, Ineos Chairman Jim Ratcliffe says, “Today is a landmark day for both Ineos and Europe. We have seen how U.S. shale gas revolutionized U.S. manufacturing and we believe these huge ships will help do the same for Europe. Ineos together with Evergas has commissioned eight brand new ships, accessed hundreds of miles of new pipeline and built two enormous terminals to get U.S. Shale gas to Europe. The scale of the whole project is truly breathtaking.”

According to Bureau Veritas Business Development Manager Martial Claudepierre, the ability to burn ethane and LNG as fuel in the Dragon Class ships “is a major step forward in the use of clean fuels.” He says that BV worked with Evergas and the Danish Maritime Authority to verify and ensure that the use of ethane is at least as safe as required by the IGC and will not impair the engine compliance with MARPOL Annex VI.  

According to Claudepierre, using ethane required extra engine room ventilation and additional gas detection, plus modifications to the main engines including a lower compression ratio, different turbocharger nozzles and de-rating of the engine to cope with the lower knocking resistance of ethane. “But,” he says, “The gains in not carrying an additional fuel and in environmental performance from being able to burn clean fuel throughout the voyage are significant.”


 

6. MARJORIE C, NEW JONES ACT CONRO
Capable of carrying up to 1,200 cars and 1,400 TEU of containers, the Combination Container and Roll-on/Roll-Off (ConRO) vessel Marjorie C entered Jones Act service this year between the U.S. West Coast and Hawaii.

honolulu 13231 webBuilt by VT Halter Marine, Pascagoula, MS, the Marjorie C was engineered from a proven design by Grimaldi at Croatia’s Uljanik Shipyard. The 692 ft x 106 ft ConRO has a draft of 31 ft, deadweight of 21,132.5 metric tons, with nine decks. It has a stern ramp capacity of 350 metric tons. The ship has a service speed of 21.5 knots.

The vessel’s design incorporates the highest level of operating efficiencies as well as reduced environmental impacts. The sister vessel, Jean Anne, was Pasha Hawaii’s first Jones Act vessel and has been serving the Hawaii/Mainland trade since March 2005. The Marjorie C entered into service this past May.

The ship is named in honor of Pasha Hawaii’s President and CEO George Pasha, IV’s grandmother, Marjorie Catherine Ryan.

“After more than three and a half years of planning and construction, we are pleased to unveil a ship that has been designed to not only accommodate the varying needs of our customers, but a vessel that minimizes our carbon footprint through extensive fuel consumption efficiencies and other green technologies,” said Pasha Hawaii’s President and CEO, George Pasha, IV. “With the addition of the Marjorie C we can now offer customers increased service and capacity between the West Coast and Hawaii trade lane on vessels providing superior reliability and cargo protection.”


7. NEIL ARMSTRONG, FIRST OF NEW CLASS OF RESEARCH VESSELS
This past Halloween, the first-of-class oceanographic research vessel R/V Neil Armstrong (AGOR 27) set sail from Dakota Creek Industries, Anacortes, WA, to San Francisco, CA, on its inaugural voyage. As we went to press, the Neil Armstong was waiting its turn to pass through the Panama Canal on its way north to the Woods Hole Oceanographic Institute in Woods Hole, MA. The ship will be operated by the Woods Hole Oceanographic Institution under a charter party agreement with Office of Naval Research (ONR).

Armstrong AerialsC00069.16Designed by Guido Perla & Associates, Inc., Seattle, WA and owned by the U.S. Navy, Neil Armstrong is 238 ft x 50 ft with a depth of 22 ft and draft of 15 ft. The first of two research vessels, the Neil Armstrong has four main 1,400 kW diesel generators, two 876 kW propulsion motors, and two controllable pitch propellers. The ship has a sustained speed of 12 knots and maximum speed of 12.8 knots.

The ship was classed by ABS Under 90 meter rules A1, Circle E, AMS, ACCU, NIBS, Ice Class D0, UWILD, 46 CFR Subchapter U, SOLAS (Oceanographic Vessels), MARPOL.

The Neil Armstrong’s sister vessel, the R/V Sally Ride (AGOR 28), is also under construction at Dakota Creek Industries.

During acceptance trials, Mike Kosar, Program Manager for the Support Ships, Boats and Craft office within the Program Executive Office (PEO), Ships, says, “The results of these tests and the outstanding fit, finish and quality of the vessel, stand as a testament to the preparation and effort of our entire shipbuilding team. It reflects the exceptionalism of AGOR 27’s namesake, Neil Armstrong.”

Neil Armstrong Class AGORS incorporate the latest technologies, including high-efficiency diesel engines, emissions controls for stack gasses, and new information technology tools both for monitoring shipboard systems and for communicating with the world. These ships will provide scientists with the tools and capabilities to support ongoing research including in the Atlantic, western Pacific and Indian Ocean regions across a wide variety of missions.

The lab areas include the main lab of 1,023 ft2, the wet area of 398 ft2, computer area of 311 ft2, and staging area bay of 303 ft2.

Neil Armstrong will be capable of assisting with integrated, interdisciplinary, general purpose oceanographic research in coastal and deep ocean areas. The vessel will operate with a crew of 20 with accommodations for 24 scientists.

 


 

8. BARZAN, FIRST OF NEW CLASS OF GAS READY BOXSHIPS
Recently named in a ceremony at shipbuilder Hyundai Samho Heavy Industries’ Mokpo, South Korea, shipyard, Barzan is the first in a series of six 18,800 TEU containerships ordered by Dubai headquartered United Arab Shipping Company (UASC). It is the first vessel to receive classification society DNV GL’s new GAS READY notation. Her five sister ships and eleven 15,000 TEU vessels of UASC’s newest eco-ship generation, will also receive the notation.

Barzan 3The ships have been designed and constructed to enable a quick and cost efficient retrofit to LNG fueling at a later stage. The GAS READY notation, with nominators (D, S, MEc, AEi) demonstrates that the vessel is in compliance with the gas fueled notation rules, that structural reinforcements to support the fuel containment system (LNG tank) have been verified (S), that the main engines installed can be converted to dual fuel (MEc ) and that the auxiliary engines installed can be operated on gas (AEi).

“We believe that this vessel, as well as the rest of the vessels in our new building program, demonstrates our commitment to technical innovation and eco-effectiveness,” says Jørn Hinge, President and CEO of UASC. “For UASC, achieving optimum efficiency levels is not a single initiative or project, it is a strategy and an ongoing commitment, and we will continue to work with DNV GL on the remaining newbuild vessels that have the lowest levels of CO2 output in their class.”

As well as being LNG ready, Barzan and her sister vessels incorporate several innovative energy saving methods, including a Siemens’ Siship SGM environmentally friendly drive and power generation system.

The Waste Heat Recovery System (WHRS) converts thermal energy from the exhaust gas from the main engines into electrical power to maximize the efficiency of the system.

The Barzan was expected to have an EEDI (Energy Efficiency Design Index) value that is close to 50 per cent less than the 2025 limit set by IMO, with a CO2 output per TEU that is more than 60 per cent lower than a 13,500 TEU vessel delivered just three years ago.

Barzan has been constructed to DNV GL class rules with the notations: 1A1 Container Carrier DG-P Shore Power E0 NAUT-OC HMON (A1,C1,G4) CLEAN BWM-T BIS TMON NAUTICUS (Newbuilding) GAS READY (D, S, MEc, AEi).

 


 

9. CROWN POINT, NEW GENERATION GREEN TUG
Tidewater Transportation and Terminals, Vancouver, WA, recently took delivery of the Crown Point, the first in a series of three 102 ft x 38 ft towboats being built at Vigor Industrial in Portland, OR.

CrownPointThe three towboats are the first new vessels to be built for the Tidewater fleet in 30 years, and are critical for the company to meet the anticipated rising customer demand on the Columbia-Snake River system. “The launching of the Crown Point, and the forthcoming Granite Point and Ryan Point vessels, marks an important step for Tidewater,” says Marc Schwartz, Maintenance & Engineering Manager at Tidewater. The vessels will strengthen our fleet, as well as reinforce Tidewater’s commitment to our customers, community, and environment.”

Tidewater operates the largest barge transportation and terminal network on the Columbia-Snake River system. The Crown Point joins the company’s current fleet of 16 vessels and 160 barges. Tidewater transports a wide range of cargo among a network of ports, terminals and grain elevators throughout the entire Columbia-Snake River system, which stretches some 465 miles of waterways. We also operate five strategically located terminals and five pipelines with key intermodal connections to railroads, highways and other pipelines.

Designed by CT Marine, Naval Architects and Marine Engineers of Edgecomb, ME, the Crown Point is an environmentally friendly tug with EPA Tier 3 compliant diesel engines that reduce air emissions and improve fuel efficiency. Main propulsion is supplied by two Caterpillar 3516C EPA Tier 3 certified diesel engines producing 2,240 bhp, each at 1,600 rev/min. The engines drive two 92 in. x 100 in. fixed pitch, stainless steel propellers through CT28 Kort Nozzles capable of a service speed of 8 knots. Operating in the Columbia River Gorge high winds, extreme currents and swells can be considered normal piloting conditions. That’s why the Crown Pount abd her sister towboats are fitted with an enhanced steering system using four steering and four flanking rudders was designed. The towboat has a wheelhouse with exceptional all-round visibility through full height windows, leading edge navigation and communications equipment, and enhanced accommodations for the captain and crew.

“During the last year and a half, a great deal of effort went into designing, engineering and building a towboat that would meet or exceed performance parameters,” explains Bruce Reed, Tidewater COO and Vice President. “With crew endurance being a priority, we employed Noise Control Engineers, Billerica, MA to develop a sound and vibration control package for the vessel. By incorporating Christie and Grey vibration control mounts and comprehensive acoustic insulation, noise levels register at less than 60 decibels in the accommodations during vessel operation.”

Other equipment onboard the Crown Point includes two C7.1, Tier 3 generators, rated at 480v, 200 kW at 1,800 rev/min.  The generators are controlled through an automatic transfer system that ensures the vessel will recover from a generator power loss in less than 30 seconds. Deck machinery includes seven Patterson WWP 65E-7.5, 65-ton electric deck winches, with pilothouse remote operation and local push button control stations on the main deck. Each winch has Samson 1 3/8” Turbo 75 Synthetic Line.
 
In order to use the newest technology and minimize power usage, variable frequency drives were used in all major rotating machinery applications and LED lighting was employed in both interior and exterior lighting applications. The vessel is fitted with a Kidde NOVEC 1230 fire suppression system. Centralized fire detection and alarms cover both the machinery spaces and accommodations.

 


 

10. MULTRATUG 28, A HYBRID TUG
This past year, Netherlands-based towage and salvage specialist Multraship took delivery of Multratug 28, a Damen ASD 2810 Hybrid tug built at Damen Shipyards Galaţi, in Romania, as part of a fleet expansion program.

ASD Tug 2810 Multratug 28Classed by Lloyd’s Register, the hybrid Multratug 28 is 28.67m x 10.43m, with a maximum draft of 4.9m. The propulsion system includes two MTU 16V4000M63R diesel engines with one MTU 12V 2000 M41B propulsion genset of 800 kvA, 440V-60Hz. The battery pack are two 120 kWh. Two Rolls Royce US205 azimuth thrusters provide propulsion. The tug has a bollard pull of 62 tons, diesel direct speed of 13 knots, diesel electric speed of 8 knots, and battery pack speed of 4 knots.

The ASD 2810 HYBRID is developed to save fuel by 30% and to reduce emissions by 50%. To achieve this the vessel is provided with a propulsion system that can operate diesel-direct, diesel-electric or fully-electric. Fully-electric sailing on the batteries, with zero emissions and extremely low noise levels, is possible for time periods of up to one hour at a speed of 4 knots.

In June 2014, the first Damen ASD 2810 Hybrid was delivered to Iskes Towage & Salvage. Being green does not mean sacrificing power, the Bernardus still has a bollard pull of 60 tonnes. The Bernardus operates in the Port of IJmuiden near Amsterdam, the Netherlands.

“This hybrid tug is a unique concept,” says Dinu Berariu, Project Manager at Damen Shipyards Galaţi. “It features a diesel-direct, diesel-electric and battery powered propulsion system. This hybrid configuration will enable Multraship to lower fuel costs by up to 30 percent and emissions by up to 60 percent.”

Headquartered in the harbor city of Terneuzen, Multraship operates in the ports around the Scheldt estuary, in Zeeland seaports and the Belgian ports of Ghent and Antwerp, as well as the Bulgarian port of Burgas on the Black Sea.

Multraship’s fleet expansion program stems from its increasing customer base in the offshore sectors as well as growing demand for harbor towage services.


11. VASCO DE GAMA, FIRST 18,000 TEU BOX SHIP FROM A CHINESE YARD
As we went to press, the world’s third largest containership company, CMA CGM Group, Marseilles, France, was closing in on the acquisition of Singapore-based NOL, the world’s fourth largest. It successful, privately held CMA CGM would leapfrog over MSC to become number two in the world.

CMACGM Vasco de GamaA big part of CMA CGM’s success is its investments in larger, more energy efficient tonnage to improve pricing and economies of scale. An excellent example is the CMA CGM Vasco De Gama delivered this summer to CMA CGM by China State Shipbuilding Corporation (CSSC).

With a length of 399 m and breadth of 54 m, the 18,000 TEU vessel is the largest containership in the CMA CGM Group and is the first 18,000 TEU containership to be built by a Chinese shipyard. CSSC is also building two more of the giant box ships, the CMA CGM Zheng He and CMA CGM Benjamin Franklin.

Flying the U.K. flag, CMA CGM Vasco De Gama is equipped with the latest environmental technologies including a latest generation main engine, a twisted leading edge rudder with bulb from Germany’s Becker Marine Systems and an optimized hull design. These innovations decrease the vessel’s CO2 emissions by 10% compared to the previous vessel generation. With an estimated emission of 37g of CO2/km for each container carried, the giant containership provides one of the world’s greenest goods transportation options.

The ship’s environmental footprint meets the 2025 energy efficiency regulations.

CMA CGM Vasco De Gama calls at 11 different countries on CMA CGM Group’s French Asia Line (FAL) service between Europe and Asia.

CMA CGM is also building three 20,600 TEU containerships—the largest yet built—at Korea’s Hanjin Heavy Industries. Those three ships will each have full spade twisted rudders (TLKSR) from Becker Marine Systems and Becker Twisted Fins. Both Becker products will make a significant contribution to the vessel’s efficiency improvement.

 


 

12. ESVAGT FROUDE, SPECIALIZED WIND FARM VESSEL
As of September this past year, Denmark’s ESVAGT had new owners; 3i Infrastructure and AMP Capital acquired the shares of A.P. Møller-Maersk Group and ESE-Holding. While ESVAGT’s primary market will continue to be oil and gas support and standby rescue in the North Sea, the company is broadening its portfolio with a push into the offshore wind energy market.

EsvagtFroude243This past summer, ESVAGT entered the offshore wind industry with the christening of the world’s first purpose-built Service Operation Vessels at Siemens AG in Rostock and Hamburg, Germany.

The Service Operation Vessels (SOV), Esvagt Froude and Esvagt Faraday are each 83.7m x 17.6m, with a draft of 6.5m. Both of the Danish-flag SOVs were built in Norway by Havyard Ship Technology and are based on a Havyard 832 SOV design. The SOVs both have diesel-electric propulsion and DC power systems, enabling optimized fuel and energy efficiency and crew comfort. The service speed is 14 knots.

The SOVs are essentially “service stations at sea,” offering technicians a safe, efficient platform for wind turbine maintenance. Using the ship’s DP system, the ship can connect to wind turbines via its Ampelmann A-type Walk-to-work hydraulic gangway system offering a stable, safe platform to connect to the wind turbine.

Each offers accommodations for 60 people. The vessels are designed to reduce the level of vibration and increase the level of comfort for everyone onboard.

“As a supplement to the “Walk-to-Work” gangway, we have equipped the Service Operation Vessels with the newly developed ESVAGT Safe Transfer Boats (STB 7 and STB 12),” says Søren Nørgaard Thomsen, Managing Director for ESVAGT. “They are designed in-house based on more than 20 years of experience in boat development and more than 100,000 boat transfers. These boats will in a safe manner provide the industry with additional efficiencies and cost reductions.”

Each of the ships carry ESVAGT STB 7B Safe Transfer Boat, ESVAGT STB 12A Safe Transport Boat, ESVAGT FRB 15C Fast Rescue Boat.

A third ESVAGT SOV is on order and under construction at Havyard for delivery in 2016. The third ESVAGT SOV will service the 400 MW Dudgeon Wind Farm off the East Coast of England in the fall of 2016.

  • News

Ultra Deep orders new design DSCV plus option

UDS says the order is in line with its strategic plan to spearhead the development and operation of efficient, cost-effective diving and support vessels in the oil and gas industry.

Andy Warhol is planned to be delivered mid 2018 with the second vessel following at the end of 2018. Vessel number two is to be confirmed by end of April 2016.

Norway’s Marin Teknikk has entered into a contract with Wuchang Shipbuilding for delivery of design and engineering for both ships.

The vessels are being built to a newly developed MT6023 DSCV design, and will be equipped with an 18 men diving system for operations down to 300 m water depth.

The MT6023 DSCV has been developed for demanding operations worldwide. The vessel will have a length of 103 meters and a breadthof 23 meters, top class accommodations for 120 persons plus 18 divers, two heave compensated subsea cranes, one 150 ton offshore crane with depth capability to 3,000 m water depth, and one 20 ton offshore crane for operation down to 300 m water depth. In addition, it includes arrangement for two WROVs (unmanned remote operated submarines/robots) for operation down to 3000 meters water depth.

Marin Teknikk says it has designed a cost efficient and functional Diving & Construction vessel with high focus on safety for the crew/divers, and following up designing environment-friendly, modern and advanced multifunctional offshore vessels to compete in a market with very low oil and gas prices.

With more than 800 sq.m open work deck area with deck strength of 10 ton/sq.m and a smaller storage on top of dive hangar, the design creates a good platform for the vessels operation and function.

The vessels will be built according to DNV GL requirements, included the new SPS code; DNV GL + 1A1, EO, SPS, DYNPOS AUTR, DK(+), HELDK-SH, COMF-V(3), CLEAN DESIGN, DSV-SAT, DSV SURFACE, CRANE, ICE C, NAUT-OSV(A), BWM-T, REYCYCLABLE.

“I am pleased by the positive response by oil majors and major diving companies to the design of our diving support vessels, and it affirms our company is heading in the right direction to build quality and size-appropriate vessels catered for the market,” says UDS CEO Shel Hutton. “The current slowdown in the market allows us time to ensure our designs are optimized and customized for relevance in the oil and gas industry. I am thankful to our partners, and supporters, especially Marin Teknikk, DNV GL, and the shipyard, which have supported the company’s vision, and realizing our plans to build these vessels. With these vessels Ultra Deep follows up the company’s strategic focus, and will be a spear point in the market.”

ultra deep pair

 

Austal to build two more Cape Class patrol vessels

The two 58.1 m monohull vessels will be delivered to the National Australia Bank in mid-2017 and subsequently chartered to the Commonwealth of Australia (Department of Defence) for a minimum term of three years.

The shipbuilder has successfully employed a similar off-balance-sheet charter of defense ships through the charter of Westpac Express to the U.S. Navy for 13 years.

The two vessels will be sustained by Austal in accordance with the in-service support offering provided to the eight existing Cape Class Patrol Boats designed and constructed by Austal and owned by the Australian Border Force.

Austal says it is providing a residual value guarantee to the National Australia Bank that may be exercised at the conclusion of the charter term.

In the event that the Department of Defence returns the ships at the end of the charter and National Australia Bank exercises the residual value guarantee option, then Austal will purchase the vessels at a pre\agreed price.

Austal CEO Andrew Bellamy said the contract would take the fleet of Cape Class Patrol Boats to ten vessels and reflected the quality and performance of the existing fleet of ships Austal recently delivered on time and on budget.

“It is also a terrific vote of confidence in Austal and the products we design, build and sustain at our Henderson shipyard in Western Australia. As Australia’s only ASX-listed prime contractor we are very well positioned to support the Commonwealth in its future continuous shipbuilding plans,” Mr. Bellamy said.

  • News

Transpetro cancels two LPG newbuilds at Vard Promar

It reported today that it has been notified that Petrobras Transportes S.A. (Transpetro) has terminated the contracts for two liquefied petroleum gas (LPG) carriers on order at 50.5% owned indirect subsidiary Vard Promar.

The vessels in question are the last two of a series of eight LPG carriers originally contracted at the Brazilian shipyard in June 2010, for delivery from Vard Promar between 2014 and 2016. The combined contract value for the series of eight vessels was $536 million.

The first of the eight vessels, the 8,000 cu.m Oscar Niemayer, was delivered this past July.

Singapore listed Vard, which is 55.63% controlled by Fincantieri, says that the construction of the two vessels that have now been canceled is “at a very early stage.”

Vard is currently reviewing its overall exposure to the Brazilian market, and it says that the termination of the contracts – if effective – is “expected to reduce the company’s overall exposure. At the same time, the company intends to claim compensation from Transpetro for damages in relation to the terminated contracts.”

Vard says the impact of the termination is not expected to have a material effect on the earnings per share of the Group for the financial year ending December 31, 2015.

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Electric & Hybrid: Call me Ishmael, no longer

Call me Ishmael. Melville’s famous opening line in his novel Moby Dick refers to an outcast and could once have been the motto of the hybrid and electric marine industry. There were a number of projects where hybrid and full electric drivetrains were prototyped and they worked well…for a while. The limitation was always the battery technology, where lead acid batteries were just not suited to this type of application. As a result, these projects and technologies were “interesting” with “lots of potential” but not a serious technology for the mainstream marine industry.

The advent of lithium ion batteries has fundamentally changed the value proposition for the hybrid and electric drivetrain. These batteries are smart, durable and have a lifetime that will ensure the customer is able to achieve their targeted Return on Investment (ROI). As a result, the hybrid and electric drivetrain has come of age.

To date, Corvus Energy has deployed over 30 MWh of its Lithium Polymer battery-based Energy Storage Systems (ESS) on over 45 projects. These vessels include large and small ferries, offshore supply vessels (OSVs), tugboats, research vessels, luxury superyachts and port cranes. Only two of these applications are for full electric ferries, the remainder are all hybrid vessels, but a common element is that both types of drivetrains make the vessel more efficient, as well as more environmentally sustainable.

Of course an ESS cannot create energy, but only stores it. The ESS therefore enables the vessel to use the cheapest energy available and shift it in time to the point where it is most cost effective. For a full electric this means the ESS is charged from shore using low cost energy and eliminates completely energy generated by costlier, on-board generators. For hybrids, it moves energy from the efficient portion of the generator’s load curve and replaces energy that would have been generated on the less efficient portion of the generator’s load curve.

Full Electric Drivetrains
At one time the round trip efficiency of an ESS was at 70% or less and the energy density was also not very high. This meant an ESS required a LOT of space on a vessel and did not actually store that much energy. The round trip efficiency on the Corvus ESS is now over 95% and the energy density is high enough that a space the size of a 20-foot container can store 650 kWh. This means that an ESS can now deliver enough power and energy to make a full electric drivetrain cost effective. Even with these improvements, full electric drivetrains still work best for applications where the duty cycle is relatively short such as a ferry with a route that is less than an hour between charging points. The 120-car Ampere ferry in Norway, for example, has a route which crosses Sognefjord between Lavik and Oppedal in 20 minutes and then recharges for 8 minutes from a shore-based charging station which uses the grid and another, smaller Corvus ESS to deliver a large amount of power into the vessel’s ESS in a short period of time. The shore-based charging station then recharges from the grid for about 48 minutes until the ferry returns.

The ferry operator, Norled, has other, diesel-fueled vessels on this route and based on a comparison has estimated that the Ampere is saving over 1 million liters of expensive, ultra-low sulfur diesel fuel per year. It is also saving 90% of the maintenance cost of the diesel engines and 100% of the cost of the NOx emissions, which are taxed in Norway. Norled is now looking at expanding the operating hours of the Ampere each day and is examining other routes it operates to determine if they could benefit from a fully electric ferry.

Hybrid Drivetrains
A hybrid drivetrain consists of a either a diesel or LNG engine as the prime generator for the vessel and supplements this engine with an ESS. The ESS is able to charge with energy produced when the engine generator is operating in its most efficient range and then, when the engine generator would be operating in its inefficient range, the engine is shut off and energy is extracted from the ESS to operate the vessel.

A harbor tug is a good application for a hybrid drivetrain. It will typically spend up to 25% of its time sitting and waiting for a call to push a ship. While in this mode, the vessel needs to maintain its position and run its hotel load. The engine is too large to idle and provide power just to the hotel load and so the engine drives its thrusters in opposite directions, thereby keeping the vessel in position but “boiling water” and wasting fuel. With a hybrid system, the engine is turned off and the ESS is used to periodically operate the thrusters to keep the vessel in position, and also serving the hotel load. When the ESS gets to the minimum state-of-charge, the engine is started to charge the batteries, serve the hotel load and run the thrusters. Depending on the hybrid drivetrain configuration, the ESS can also be used to supplement the engine when the tug is pushing or pulling a vessel to get it into position. When the batteries are charged the engine is turned off. An ESS on a tug can save up to 25% on fuel and emissions, as well as reducing maintenance on the engine(s).

An ESS is also very effective to replace the operation of a second engine that is running in spinning reserve to provide emergency power in the event the prime mover generator fails during a critical operation. On the Scandlines ferries in Denmark and Germany they only operate one generator during crossing and use their ESS for spinning reserve. Scandlines have identified 13% reduction in fuel and emissions and a 45% reduction in generator maintenance.

Likewise, Offshore Supply Vessels (OSVs) in the North Sea can use an ESS for spinning reserve during Dynamic Positioning (DP) operation, where the vessels have to be kept stationary when servicing floating oil and gas platforms. DNV-GL has now approved ESS for DP operations. Eliminating the operation of an additional generator used in spinning reserve has the potential to save fuel, emissions, maintenance and even the capital cost of the additional generator.

 

Key Benefits
The key benefits from an ESS include:

  • Reduced generator hours/generators running in efficient range
    • Reduced fuel consumption
    • Reduced emissions
    • Reduced maintenance
  • Improved capital management
    • Reduced number of generators
    • Reduced size of generators
    • Generator life extension – operation in efficient range provides longer lifetime
  • Emergency backup
    • Spinning reserve
    • Emergency and auxiliary backup
  • Passenger/crew comfort
    • Reduced noise
    • Reduced vibration
    • Reduced fumes
  • Reduced emissions
    • GHG’s
    • Reference air emissions – NOx , SOx , PM
  • Improved performance
    • Better ramping on LNG engines
    • Instant response to throttle
    • Better transient load management

The Future is Now
No longer the elusive white whale, cost effective and proven hybrid electric propulsion has arrived and is here to stay with early adopters now reaping the benefits. An ESS helps owners make their vessels more efficient by helping them manage the operating and capital costs of their vessels, while also making these vessels more reliable and environmentally sustainable. No longer outcasts like Ishmael, the electric and hybrid marine industry has proven the value proposition for electric drivetrains and energy storage. Corvus Energy’s ESS is a key piece of these innovative hybridization projects for commercial vessels, which are fundamentally changing these marine markets. Where once there was only a potential for these benefits, Corvus Energy has the ESS technology, people and experience to make them real.

 

 

 

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Atlantic Coast: A time of renewal

If you were at a seaport along the U.S. Eastern Seaboard, more than likely you would be able to spot the distinctive blue “V” logo of the Vane Brothers Company on at least one tug in the harbor. The privately held marine transportation company has been serving the U.S. East Coast for more than 100 years, now handling chemical and petroleum products on its double-skin tank barges in seven ports from New York to Jacksonville, FL.

Under the steady guidance of C. Duff Hughes, the third generation of the Hughes family at the helm of the company, Vane Brothers, headquartered in Baltimore, MD, has been aggressively growing its fleet of 120 tugs and barges. Since 2008, Vane Brothers has been adding a series of 3,000-hp, Sassafras Class Articulated Tug Barge (ATB) tugs. Just last month, Vane Bros. ordered the 15th, 16th, and 17th of the class, all of which have been ordered from and built by Chesapeake Shipbuilding in Salisbury on the Eastern Shore of Maryland.

VaneFort SchuylerThe latest in the series delivered by Chesapeake Shipbuilding is the Fort Schuyler, the eleventh in the class. Its sister tug, the Kings Point, was delivered in April this year.

The tugs have been very popular with the company’s crews. Vane Brothers Senior Port Captain Jim Demske, says, “The crews on these tugs particularly like the high quality of the tugs’ construction and layout. The ergonomic arrangement of the pilothouses and engine rooms contribute comfort and safety. The power from the Caterpillar engines and the performance from the Twin Disc reduction gears all contribute to the great handling of these tugs, which is especially appealing to the operators. The new Simrad Solid State Halo radars and touch-screen electronics are some of the finest in the industry and also make life on these tugs better.”

Measuring 94 feet long and 32 feet wide with a hull depth of 13 feet, the Fort Schuyler is similar in most respects to the previous 10 tugs built for Vane by the shipyard.

The vessel is equipped with twin Caterpillar 3512 Tier 3 main engines producing a combined 3,000 horsepower, and operates with a single-drum hydraulic towing winch from JonRie Intertech, Manahawkin, NJ.

“Soft-core” panels and heavy, fire-rated doors are used throughout the boats, offering the crew a safer and quieter living environment.

“Vane Brothers and Chesapeake Shipbuilding continue to have a very strong relationship,” says Demske. “The next tug to be launched in coming weeks will be the Fort McHenry, followed by the Fishing Creek.” Demske says the names of the other tugs have yet to be announced.

The Fort Schuyler, like the Kings Point, has joined Vane Brothers’ fleet based in New York. The two vessels are named for the campuses of SUNY Maritime College in Fort Schuyler, NY, and the U.S. Merchant Marine Academy in Kings Point, NY.

In addition to the 3,000-hp tugs coming from Chesapeake Shipbuilding, there are two 4,200-hp tugs under construction at St. Johns Ship Building in Palatka, FL, for delivery in 2016, with two more under contract.

VANE ADDS NEW BARGES, TOO
According to Vane Brothers, three 35,000-barrel barges and four 55,000-barrel barges (including the 509A asphalt barge) have been delivered in the last 10 months, with another 55,000-barrel barge expected before the end of the year. These have come primarily from Conrad Shipyards in Orange, TX, and Amelia, LA, as well as Jeffboat in Jeffersonville, IN.

New and current mariners at Vane have a variety of training opportunities available to them, both formal and informal. According to Vane Brothers spokesman Blaise Willig, the company has supported many vessel-based employees this year as they receive instruction to help them be more effective at their current jobs and contribute to their future advancement. Vane is a Partner Company in the Workboat Academy’s Workboat Program. And, as a result of Person in Charge (PIC) Barge training this year at the Maritime Institute of Technology and Graduate Studies (MITAGS) in Linthicum Heights, MD, former Vane Deckhands have become highly qualified Tankermen now assigned to Vane barges. Vane’s training efforts and commitment to promoting from within help to ensure that its vessels are manned with professionals who meet and surpass the highest standards in the industry.

NEW ATB TUG LAUNCHED FOR BOUCHARD

Early last month, the Moss Point Marine shipyard of VT Halter Marine, Inc., launched the M/V Morton S. Bouchard a 6,000hp, twin-screw Articulated Tug Barge (ATB) tug for Bouchard Transportation, Inc., Melville, NY.

The ATB tug is one of two sister vessels being built under a two-vessel contract signed in August 2014. Morton S. Bouchard and sister vessel Frederick E. Bouchard each measure 130 feet by 38 feet by 22 feet and is classed by ABS as +A1 Ocean Towing, Dual Mode ATB, USCG Subchapter C. On completion, both tugs will be equipped with an Intercon Coupler System. Deliveries are expected in January and May 2016, respectively. The vessels will enter into Bouchard Transportation’s fleet service in New York, NY.

This most recent launch follows the September launch from the Moss Point shipyard of another ATB tug for Bouchard, the 10,000 hp M/V Donna J. Bouchard.

Also equipped with an Intercon Coupler, Donna J. Bouchard, is classed by ABS as +A1 Towing Vessel, Dual Mode ATB, USCG Subchapter M. She will be paired with barge B.No.272, which is currently under construction at VT Halter Marine’s Pascagoula, MS, shipyard to comprise the second ATB unit built for Bouchard Transportation as part of its major expansion program.

“Bouchard Transportation Co. Inc. is happy to announce yet another successful launching of a state of the art ATB tug built by VT Halter Marine. The launching of the M/V Morton S. Bouchard Jr. is a special event within the Bouchard Family, for the vessel is named after the father of President/CEO, Morton S. Bouchard III, who wanted his father’s name to always remain on the waterfront for which he dedicated his entire fife to. The original tug, Morton S. Bouchard Jr., which was also built by Halter, was earlier renamed as The Bouchard Boys and continues to operate with Bouchard Fleet,” says Morton S. Bouchard III President and CEO, Bouchard Transportation.

“The successful launching of both vessels, the M/V Morton S. Bouchard Jr. today and the M/V Donna J. Bouchard in September is an indication of the commitment to the continued relationship with Bouchard Transportation,” says Jack Prendergast, CEO, VT Halter Marine.

MoranNEW ATB TUG FOR MORAN
Moran Towing has newbuild programs underway at Washburn & Doughty shipyard in East Boothbay, ME, and Fincantieri’s Bay Shipbuilding in Stugeon Bay, WI. Its newest ATB tug, Leigh Ann Moran, recently completed her sea trials in Sturgeon Bay. The 121 ft x 36 ft tug was christened in late September by her namesake, Leigh Ann Engibous, wife of long-time Chevron employee Bill Engibous.

Also under contract at Bay Shipbuilding are the 121 ft x 36 ft ATB tug Barbara Carol Ann Moran and a 110,000 bbl double-skin tank barge, which are due for delivery in the second quarter of next year.

Meanwhile, Washburn & Doughty have contracts for six 6,000 hp Z-drive harbor tugs for the New Canaan, CT-based tug company.

MCALLISTER PUBLISHES 150th ANNIVERSARY BOOK
Last year, McAllister Towing & Transportation Co., New York, NY, celebrated its 150th anniversary of providing marine transportation, towing and harbor services. The beautifully bound hard cover book recounts the history of the five generations of the McAllister family and the tugboat business. The company was founded by James McAllister, who arrived in New York City following a shipwreck and soon bought his first sail lighter in 1864. From those humble beginnings, the distinctive red and white striped funnels of McAllister tugs can be seen from Portland, ME, to San Juan, PR.

McAllister currently has one ABS-classed 5,000-hp Z-drive reverse tractor tug on order at Eastern Shipbuilding Group, Panama City, FL. The word on the street is that the company is in serious discussions with another shipyard regarding the construction of at least two other harbor tugs.

Eastern Shipbuilding also recently launched the H. Douglas M, the first in a series of four 5,150 hp escort tugs for Bay-Houston Towing. The 80 ft x 38 ft tug is based on a Z-Tech 2400 Class design by Robert Allan Ltd. Delivery of the escort tug is scheduled for early 2016.

The same design is being built by Eastern Shipbuilding for a series of four tugs for Suderman & Young. G&H Towing is the owners’ onsite representative and agent during the engineering, construction, and delivery for both Bay-Houston and Suderman & Young Towing.

WIND FARM VESSEL TAKES SHAPE
In Warren, RI, the first U.S.-flag wind farm vessel is taking shape at Blount Boats, Inc. Blount Boats President Marcia Blount says the 21-meter aluminum catamaran will be ready for delivery in April 2016.

Rhode Island Fast Ferry will operate the boat for Block Island Wind Farm in Rhode Island. The five turbine wind farm, the first commercial wind farm in the U.S., is expected to be up and running by the fourth quarter of next year.

The catamaran is a Crew Transfer Vessel (CTV) based on a design licensed from South Boats (IOW), Isle of Wight, the U.K., one of the leading designers and manufacturers of wind farm vessels in Europe. South Boats IOW has designed and built some 85 CTV’s for the European offshore wind sector.

Blount Boats is eyeing the progress of offshore wind energy closely, says Marcia Blount.

Blount Boats also is building a passenger vessel for Chicago’s Shoreline Sightseeing. Shoreline Sightseeing provides guided architecture tours on the Chicago River, as well as classic tours on Lake Michigan and “Brew Cruises” and wine-tasting cruises.

NEW BOATS FOR CIRCLE LINE
About a 20-minute ride from Warren, RI, is the shipyard of Gladding-Hearn Shipbuilding, a Duclos Corporation in Somerset, MA. Known for their construction of aluminum, multi-hull vessels based on IncatCrowther designs, the Massachusetts shipbuilder is actually building three all-steel 600-passenger vessels for Circle Line Sightseeing Yachts, Inc., New York, NY. The 165 ft x 34 ft were designed by DeJong & Lebet, Jacksonville, FL. Those boats are due for delivery in the spring.

It’s also building a 493-passenger ferry for Hy-Line Cruises due for delivery in 2016.

One of the latest deliveries from Gladding-Hearn is the Manatee, a 28-knot Chesapeake Class launch and the first in a new generation of the popular, mid-size pilot boats for the Tampa Bay Pilots Association.

The boat continues a successful partnership between Gladding-Hearn and C. Raymond Hunt Associates, Inc., New Bedford, MA.

The Somerset, MA, shipyard introduced the Chesapeake Class pilot boat in 2003. Since then, 15 have been delivered to pilot associations throughout the U.S.

The latest improvements incorporate the performance benefits of Volvo Penta’s IPS2 inboard propulsion system.

“The IPS2 system was created to improve the performance and the arrangement of planning hulls like our pilot boats,” says Peter Duclos, the shipyard’s president. “This new generation of Chesapeake launches, named Chesapeake Class MKII, is equipped with the IPS2 pods, which provide what pilots have been asking for: higher speeds, lower fuel consumption, and more comfort.”

With a deep-V hull designed by C. Raymond Hunt & Associates, the all-aluminum pilot boat measures 52.7 ft overall, with a 16.8-ft beam and a 4.5-ft draft.

It is powered by two Volvo Penta D11, six cylinder, EPA Tier 3 diesel engines, each producing 503 bhp at 2,250 rev/min. Each engine is connected to a Volvo Penta IPS propulsion pod, which is fitted with dual forward-facing, counter-rotating propellers and integrated exhaust system, and Volvo Penta’s integrated EPS electronic steering and control system.

The EPS control system and three-axis joystick increases the boat’s overall maneuverability alongside a ship and when docking, says Duclos.

The financial incentive for the Tampa Bay pilots to optimize fuel economy, vessel handling and comfort led the shipyard to install a Humphree Interceptor automatic trim- optimization system.

“The combination of the Volvo Penta IPS system and the Humphree interceptors gives the pilots higher speeds and improved comfort, while burning 25 percent less fuel than similar Chesapeake Class launches,” says Duclos.

Key design changes to the Chesapeake Class MKII include positioning the wheelhouse aft of amidships to improve comfort and provide for a larger foredeck.

With the pods close-coupled to the engines, the engine room is located well aft of the wheelhouse with easy access to machinery through a deck hatch.

This new generation of pilot boats is also designed to accept a gyro-stabilization system, designed to reduce vessel roll.

MIX OF REPAIR AT DETYENS
This past year, there has been a good mix of commercial and government repair at Detyens Shipyards, Inc., Charleston, SC, according to the company’s Bradley Kerr. “We have recently completed work on two German owned-container vessels, a pair of casino vessels and have the usual tugs and barge units, dredge vessel and other similar harbor barges are rolling through.  We also have recently won MSC contracts on the Button and Spearhead as well as the Atlantis from Woods Hole.”

The largest commercial ship repair yard on the U.S. East Coast, Detyens also recently finished repairs on the USCG Elm and will begin work on the NOAA vessel Gordon Gunter soon. The Dredge Wheeler is also in the shipyard.

This past spring and summer, Detyens dry docked the ferries 28,460 gt M/V Highlanders and 18,523 gt M/V Leif Ericson for Marine Atlantic, Inc., St John’s, Newfoundland, Canada.

FERRY REPOWER AT CADDELL
Over the next five years, the Delaware River and Bay Authority, owner and operator of the Cape May-Lewes Ferry, plans to repower its entire fleet with cleaner burning, more fuel efficient Tier 3-compliant diesel engines.

The first of those ferries, the Delaware, arrived at Caddell Dry Dock on Staten Island, NY, on November 2 to begin the four- to five-month repower project in conjunction with its regulatory required five-year drydocking.

According to James Gillespie, Chief Port Engineer for the Cape May Lewes ferry, the Delaware is expected to return to service in April of 2016. The dry-docking is expected to cost $3.5 million.

“We’re excited to begin our vessel repowering program,” says Heath Gehrke, Director of Operations for the Cape May-Lewes Ferry. “These new engines not only burn less fuel and are more efficient, but emissions are reduced by nearly 40 percent. By undertaking this effort, we can significantly extend the useful life of our fleet and provide a cleaner environment in the communities we serve.”

Gehrke also notes that the ferry expects to save about $130,000 per year in maintenance costs associated with old engines and that the new clean diesel engines have the capability to be converted to operate on natural gas in the future.

The existing Fairbanks Morse engines are overhauled and rebuilt every 10,000 hours of usage compared to every 30,000 hours for the new EMD (Electro-Motive Division) engines. The engines were purchased from Marine Systems Inc. at a cost of $1.8 million.

While at the shipyard, the vessel will have other modifications and improvements completed, including the installation of a new gray water recovery system, new stainless steel railings and new propeller shaft seal system; installation of a new keel cooler system for main engine and generator cooling; and the bow thruster system will be overhauled.

To further assist the University of Delaware’s water research efforts on the Delaware Bay, the SeaKeeper seawater monitoring system, which collects water quality data while a vessel transits the Delaware Bay, will be installed on the MV Delaware.

During a ceremony held at the Lewes Ferry terminal in December 2014, U.S. EPA Regional Administrator Shawn M. Garvin announced the award of a Diesel Emission Reduction Act (DERA) grant of $970,000 to help facilitate the project. The Delaware River and Bay Authority (DRBA) sought the grant funding through the National Clean Diesel Assistance Program, which focuses on reducing emissions at ports under the Diesel Emission Reduction Act (DERA).

The M/V Delaware is currently equipped with two Fairbanks Morse 38D8-1/8 propulsion engines with a power rating of 2,060 horsepower each. More than 40 years old, these workhorse engines are approaching 100,000 operating hours or the equivalent of 1.5 million miles. In addition, because the engines are no longer built, spare parts are both difficult to find and expensive.

Within the next five years, the Authority plans to repower the other vessels in the Cape May – Lewes Ferry fleet: the MV New Jersey and MV Cape Henlopen.

  • News

Morocco orders five 60 knot Damen Interceptors

They will be used to combat illegal activities such as terrorism and smuggling in Moroccan waters.

Designed for ultra-fast operations, the Interceptor 1503 can reach speeds of up to 60 knots, thanks to combining an outstanding propulsion system —powered by three MDS (Marine Diesel Sweden) VG-32 diesels — with cutting edge lightweight composite materials.

Each diesel drives a separate stern drive. The hull is constructed from fiber reinforced plastic in an epoxy resin matrix – renowned for its resistance to impact and fatigue as well as its lightweight properties.

Well suited for tracking down and taking appropriate action on illegal activities, the highly maneuverable Interceptors also have additional space in the cockpit for search and rescue survivors.

As international security concerns have heightened, Damen has seen growing interest in its range of Interceptor vessels. In response, it is continuing to invest in a substantial Research and Development program to design and build safe, strong and ultra-fast composite vessels.

Although the Interceptor has been in Damen’s portfolio for some time, the five vessels in this latest ordervwill be the first in a new series of reengineered vessels.

All five Interceptor 1503 vessels will be constructed at Damen’s state-of-the-art shipyard specializing in composite vessel construction in Antalaya, Turkey.

The first vessel will be delivered in June 2016, followed thereafter by one vessel every six weeks