HSC Francisco - the first dual fueled fast ferry using LM gas turbines.

Similar documents
LNG as Ship Fuel. Effects on Ship Design, Operations and Supporting Infrastructure

lng conversion (General)

Laws and price drive interest in LNG as marine fuel

DUAL FUEL ENGINES LATEST DEVELOPMENTS

EMISSIONS FROM MARINE ENGINES VERSUS IMO CERTIFICATION AND REQUIREMENTS OF TIER 3

Emission support system for calculation of energy demand and emissions of ships. Hans Otto Kristensen

Rolls-Royce Marine - The Environship Concept System Solutions & Wave Piercing Technology

Wärtsilä Dual-Fuel LNGC

Fjord Line AS a company running on LNG. Presentation, Thursday March 5th 2015

Bergen Engines Products and Applications

Engine catalogue. Marine Diesel engines. MAN range - light duty

Alfa Laval Slide 3

The Effects of Length on the Powering of Large Slender Hull Forms

World Fuel Services Corporation Overview

LNG Propulsion System

LNG Fuel Gas Infrastructure from terminal to onboard system The Motorship Gas-fuelled Ships 12 to 14-Sep-2012, Bergen

MAN Diesel & Turbo. Frederik Carstens Head of Offshore Sales Marine Medium Speed. Frederik Carstens & Karsten Borneman

Viking Grace 20 months' experience of Ship to Ship LNG bunkering

LNG AS A MARINE FUEL POSSIBILITIES AND PROBLEMS

GUIDELINES FOR VOLUNTARY USE OF THE SHIP ENERGY EFFICIENCY OPERATIONAL INDICATOR (EEOI)

LNG Storage and Fuel Gas Systems. LNG: Fuel for Shipping, London 15-Feb Carriers & Offshore Units. Jürgen Harperscheidt Sales Manager

GE Power & Water Distributed Power. Fast, Flexible Power. Aeroderivative Product and Service Solutions

MAN 28/33D STC. Powerful and reliable

Gas Fuelled ships. LNG-Fuelled Engines and Fuel Systems for Medium- Speed Engines in Maritime Applications. Dag Stenersen, MARINTEK

VM 32. Efficiency and Performance New Product Development Modular Design Cylinder

Crowley LNG. Puget Sound Harbor Safety Committee June 3 rd, Matthew Sievert Director Business Development LNG

Carbon Footprint of Refrigerated Goods Transportation

Supply, storage and handling of LNG as ship s fuel Björn Munko LNG 17, Houston

Building an LNG driven vessel. LNG developments at Meyer Werft Viking Grace 18_09_2013

OFFSHORE POWER. Caterpillar Global Petroleum

Efficient servicing. Easy maintenance. High level of uptime.

Green Ship of the Future

Combustion characteristics of LNG

Environmental Performance Evaluation of Ro-Ro Passenger Ferry Transportation

Dry Bulk Carriers Vessel: Bulk Americas

COMPUTER MODEL TIL BEREGNING AF EEDI OG RØGGASEMISSIONER FOR FORSKELLIGE SKIBSTYPER

The Norwegian NOx Fund how does it work and results so far. Geir Høibye, Manager The Business Sector's NOx Fund

DEVELOPING A CNG INFRASTRUCTURE LINING WITH THE FUTURE NEEDS MIDDLE EAST, NGV SUMMIT, 8 10 SEPTEMBER 2014, ABU DHABI, UAE

Brochure. Electric generators to power the world

How To Reduce Energy Efficiency On Ships

FURTHER TECHNICAL AND OPERATIONAL MEASURES FOR ENHANCING ENERGY EFFICIENCY OF INTERNATIONAL SHIPPING

ZF 220 A 10 Down angle, direct mount marine transmission.

Propulsion & Power Generation : The Present. Challenges & Emerging Technologies. Future induction requirements

Azimuth thrusters. propulsors

Marine Insurance Associates Amsterdam

Sperry Marine Fleet Management Enterprise Solution

IMO. REVIEW OF MARPOL ANNEX VI AND THE NO x TECHNICAL CODE. Development of Standards for NO x, PM, and SO x. Submitted by the United States

LNG fuelling in Europe a growing opportunity for gas industry

Waterjets. propulsors. courtesy of Austal

Press Release Page 2 / 9

POWER PLANT GAS CONVERSIONS WÄRTSILÄ SPARK IGNITED GAS ENGINE (SG) CONCEPT

ZF 301 A. Marine Propulsion Systems

Development of Power Supply System with Hybrid Turbocharger for Marine Application

With Rolls-Royce Aero Engine Technology. The Industrial 501-K Gas Turbine. siemens.com

IMO REQUIREMENTS FROM JULY 2015 TO JULY 2018 INCLUSIVE

The Next Generation Near-Zero Emission Natural Gas Vehicles

Energy Efficiency of Ships: what are we talking about?

Comparison between Natural Gas and Diesel Fuel Oil Onboard Gas Turbine Powered Ships

ZF 85 IV. Marine Propulsion Systems

Onboard-NAPA News. Jan Schauman, Onboard-Napa Ltd

EEDI. Energy Efficiency Design Index

CAT CG132. Series Gas Generator Sets

Beechcraft 1900D: Fuel, Emissions & Cost Savings Operational Analysis

Tier III emission technology

Anwendung von Polyspace im Software Entwicklungsprozess nach IEC München, , Dr.-Ing. Jörg Barrho

Fleet Performance Management and Benchmarking Against Peers

LNG BUNKERING LNG AS A SHIP S FUEL GREEN SHIP TECHNOLOGY, OSLO 23-MAR Carriers & Offshore Units. Jürgen Harperscheidt Sales Manager

Project ms Groenland. Henk Grunstra / Richard de Vries Damen Shipyards / Rederij Doeksen

WÄRTSILÄ DYNAMIC MAINTENANCE PLANNING (DMP) AND CONDITION BASED MAINTENANCE (CBM) Wärtsilä

M. Dogliani Energy Efficiency Design Index (EEDI): norme IMO ed aspetti tecnici. PORT&SHIPPING TEC Green - Shipping Summit - Novembre 2011

GEOil&Gas. Liquefied Natural Gas. Reliable innovation for the entire LNG value chain

ZF 286 A 7 Down angle, direct mount marine transmission.

ZF W320 Vertical offset, direct mount marine transmission.

Automatic Back-Flushing Filter AutoFilt RF9.

sailboat Proven engines, saildrives and options for all conditions

Discovering new territories: Sustainable systems for efficient ship operation. Andreas Schwan Hamburg, September 2012

Implementing a Ship Energy Efficiency Management Plan (SEEMP) Guidance for shipowners and operators

Propulsion Trends in LNG Carriers

ZF 25. Marine Propulsion Systems

> Capital Markets Day 2011

Harbourmaster s Office Operation of Emergency Response Vessels within the Auckland Region. Navigation Safety Operating Requirements 2014

Automation and control

IPS Inboard performance system. Volvo Penta IPS, the future for fast vessels

Natural Gas in Transportation J.B. HUNT Perspective

Heavy Fuel Oil supply units. The world s best selling HFO supply unit. The right choice for any conditions

Diesel-to-Natural Gas Engine Conversions. A cost-effective alternative to new natural gas vehicles

How To Power A Power Plant With Waste Heat

THM Gas Turbines Heavy duty gas turbines for industrial applications

OFFSHORE WIND Peter Robert

SSE s criteria used for GHG emissions reporting

Every. Innovation. ISG12. Global Heavy-Duty Engine HP ( kw)

A study into the fuel savings potential by a major rebuild of propulsion system

Vessels reporting duties on the NSR

Operations Planning & Optimization. Dr. Victor Allis, Co-founder and CEO

LNG to Danske Færger A/S Cleaner and Greener Shipping

Monitoring Air Emissions on Ships. Restricted Siemens AG 2014 All rights reserved.

Source: EIA Natural Gas Issues and Trends 1998

Transcription:

HSC Francisco - the first dual fueled fast ferry using LM gas turbines. Ivan Bach, Program Manager March 2016 Imagination at work

Our businesses deliver value Revenue: $27.6B Profit: $5.4B Revenue: $18.7B Profit: $2.6B Revenue: $7.3B Profit: $0.2B Revenue: $24.0B Profit: $5.0B Leading globally in power generation & water technologies Pushing the boundaries of technology in oil & gas to bring energy to the world Enabling utilities and industry to efficiently manage electricity from the point of generation to the point of consumption Providing our aviation customers with the most technologically advanced & productive engines, systems & services for their success Revenue: $18.3B Profit: $3.0B Revenue: $5.7B Profit: $1.1B Revenue: $8.4B Profit: $0.4B Developing transformational medical technologies & services that are shaping a new age of patient care Being a global technology leader & supplier to the railroad, mining, marine, stationary power & drilling industries Answering real-life needs, defining trends & simplifying routines. Leading a global lighting revolution to deliver innovative solutions Investing financial, human & intellectual capital to help our customers build their businesses 2 COGES 2 Feb 2016

Diverse Worldwide Marine Customers Proven >14M operating hours Navies 33 Navies globally 56 Military Programs 1300+ Engines delivered USN DDG51 FREMM Commercial marine 17 Cruise liners 19 Fast ferries 8 Fast cargo ships 5 Yachts Queen Mary 2 LCS-2 Francisco Germany F124

Gas turbine value in referenced fleet 1992 Fast Ferries Cruise Ships Emissions no visible smoke, Low NO X Power density advantage vs. diesel engines 2016 High power high speed Low weight reduced displacement, reduced draft, reduced drag Compact fits catamaran and trimaran hull form First LM2500 LNG-powered fast ferry in service! Small volume more revenue generating space Small volume & low weight arrangement flexibility Queen Mary 2 & Princess installed GT in base of funnel Additional revenue space enhances payback Proven >14M operating hours

LM2500 gas turbine is a GE CF6 aircraft engine at heart LM2500 CF6 GE s LM aeroderivative engines: Share the same proven jet engine technology Are built under the same quality system, in the same factory Can be serviced worldwide like a jet engine

GE Marine GT genealogy CF6-80C2 Applications MD-11 B747, 767 A300/310/330 LM6000 LM2500+G4 Power Output SHP/KW Thermal Efficiency 59,900 / 44,700 42.7% 47,370 / 35,320 40% CF6 DC-10 LM2500+ 40,500 / 30,200 39% LM2500 33,600 / 25,060 38% CF34 Bombardier Embraer LM500 6,000 / 4,470 32% All Ratings are at ISO No losses LM aero derivative designed for marine applications

Integrating proven technology for LNG carrier power & propulsion Dual Fuel & Gas Operation 69,700,000 operating hours on gas 21,600,000 on dual fuel engines Land-based & Offshore FPSOs + Combined Cycle + Dry Low + Operation Emissions 10,700,000 operating hours 17 cruise ships 42 Offshore installations 179 land-based installations 12,200,000 operating hours industrial 578 installations Land-based & Offshore (All figures are LM2500/+/+G4 only) 1 LNG Fueled st LNG fueled fast ferry World s Fastest ship 2 x LM2500 make 58 kts

Fast Ferry Value Through system solutions & technology Emissions Engine Availability Power Density Dual fuel Engine Single fuel Engine LM2500 Tier III IMO compliance today without exhaust aftertreatment No Methane Slip High standards inherited from Aviation flight engines >99% engine reliability Support Network 23 MW 20 tons 10 MW 50 tons 10 MW +100 tons Lowest kg/kw ratio Fuel Flexibility Dual fuel engine, able to handle wide gas variation World-wide service network Gas Turbine Swap out in 24-48 hours Gas or liquid fuel operation Change over in the fly No pilot fuel needed for gas operation Accepts variations in the gas composition

Francisco Principal Particulars Shipyard: Owner: INCAT Buquebus Contract duration: May 2010 July 2013 Class: Main engines: DNV General Electric LM2500 Gas Turbines, Dual Fuel 22 MW Length: Beam: Draft: Deadweight: Capacity: 99 m 26.94 m 2.98 m 450 tonnes 1000 passengers 150 cars Speed: +58 knots @ 100 % MCR Lightship Gas system: Waterjets: 52,5 knots service speed Chart Industries Wartsila LJX 1720SR Gearbox: Renk Bus 175

LM2500 Dual Fuel Fast Ferry Package Key features Easy installation (Package, Aux. Skid, TCP and Air Filter) Low installation weight Dual Fuel Capabilities - Seamless change over on the fly Under Pressure Ventilation No pilot fuel needed Low NO X emissions NO methane slip Easy Maintenance DNV High Speed, Light Craft certified. L 10,3 m x W 2.6 m x H 4 m Package weight 16,3 tons

Package Layout 11 3/14/2016

Package Layout Exhaust LM2500 Gas Turbine FOD Screen Inlet Plenum Gas & Liquid Fuel Valves

Front engine removal design

Fast Ferry Engine Room GE Confidential - Distribute to authorized individuals only. 14 LNG Dual Fuel Marine Package December 2010

Fast Ferry Aux Skid Fast Ferry TCP GE Confidential - Distribute to authorized individuals only. 15 LNG Dual Fuel Marine Package December 2010

Francisco s Route Buenos Aires to Montevideo Distance: 106 nautical miles Duration: 2 hours 12 minutes 2 daily crossing Competition: Buenos Aires to Montevideo by plane takes +3 hours Key features: First Class, Business Class, Tourist class and 1100 m 2 of tax-free shopping

17

18

Designs with DF gas turbines INCAT Various concepts based on INCAT s wave piercing catamaran design. 114 m catamaran 2 x LM2500 dual fuel, 42.6 knots, 1300 tdw, 1200-1400 pax, 560 TLM and 260 cars Austal Various concepts based Austal s trimaran designs Gas Turbine and CODAG configurations 127 m trimaran 2 x LM2500 dual fuel, 42 knots, 1000 tdw, 1300 pax, 450 TLM and 123 cars GE Restricted - Distribute to named individuals only.

LM2500 Fast Ferry LNG Solution By using Liquid Natural Gas (LNG) versus Marine Diesel Oil (MDO), ship builders and ferry operators can reduce fuel costs as LNG production increases around the world. LNG fuel is the most cost effective way to meet these regulations. The high power output and low weight and size of aeroderivative gas turbines make them ideal for the fast ferry application. 20

Questions? Thank you GE PROPRIETARY - UNCONTROLLED WHEN PRINTED OR ELECTRONICALLY TRANSMITTED 21 3/14/2016

GE PROPRIETARY - UNCONTROLLED WHEN PRINTED OR ELECTRONICALLY TRANSMITTED 22 3/14/2016