ABS 181-2016 GUIDE FOR PROPULSION AND AUXILIARY SYSTEMS FOR GAS FUELED SHIPS.pdf
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1、 Guide for Propulsion and Auxiliary Systems for Gas Fueled Ships GUIDE FOR PROPULSION AND AUXILIARY SYSTEMS FOR GAS FUELED SHIPS MARCH 2016 American Bureau of Shipping Incorporated by Act of Legislature of the State of New York 1862 Copyright 2016 American Bureau of Shipping ABS Plaza 16855 Northcha
2、se Drive Houston, TX 77060 USA Foreword Foreword (1 March 2016) For over ten years, medium speed dual fuel diesel engines have been chosen to power LNG carriers in preference to the traditional steam turbine powered propulsion plant arrangements. Recent trends have seen this move towards DF diesel e
3、ngines expand to include slow speed diesel engines, notably utilizing high pressure fuel gas supply systems. This has improved operational efficiency and reduced engine room space requirements. Furthermore dual fuel and single fuel engines have been successfully installed and operated in a number of
4、 offshore support vessel and ferry applications. It is envisaged that the effect of increasingly stricter air emissions legislation implemented through IMO Annex VI and other local air quality controls, together with favorable financial conditions for the use of natural gas instead of liquid fuel oi
5、l as a bunker fuel, will see an increasing number of dual fuel diesel engine and single gas fuel engine applications to LNG carriers and other vessel types in the future. In some cases, dependent on the bunker fuel storage configuration and the selected propulsion and power generation arrangement, t
6、here may be a need to also install a gas combustion unit or alternative system to manage excess boil-off gas. Accordingly, this Guide has been developed in order to provide guidance for the design and construction of the aforementioned propulsion prime mover arrangements, auxiliary power generation
7、arrangements and associated systems for gas fueled ships and may be applied to all types of vessel, other than those covered by the IMO IGC Code, that utilize natural gas as fuel. For LNG carrier requirements see the ABS Guide for Propulsion Systems for LNG Carriers. The requirements in this Guide h
8、ave been developed in consideration of IMO Resolution MSC.285(86) Interim Guidelines on Safety for Natural Gas-Fuelled Engine Installations in Ships which was adopted 1 June 2009 and the IMO International Code of Safety for Ships Using Gases or Other Low Flashpoint Fuels (IGF Code), which was adopte
9、d at IMO MSC 95 held 3-12 June 2015. The IGF Code will come into effect on 1 January 2017. Where the requirements of the Guide are proposed to be used to comply with IMO Resolution MSC.285(86), or the IMO IGF Code, such application is subject to approval by the flag Administration prior to issuance
10、of relevant statutory certificates on behalf of the flag Administration by ABS. The applicable edition of the ABS Rules for Building and Classing Steel Vessels is to be used in association with this Guide. This Guide becomes effective on the first day of the month of publication. Users are advised t
11、o check periodically on the ABS website www.eagle.org to verify that this version of this Guide is the most current. We welcome your feedback. Comments or suggestions can be sent electronically to rsdeagle.org. ii ABSGUIDE FOR PROPULSION AND AUXILIARY SYSTEMS FOR GAS FUELED SHIPS .2016 Table of Cont
12、ents GUIDE FOR PROPULSION AND AUXILIARY SYSTEMS FOR GAS FUELED SHIPS CONTENTS SECTION 1 General 1 1 Scope and Application 1 2 Objectives . 1 3 Definitions . 2 3.1 Block and Bleed Valve 2 3.2 BOG Utilization System . 2 3.3 Certified Safe Type 2 3.4 CNG 2 3.5 Control Station . 2 3.6 Dual Fuel Diesel E
13、ngine 2 3.7 Dual Fuel Propulsion or Auxiliary Gas Turbine 2 3.8 Enclosed Space 2 3.9 Fuel Containment System . 3 3.10 Gas Combustion Unit (or Thermal Oxidizer) 3 3.11 Hazardous Area 3 3.12 Non-Hazardous Area . 3 3.13 High Pressure Piping . 3 3.14 IGC Code 3 3.15 LEL 3 3.16 LNG . 4 3.17 Main Tank Val
14、ve 4 3.18 MARVS 4 3.19 Master Gas Valve 4 3.20 Natural Gas . 4 3.21 Normal Boil-off Gas Rate (NBOR) . 4 3.22 Primary Barrier 4 3.23 Recognized Standard 4 3.24 Re-Liquefaction Unit 4 3.25 Rules . 4 3.26 Secondary Barrier . 4 3.27 Single Gas Fuel Engine . 4 4 Classification Notations . 5 4.1 Gas Fuele
15、d Ship 5 4.2 Re-Liquefaction Unit 5 4.3 Gas Combustion Unit 5 ABSGUIDE FOR PROPULSION AND AUXILIARY SYSTEMS FOR GAS FUELED SHIPS .2016 iii 4.4 Dual Fuel Diesel Engine Power Plant 5 4.5 Single Gas Fuel Engine Power Plant . 5 4.6 Dual Fuel Gas Turbine Power Plant 5 5 Materials of Construction 5 6 Oper
16、ating and Maintenance Instruction Manuals . 5 7 Alternatives . 6 8 Certification . 6 SECTION 2 Ship Arrangements and System Design 7 1 General . 7 1.1 Application . 7 1.2 Plans and Data to be Submitted 7 1.3 Ship Safety Concept 7 2 Location and Separation of Spaces 7 2.1 General 7 2.2 Gas Storage Ta
17、nks 7 2.3 Access in way of Gas Storage Tanks 12 2.4 Fuel Bunkering Station 12 2.5 Gas Compressor and Fuel Preparation Rooms . 13 2.6 Machinery Spaces Containing Gas Utilization Units 13 3 Arrangement of Entrances and Other Openings 14 3.1 General 14 3.2 Gas Compressor and Fuel Preparation Rooms . 14
18、 3.3 Gas Storage Tanks and Fuel Containment Systems . 14 4 Gas Pipe Design and Arrangements 14 4.1 General 14 4.2 High Pressure Gas Piping . 15 4.3 Distribution Outside of Machinery Spaces . 15 5 System Configuration 16 5.1 General 16 5.2 Alternative System Configurations . 16 5.3 Double Wall Fuel G
19、as Piping Concept . 16 5.4 Single Wall Fuel Gas Piping Concept 16 6 Gas Utilization . 17 6.1 Utilization or Management of Boil-off Gas . 17 6.2 Supply of Fuel Gas and BOG to Utilization Units . 17 7 Ventilation Systems General 18 8 Electrical Systems . 19 8.1 General 19 8.2 Area Classification . 19
20、8.3 Hazardous Area Zones 19 9 Gas Detection Systems 20 9.1 General 20 10 Inert Gas System 21 10.1 General 21 10.2 Inert Gas Production on Board 22 iv ABSGUIDE FOR PROPULSION AND AUXILIARY SYSTEMS FOR GAS FUELED SHIPS .2016 SECTION 3 Gas Fuel Storage 23 1 General . 23 1.1 Plans and Data to be Submitt
21、ed 23 2 Storage Tank Operation 24 3 LNG Storage Tanks 24 3.1 Portable LNG Storage Tanks 25 4 CNG Storage Tanks 26 5 Gas Storage Tank Monitoring . 26 6 Gas Fuel Storage Room and Tank Connection Space 27 6.1 General 27 6.2 Ventilation 27 6.3 Gas Detection 27 6.4 Fire Detection 27 6.5 Alternative Arran
22、gements 27 6.6 Type C Independent Tank Hold Spaces 27 7 Fire Extinguishing Systems. 28 7.1 General 28 7.2 Fire Main . 28 7.3 Water Spray Systems 28 8 Surveys during Construction . 28 8.1 General 28 8.2 Surveys at Manufacturers Facility . 29 8.3 Surveys During Installation 29 8.4 Surveys During Trial
23、s 30 TABLE 1 Monitoring and Safety System Functions for Gas Fuel Storage Tanks and Gas Fuel Storage Rooms 30 TABLE 2 Certification of Gas Fuel Storage Tanks and Gas Fuel Storage Rooms . 31 SECTION 4 Fuel Gas Bunkering System 32 1 General . 32 2 Plans and Data to be Submitted . 32 3 Fuel Gas Bunkerin
24、g Operation . 33 4 Fuel Gas Bunkering Station 33 5 Fuel Gas Bunkering System . 33 5.1 General 33 5.2 Fuel Gas Bunkering Manifolds 33 5.3 Fuel Gas Bunker Piping. 34 5.4 Emergency Shutdown System 34 6 Control and Monitoring 35 7 Ventilation System 35 8 Gas Detection . 35 9 Fire Detection and Extinguis
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