ABS 112-2005 GUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS《液化天然气携带推进系统指南.勘误表 社论2005年9月》.pdf
《ABS 112-2005 GUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS《液化天然气携带推进系统指南.勘误表 社论2005年9月》.pdf》由会员分享,可在线阅读,更多相关《ABS 112-2005 GUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS《液化天然气携带推进系统指南.勘误表 社论2005年9月》.pdf(60页珍藏版)》请在麦多课文档分享上搜索。
1、 Guide for Propulsion Systems for LNG Carriers GUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS SEPTEMBER 2005 (Updated February 2014 see next page) American Bureau of Shipping Incorporated by Act of Legislature of the State of New York 1862 Copyright 2005 American Bureau of Shipping ABS Plaza 16855 No
2、rthchase Drive Houston, TX 77060 USA Updates February 2014 consolidation includes: July 2013 version plus Corrigenda/Editorials July 2013 consolidation includes: February 2011 version plus Notice No. 2 February 2011 consolidation includes: December 2005 version plus Notice No. 1 December 2005 consol
3、idation includes: September 2005 version plus Corrigenda/Editorials ABSGUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS .2005 iii Foreword Foreword (1 February 2011) Every LNG carrier, in service at the time of the issuance of this Guide, has been fitted with a steam turbine powered propulsion plant. H
4、owever, recently, many owners and shipyards, looking to improve operational efficiency and reduce the size of the engine room to increase cargo carrying capacity have selected propulsion plants alternatives to steam turbine There are various proposed machinery arrangements being considered by the in
5、dustry which include: Direct drive slow speed diesel engine propulsion with a reliquefaction plant as the means to dispose of the boil-off gas. Direct drive slow speed dual fuel diesel engine(s) propulsion. Electric propulsion with medium speed dual fuel diesel engines Electric propulsion with dual
6、fuel gas turbine(s) as the prime mover(s). In some cases, with the combination of propulsion and power generation alternatives mentioned above, there may be a need to also install a gas combustion unit to dispose of excess boil-off gas. It must be acknowledged that while the IMO IGC Code permits the
7、se various arrangements as acceptable means for pressure/temperature control in the cargo tanks, it does not comprehensively address propulsion systems other than steam turbine. Accordingly, this Guide has been developed in order to provide guidance for the design and construction of aforementioned
8、propulsion solutions with particular attention to the safe utilization of boil-off gas. The requirements in this Guide are consistent with the intent of the requirements of the IGC Code and have been developed by extensive use of the risk based rule-making methodology, i.e., risk identification by a
9、 group of specialists and stipulation as to the means of mitigation of the risks identified. In all cases the requirements of this Guide is to supplement areas which are not addressed in the IGC Code and is not intended to conflict or replace any of the requirements in the IGC Code. Where the requir
10、ements of this Guide are proposed to be used to comply with Chapter 16.6 of the IGC Code, such application is subject to approval by the flag Administration prior to issuance of Certificate of Fitness on behalf of the flag Administration by ABS. This Guide has been developed for the propulsion syste
11、m for LNG carriers. However, the Guide may be applied to other types of vessels that utilize methane as fuel. This Guide supersedes the ABS Guide for Design and Installation of Dual Fuel Engines, January 2003. The applicable edition of the Rules for Building and Classing Steel Vessels is to be used
12、in association with the subject Guide. This Guide becomes effective immediately upon publication. We welcome your feedback. Comments or suggestions can be sent electronically to rddeagle.org. iv ABSGUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS .2005 Table of Contents GUIDE FOR PROPULSION SYSTEMS FOR
13、 LNG CARRIERS CONTENTS SECTION 1 General 1 1 Definitions . 1 1.1 BOG Utilization System . 1 1.2 Dual Fuel Diesel Engine 1 1.3 Re-Liquefaction Unit 1 1.4 Gas Combustion Unit (or Thermal Oxidizer) 1 1.5 Dual Fuel Propulsion or Auxiliary Gas Turbine 1 1.6 Normal Boil-off Gas Rate (NBOR) . 1 1.7 Rules .
14、 1 1.8 MARVS 1 2 Operating and Maintenance Instruction Manuals . 2 SECTION 2 Notations . 3 1 Re-Liquefaction Unit . 3 2 Gas Combustion Unit 3 3 Dual Fuel Diesel Engine Power Plant . 3 4 Dual Fuel Gas Turbine Power Plant . 3 SECTION 3 Boil-off Gas Utilization . 4 1 Utilization or Disposal of Boil-off
15、 Gas . 4 1.1 BOG Utilization Arrangement 4 2 Supply of BOG to Utilization Units 4 2.1 Automatic Gas Shut-off Valve 4 2.2 Automatic Purge 4 2.3 Master Gas Valve 5 2.4 Pressure Surge Protection . 5 SECTION 4 Re-liquefaction Unit 6 1 General . 6 1.1 Capacity . 6 1.2 LNG Return to Cargo Tanks 6 1.3 Plan
16、s and Data to be Submitted 6 ABSGUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS .2005 v 2 Cargo Vapor (BOG)/LNG Circuit 7 2.1 BOG Compressors 7 2.2 LNG Pumps . 7 2.3 Separation of Impurities. 7 3 Refrigeration System 7 3.1 General 7 3.2 Refrigerants . 7 3.3 Compressors/Expanders . 8 3.4 Cryogenic Heat
17、 Exchangers and Cold Box . 8 4 Instrumentation and Safety Systems 9 4.1 General 9 4.2 Control and Monitoring System . 9 4.3 Safety Shutdown System 9 5 Electrical System 10 5.1 Motor Controllers . 10 6 Location and Installation . 10 7 Mechanical Ventilation 10 8 Gas Detection System 10 9 Ancillary Sy
18、stems 10 10 Piping System . 11 11 Fire Extinguishing Systems. 11 12 Surveys During Construction 11 12.1 General 11 12.2 Surveys at Manufacturers Facility . 12 12.3 Surveys During Installation 12 12.4 Surveys During Trials 13 TABLE 1 Instrumentation and Alarms in Centralized Control Stations . 13 TAB
19、LE 2 Certification of Re-Liquefaction Units . 14 SECTION 5 Gas Combustion Units/Thermal Oxidizers . 15 1 General . 15 1.1 Capacity 15 1.2 Plans and Data to be Submitted 15 2 Cargo Vapor (BOG) Circuit . 16 2.1 Compressors . 16 2.2 Heaters 16 2.3 Gas Fuel Supply to GCU . 16 3 Gas Burner Unit and Burne
20、r Management System 17 4 Oil Pilot Burner/Electrical Ignition System 17 5 Forced Draft Fans and Dilution Fans 17 6 Combustion Chamber and Associated Refractory . 18 7 Exhaust Gas Piping 18 8 Ventilation . 18 9 Gas Detection . 19 vi ABSGUIDE FOR PROPULSION SYSTEMS FOR LNG CARRIERS .2005 10 Automatic
21、Shutdown System 19 11 Fire Extinguishing System 19 12 Surveys During Construction 20 12.1 General 20 12.2 Surveys at Manufacturers Facility . 20 12.3 Surveys During Installation 20 12.4 Surveys During Trials 21 TABLE 1 Instrumentation and Alarms in Centralized Control Stations for the GCU . 21 TABLE
22、 2 Certification of Gas Combustion Units 22 SECTION 6 Dual Fuel Diesel Engines Propulsion System . 23 1 General . 23 1.1 Condition . 23 1.2 Application . 23 1.3 Plans and Data to be Submitted 23 2 Arrangement of Dual Fuel Engine Compartments with Single Wall Fuel Gas Piping 24 2.1 General 24 2.2 Ven
23、tilation 24 2.3 Gas Detection 25 2.4 Electrical Equipment 25 2.5 Access and Means of Escape . 26 3 Gas Fuel Supply for Arrangements with Single Wall Fuel Gas Piping 26 3.1 Piping System up to Engine Compartment 26 3.2 Block and Bleed Valves . 26 3.3 Gas Shut-off Valve . 26 3.4 Manual Shut Off . 26 3
24、.5 Piping System in Engine Compartment . 26 3.6 Purging 27 3.7 Restoration of Gas Fuel Supply . 27 4 Gas Make-up Plant and Related Storage Tanks 27 5 Dual Fuel Engines . 27 5.1 General 27 5.2 Gas Fuel and Air Supply 27 5.3 Protection of Crankcase 28 5.4 Protection against Explosion . 28 5.5 Engine E
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