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Design and Strength Verification of LNG Cargo Enclosure System FSP Type

Design and Strength Verification of LNG Cargo Enclosure System FSP Type
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摘要 The demand for natural gas in the world is increasing day by day. The efficient and flexible LNG becomes the preferred method for natural gas storage and transportation and has gradually entered people’s daily life. The enclosure system is the key core of LNG transport and storage vessels for storage of LNG at -163°C for isolation and thermal insulation. A new type of flat half-film prismatic LNG enclosure system has been developed for the shortcomings of the existing LNG cargo enclosure system. Through the breakthrough and mastery of key core technologies such as the overall layout and integration of the system, anti-leakage technology, liquid tank fixing technology, and large-scale friction stir welding (P-FSW) flat-line pipeline development technology, we’ll strive to fill the gap in the intelligent construction technology of large aluminum alloy tanks in China. The tank was subjected to water vapor test and numerical simulation. The results show that the structural strength of the FSP-LNG tank meets the strength check standard of IGC Code. The demand for natural gas in the world is increasing day by day. The efficient and flexible LNG becomes the preferred method for natural gas storage and transportation and has gradually entered people’s daily life. The enclosure system is the key core of LNG transport and storage vessels for storage of LNG at -163°C for isolation and thermal insulation. A new type of flat half-film prismatic LNG enclosure system has been developed for the shortcomings of the existing LNG cargo enclosure system. Through the breakthrough and mastery of key core technologies such as the overall layout and integration of the system, anti-leakage technology, liquid tank fixing technology, and large-scale friction stir welding (P-FSW) flat-line pipeline development technology, we’ll strive to fill the gap in the intelligent construction technology of large aluminum alloy tanks in China. The tank was subjected to water vapor test and numerical simulation. The results show that the structural strength of the FSP-LNG tank meets the strength check standard of IGC Code.
出处 《Modern Mechanical Engineering》 2019年第2期49-56,共8页 现代机械工程(英文)
关键词 LNG TANK Water Vapor TEST NUMERICAL Simulation STRENGTH LNG Tank Water Vapor Test Numerical Simulation Strength
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  • 1金全洲,曹蛟龙.LNG燃料船储气罐疲劳强度计算[J].船舶工程,2013,35(S1):36-39. 被引量:11
  • 2王衡元.大型LNG船建造研究[J].船舶工程,2005,27(B05):46-51. 被引量:16
  • 3中国船级社.船体结构疲劳强度指南[S].北京:人民交通出版社,2007.
  • 4DNV. Fatigue Assessment of Ship Struc~re[S]. 2001.
  • 5ABS. Rules for Building and Classing Steel Vessels[S]. 2002.
  • 6张凡,胡嘉骏.采用谱分析法对LNG船结构进行疲劳研究[c]//纪念徐秉汉院士船舶与海洋结构力学学术会议,无锡,2011:244.251.
  • 7IMO. International Code for the Construction and Equipment of Ships Carrying Liquefied Gases in Bulk (IGC Code)[S]. 1983.
  • 8IMO. Interim Guidelines on Safety for Natural Gas-fuelled Engine Installations in Ships (IGF Code)[S]. 2009.
  • 9中国船级社.天然气燃料动力船舶规范[S].北京:人民交通出版社,2013.
  • 10中国船级社.钢制海船入级规范[s].北京:人民交通出版社,2012.

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