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The Risk of Cryogenic Liquid Exposure could have been a Show Stopper for FLNG(Floating Liquified Natural Gas Production and Storage)projects: How did the industry respond?

机译:低温液体暴露的风险可能是FLNG(浮动液化天然气生产和储存)项目的展示塞:行业如何回应?

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Liquid natural gas (LNG) at atmospheric pressure, remains as a liquid at一1620C. As the temperature increases, gas is evolved which is flammable and under certain mixtures with air is explosive when in the presence of an ignition source. As designers have looked more at the risks posed by accidental release of Cryogenic Liquids onboard FLNG assets, it has become more apparent that the steel structures used for these facilities could be prone to brittle fracture. This could potentially lead to structural failure. If fire ensues soon after this cryogenic release then further escalation may occur, particularly if the passive fire protection does not function as expected. The need for effective, tried and tested solutions to mitigate the risks posed by cryogenic liquid gas exposure was identified nearly 20 years ago. In the last 10 years, as the FLNG industry has accelerated, development has intensified for cryogenic spill protection (CSP) systems. Indeed construction of a leading FLNG asset was nearly stopped due to the lack of an effective solution. In response, owners have initiated studies into the most effective CSP materials to ensure progression of these projects. Since then, the industry has developed a better understanding of the risks posed by these LNG liquefaction assets and the consequences of not addressing these risks appropriately. Working closely with owners and design engineers to address these project specific risks and to develop robust solutions, has therefore become of paramount importance in developing this appropriate response. This paper covers the initial requirements of protection against cryogenic spill. It considers the solutions developed to meet all the industry expectations (and where appropriate conformance to standards) and describes those finally adopted by the first FLNGs under construction.
机译:液体天然气(LNG)在大气压下,在一度1620℃的液体中保持为液体。随着温度升高,在存在点火源时,气体是易燃并且在某些混合物中的易燃,并且在点火源存在时是爆炸性的。由于设计师在偶然释放的低温液体船上释放的风险上看起来更加明显,因此可以更加明显,用于这些设施的钢结构可能易患脆性骨折。这可能导致结构性失败。如果在这种低温释放后尽快燃烧,则可能发生进一步的升级,特别是如果被动防火保护不按预期运行。近20年前鉴定了对减轻低温液体气体暴露的风险的有效,试验和测试解决方案的需求。在过去的10年里,随着FLG工业加速,发展已经加剧了低温泄漏保护(CSP)系统。实际上,由于缺乏有效的解决方案,领先的FLNG资产的建设几乎停止了。作为回应,业主已启动研究进入最有效的CSP材料,以确保这些项目的进展。从那时起,该行业已经更好地了解这些液化天然气液化资产所带来的风险以及不适当解决这些风险的后果。与所有者和设计工程师密切合作以解决这些项目特定风险并制定强大的解决方案,因此在制定这种适当的回复方面变得至高无上。本文涵盖了对低温泄漏保护的初始要求。它考虑了开发的解决方案,以满足所有行业期望(以及适当一致的标准),并描述最终由第一个施工的流行语所采用的解决方案。

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