首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >A PRELIMINARY INVESTIGATION ON THE RISK ARISING FROM THE USE OF HP FGS SYSTEM IN LNGC BY ANALYZING RISK CONTRIBUTORS COMPARATIVELY
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A PRELIMINARY INVESTIGATION ON THE RISK ARISING FROM THE USE OF HP FGS SYSTEM IN LNGC BY ANALYZING RISK CONTRIBUTORS COMPARATIVELY

机译:初步调查利用LNGC在LNGC中使用促进风险贡献者的风险

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This work is motivated by the need to identify the fire and explosion risk on LNGCs developed by Daewoo Shipbuilding & Marine Engineering Co., Ltd. (DSME) because the main engines are designed to use highly pressurized natural gas (about 300 bar), which has caused vague fears of fire and explosion risks. In this context, to identify the risk of fires and explosions quantitatively caused by ignitions of unintended leaked gas from fuel gas lines, a FERA was carried out for the LNGCs. This paper, as a part of the FERA, presents the results of a preliminary investigation on the effect of introducing the highly pressured fuel gas system into LNGCs on the fire and explosion risk especially in the cargo compressor room. This study is conducted in a comparative way considering the risk contribution of each parameter that could impact on the fire and explosion risk in LNGCs. The effect of the highly pressured fuel gas is indirectly taken into account by the change of the initial leak rate in the system. To identify effects of the considered parameters quantitatively, dozens of simulations for the selected gas dispersion, explosion and fire scenarios were carried out using FLACS and KFX. Based on the results from the simulations, it is concluded that, in case of the LNGCs, the effects of the initial large leak rate due to the high pressure in the fuel gas pipes on fire and explosion risk are not significant compared with the other parameters' effects.
机译:这项工作是有必要确定大宇造船和海洋工程有限公司(DSME)开发的LNGC的火灾和爆炸风险,因为主动发动机旨在使用高压天然气(约300巴),导致对火灾和爆炸风险的含糊不清。在这种情况下,为了确定由燃料气体线路点燃的风险和爆炸的风险,对LNGC进行了一种口腔。本文作为口交的一部分,介绍了初步调查的结果,对火灾和爆炸风险的LNGC引入LNGC的效果,特别是在货物压缩机室中。本研究以比较方式进行,考虑到每个参数的风险贡献,可能会影响LNGC的火灾和爆炸风险。通过系统中的初始泄漏率的变化,间接地考虑了高压燃料气体的效果。为了定量识别所考虑的参数的效果,使用FLACS和KFX进行许多用于所选气体分散,爆炸和火情况的模拟。基于模拟的结果,结论是,在LNGC的情况下,与其他参数相比,在LNGC的情况下,由于燃气管道中的高压导致的初始泄漏率的影响与其他参数相比没有显着'效果。

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