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LNG ACCIDENT DYNAMIC SIMULATION: APPLICATION FOR HAZARDOUS CONSEQUENCE REDUCTION

机译:LNG事故动态模拟:减少危险后果的应用

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摘要

The definition of hazard area, centered inside the LNG stations, is essential for risk assessment in LNG industry. In this study, computational fluid dynamics (CFD) simulations have been conducted for the two main LNG hazards, LNG flammable vapor dispersion and LNG pool fire radiation, to determine the hazard exclusion area. The spatial and temporal distribution of hazard in complex spill scenario has been considered in CFD model. With the developed CFD code, the spray water curtains were studied as a shield to prevent LNG vapor dispersing. Two types of water spray curtain, flat curtain and cone, were analyzed to show their performance for reduction and minimization of the hazard influencing distance and area. The high expansion foam firefighting process was also studied with dynamic simulation of the foam action. The characteristics of the foam action on the reduction of LNG vaporization rate, vapor cloud and flame size as well as the thermal radiation hazard were analyzed and discussed.
机译:以LNG站内为中心的危险区域的定义对于LNG工业中的风险评估至关重要。在这项研究中,已经为两个主要的LNG危险,LNG易燃蒸汽分散和LNG池火辐射进行了计算流体动力学(CFD)模拟,以确定危险排除区域。 CFD模型中考虑了复杂溢出场景中危害的空间和时间分布。通过开发的CFD码,研究喷水窗帘作为屏蔽以防止LNG蒸汽分散。分析了两种类型的水喷雾窗帘,平帘和锥形,以表明其降低和最小化影响距离和区域的性能。还研究了高膨胀泡沫消防过程,采用泡沫作用的动态模拟研究。分析并讨论了泡沫作用对降低LNG汽化速率,蒸汽云和火焰尺寸以及热辐射危害的特性。

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