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Computational fluid dynamics simulation of LNG pool fire radiation for hazard analysis

机译:用于危害分析的LNG池火辐射的计算流体动力学模拟

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In this paper, a three-dimensional computational fluid dynamics (CFD) model has been conducted on liquefied natural gas (LNG) pool fire radiation. Besides the general governing equations (continuity, energy and momentum), three key components as viscous model of large eddy simulation (LES), non-premixed combustion model, and radiation model for pool fire radiation have been considered to take account of the unsteady and pulsed burning flames, which are especially important in capturing characteristics of large LNG pool fire. The experimental data from Montoir series field tests of LNG pool fire, which could demonstrate a relatively complete performance of large LNG pool fire, have been applied to validate the CFD model of fire radiation. The relative error is less than 10% and the results are in good agreement with the test data. CFD model performs better than the commonly used engineering model as Solid Flame Model. The verified CFD model is then applied to perform a hazard analysis for a LNG satellite station. The spacing distances between facilities (e.g. LNG tanks and vaporizers) and ignition source have been evaluated numerically to avoid thermal radiation damage. It is concluded that the spacing distance between AAV banks and impoundment walls should be enlarged.
机译:本文针对液化天然气(LNG)池火辐射进行了三维计算流体动力学(CFD)模型。除了一般的控制方程式(连续性,能量和动量)外,还考虑了三个关键组成部分,即大涡模拟(LES)的粘性模型,非预混燃烧模型和池火辐射的辐射模型,其中考虑了不稳定和脉冲燃烧的火焰,这对于捕获大型LNG池火的特征尤其重要。来自Montoir系列LNG池火的现场试验的实验数据可以证明大型LNG池火的性能相对完整,已用于验证火辐射的CFD模型。相对误差小于10%,结果与测试数据吻合良好。 CFD模型的性能优于常用工程模型(例如Solid Flame模型)。然后,将经过验证的CFD模型应用于LNG卫星站的危害分析。设施(例如液化天然气罐和气化器)与点火源之间的间隔距离已进行了数值评估,以避免热辐射损坏。结论是应扩大AAV堤与蓄水墙之间的距离。

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