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Computational study of LNG evaporation and heat diffusion through a LNG cargo tank membrane

机译:液化天然气通过液货舱膜的蒸发和热扩散的计算研究

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The seepage of the cryogenic LNG through the cracks in membrane insulation may result in cold spots within the hull structures of LNG vessels. At the cold spot, the hull structure will be crystalized and brittle. Also, the loss of LNG containments may lead to a potentially significant hazard. The estimation of the temperature distribution along the insulation panel and the heat diffusion speed through the insulation materials are crucial to assess the safety of LNG vessels. The prediction of the flow and thermal behaviors of the leaked LNG requires complex multiphase flow numerical simulation. The CFD (computational fluid dynamics) model is proposed to simulate the diffusion behavior and the heat transfer characteristics of leaked LNG including the liquid-to-gas phase change through porous structure. The CFD model considers phase change, gas-liquid reactions in the porous media and the accompanied rates of heat transfer. It also considers the geometry of NO96 membrane storage facilities with glass wool and plywood. In the numerical simulation, the LNG pool spreading, heat diffusion, and the evaporation are investigated. The simulation indicates that the predicted speed of seepage is too high to evaporate the LNG after the leakage. (C) 2015 Elsevier Ltd. All rights reserved.
机译:低温液化天然气通过膜绝缘层中的裂缝渗漏,可能会导致液化天然气船船体结构内出现冷点。在冷点处,船体结构将结晶且变脆。而且,LNG密闭性的损失可能导致潜在的重大危害。沿着隔热板的温度分布以及通过隔热材料的热扩散速度的估计对于评估LNG容器的安全性至关重要。对泄漏的液化天然气的流动和热行为的预测需要复杂的多相流动数值模拟。提出了CFD(计算流体动力学)模型,以模拟泄漏的LNG的扩散行为和传热特性,包括通过多孔结构的液-气相变。 CFD模型考虑了相变,多孔介质中的气液反应以及伴随的传热速率。它还考虑了使用玻璃棉和胶合板的NO96膜存储设施的几何形状。在数值模拟中,研究了LNG池的扩散,热扩散和蒸发。模拟表明,渗漏后的预测渗漏速度太高而无法蒸发LNG。 (C)2015 Elsevier Ltd.保留所有权利。

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