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Numerical study of natural convection in a liquefied natural gas tank

机译:液化天然气罐中自然对流的数值研究

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摘要

Natural convection in a liquefied natural gas storage tank, which is caused by the heat absorption from the surrounding environment, is studied numerically by solving the conservation equations for mass, momentum, and energy with a commercial computational fluid dynamics code, FLUENT. The present numerical results show that the interfacial heat transfer rate, which is directly related to the boil-offgas generation rate, strongly depends on the liquid-solid contact area. The contribution of the heat transfer rate from the vapor region is negligible compared with that from the liquid region. The effects of the external convection coefficient, tank size, and tank shape on the flow and temperature fields and on the interfacial heat flux are quantified.
机译:通过使用商业计算流体动力学代码FLUENT求解质量,动量和能量守恒方程,对液化天然气储罐中的自然对流进行了数值研究,该对流是由周围环境的热量吸收引起的。目前的数值结果表明,与传热速率直接相关的界面传热速率在很大程度上取决于液固接触面积。与来自液体区域的传热速率相比,来自蒸汽区域的传热速率的贡献可忽略不计。量化了外部对流系数,储罐尺寸和储罐形状对流场和温度场以及界面热通量的影响。

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