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ANALYSIS OF THE EFFECT OF GEOMETRIC RATIO OF LIQUEFIED NATURAL GAS STORAGE TANK SIDES ON THERMAL CONDITIONS OF THE TANK

机译:液化天然气储罐侧面几何比对罐热条件的几何比例

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摘要

A mathematical model of thermogravitational heat transfer process in a closed area of liquefied natural gas (LNG) tanks is constructed and a numerical study is made. An unsteady system of energy and Navier-Stokes equations in dimensionless speed vortex-stream function variables with corresponding boundary conditions is solved. Based on the results of numerical analysis of distributions of thermodynamic parameters and temperatures, which characterize the basic laws of heat transfer, the mechanisms of formation of circulating flows in the LNG are disclosed. An analysis is made of the rate of LNG evaporation from the free surface in the tank. The effect of longitudinal and transverse dimensions of the tank and the rate of heat transfer at the inner boundaries of the tank on the temperature field in the LNG storage tanks is determined.
机译:构建了液化天然气(LNG)罐闭合区域中热再生传热过程的数学模型,并进行了数值研究。解决了具有相应边界条件的无量纲速度涡流流函数变量的无限能量和Navier-Stokes方程的不稳定系统。基于热力学参数分布的数值分析的结果,其特征在于传热的基本规律,公开了LNG中循环流动的形成机制。分析由罐中自由表面的LNG蒸发速率进行。确定了罐的纵向和横向尺寸的影响及在LNG储罐中的温度场上的罐内边界处的传热速率。

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