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THE NUMERICAL SIMULATION OF THE FLOW AND HEAT TRANSFER FOR THE POROUS WICK IN CPL EVAPORATOR

机译:CPL蒸发器多孔芯的流动和传热的数值模拟

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The computational model is developed for the analysis of the transient operation of porous wick in the flat CPL evaporator. The flow in the porous medium is modeled by the Brinkman-Forchheimer extended Darcy model. On the Basis of the microscopic conservation, the local thermal equilibrium and volume averaging theory are introduced to establish the mathematical model. Equations about the liquid-saturated layer and the vapor-saturated layer in porous wick are established respectively, which are coupled with matching conditions at the liquid-vapor interface. Based on the mathematical model, numerical method is adopted to simulate the flow and heat transfer in porous wick of evaporator under different heat loads. The numerical simulation results show reasonable agreement with the temperature, velocity and phase change interface position. The transient temperature characteristics are also studied in this paper.
机译:开发了计算模型,用于分析扁平CPL蒸发器中多孔芯的瞬态操作。多孔介质中的流动由Brinkman-Forchheimer延伸的Darcy模型建模。在微观保护的基础上,引入了局部热平衡和体积平均理论来建立数学模型。关于液态饱和层和多孔芯中的蒸汽饱和层的方程分别建立,其与液 - 蒸汽界面处的匹配条件偶联。基于数学模型,采用数值方法来模拟蒸发器在不同热负荷下蒸发器多孔芯的流动和传热。数值模拟结果显示了与温度,速度和相变接口位置的合理一致。本文还研究了瞬态温度特性。

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