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Numerical simulation of heat and mass transfer in a 3D model of a loop heat pipe evaporator

机译:环热管蒸发器3D模型中热量和传质的数值模拟

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The article presents results of 3D numerical simulation of flow and conjugate heat and mass transfer in a model of the TacSat-4 satellite loop heat pipe evaporator. Mathematical model includes the Reynolds averaged Navier-Stokes equations describing a flow in the liquid and vapor regions, Darcy’s law for filtration modeling in the wicks and the energy equation with accurate coupling of connected sub-domains including effects of evaporation on interfaces between the porous and vapor regions. According to the simulation results, the evaporation localizes mainly at the vapor groove corners near the evaporator body. The vapor grooves operate under essentially different conditions, as a result, the flow rates differ several times. Significant thickening of the evaporator body yields only weak reduction in a level of the grooves’ flow rate non-uniformity.
机译:本文介绍了TACSAT-4卫星环热管蒸发器模型中的流动和缀合物热量和质量传递的3D数值模拟的结果。数学模型包括雷诺的平均Navier-Stokes方程,其描述液体和蒸汽区的流动,达西在灯芯中过滤建模的流程和能量方程,具有连接的子域的准确耦合,包括蒸发在多孔和多孔之间的界面上蒸发的效果。蒸气区。根据仿真结果,蒸发主要在蒸发器主体附近的蒸汽槽角处定位。蒸汽槽在基本上不同的条件下操作,结果,流速不同几次。蒸发器体的显着增厚仅产生凹槽流量不均匀性的水平的弱化。

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