微通道平面两相散热片热性能的理论研究

J. Mansouri, S. Maalej, M. Zaghdoudi
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引用次数: 0

摘要

建立了考虑蒸发和冷凝过程中流体流动和传热传质过程的轴向微通道两相换热器的详细数学模型。该模型基于蒸发器、绝热区和冷凝器区域的质量、动量和能量守恒方程。该模型能够模拟不同形状的微通道,并能预测两相散热器的最大换热能力、最佳流体质量以及微通道沿线的温度和压力梯度。考虑了微通道中自由液体表面由于液-气摩擦作用而产生的剪切应力对液体流动的影响。该模型考虑了蒸发器和冷凝器中液膜的传热,用分离压力、界面热阻、表面粗糙度和曲率来描述。蒸发器和冷凝器的热阻是通过考虑半月板曲率的纵向分布来确定的,而半月板曲率的纵向分布取决于热负荷和散热器倾角。
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Theoretical investigation on the thermal prformance of flat two-phase heat spreaders with microchannels
A detailed mathematical model of a two-phase heat spreader with axial microchannels is developed in which the fluid flow is considered along with the heat and mass transfer processes during evaporation and condensation. The model is based on the equations for the mass, momentum and energy conservation, which are written for the evaporator, adiabatic, and condenser zones. The model, which permits to simulate several shapes of microchannels, can predict the maximum heat transfer capacity of the two-phase heat spreader, the optimal fluid mass, and the temperatures and pressure gradients along the microchannel. The effect of shear stresses at the free liquid surface in a microchannel due to the frictional liquid-vapor interaction on the liquid flow is taken into consideration. The heat transfer through the liquid films in both evaporator and condenser is accounted for in the model, which is described with respect to the disjoining pressure, interfacial thermal resistance, surface roughness, and curvature. The thermal resistances of the evaporator and condenser are determined by accounting for the longitudinal distribution of the meniscus curvature, which is dependent on heat load and heat spreader inclination.
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