首页> 外文会议>Proceedings of the ASME microanoscale heat and mass transfer international conference 2012 : Microanofluidics and Lab-on-a-chip .... >MODELING AND NUMERICAL SIMULATIONS OF VAPOR-LIQUID FLOW AND HEAT TRANSFER WITHIN MICROCHANNEL HEAT SINKS
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MODELING AND NUMERICAL SIMULATIONS OF VAPOR-LIQUID FLOW AND HEAT TRANSFER WITHIN MICROCHANNEL HEAT SINKS

机译:微通道传热中蒸汽-液体流动和传热的建模与数值模拟

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MicroChannel heat sinks have demonstrated the ability to dissipate large amounts of heat flux. This ability can be strongly enhanced by phase change of a liquid coolant. This paper numerically simulates the processes of liquid coolant flow, heat absorption and phase change within a microchannel, which is heated at one side by given heat fluxes. The two-phase flow model widely used in the investigations on heat and mass transfer within porous media is firstly introduced into microchannnel heat sinks by this paper. Experiential equations of the heat transfer coefficients in single phase and boiling region within microchannels are employed to calculate the convective heat exchange between solid wall and flowing fluid by an iterative process. The numerical results of pressure and temperature distributions obtained at different conditions are exhibited and analyzed. The results indicated that the trends predicted by this approach agree well with the previous references. Therefore the modeling is validated in some sense. At the same time, two phenomena, countercurrent flow in two-phase region and special pressure variations near the transition point, are exhibited.
机译:MicroChannel散热器已展示出散发大量热通量的能力。通过液体冷却剂的相变可以大大增强这种能力。本文数值模拟了微通道内的液体冷却剂流动,吸热和相变的过程,该微通道在一侧被给定的热通量加热。本文首先将广泛用于多孔介质内传热和传质研究的两相流模型引入微通道散热器。利用微通道内单相和沸腾区域中的传热系数的经验方程式,通过迭代过程来计算固体壁与流动流体之间的对流热交换。展示并分析了在不同条件下获得的压力和温度分布的数值结果。结果表明,这种方法预测的趋势与先前的参考文献吻合良好。因此,在某种意义上可以验证建模。同时,表现出两种现象:两相区域中的逆流流动和过渡点附近的特殊压力变化。

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