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Towards a dynamic system model for a two-phase cooling loop using microchannels

机译:建立使用微通道的两相冷却回路动态系统模型

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A one dimensional dynamic system model for an electronics cooling loop with a microchannel heat sink is developed. This model is based on the conservation of mass, momentum and energy in the various components of the flow loop. Empirical correlations are used to calculate the pressure single-phase flow, but is constructed to facilitate a future transition to two-phase to two-phase flow. Special attention is given to the transition from single-phase to two-phase flow. Initial single-phase validation of the model is performed using experimental data obtained from the microchannel test facility at Purdue University. Reasonable good agreement is found between the steady state results and the experimental data. Pressure losses are calculated accurately by taking into account the entrance and exit losses of the heat sink manifold.
机译:建立了带有微通道散热器的电子冷却回路的一维动态系统模型。该模型基于流回路中各个部分的质量,动量和能量守恒。经验相关性用于计算压力单相流量,但可方便将来转换为两相至两相流量。特别注意从单相流到两相流的过渡。使用从普渡大学微通道测试设施获得的实验数据进行模型的初始单相验证。在稳态结果和实验数据之间找到了合理的良好一致性。通过考虑散热器歧管的入口和出口损失,可以精确计算压力损失。

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