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Capillary hydrodynamics and transport processes during phase change in microscale systems

机译:微观系统相变期间毛细管流体动力学和运输过程

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The characteristics of two-phase gas-liquid flow and heat transfer during flow boiling and condensing in micro-scale heat exchangers are discussed in this paper. The results of numerical simulation of the evaporating liquid film flowing downward in rectangular minichannel of the two-phase compact heat exchanger are presented and the peculiarities of microscale heat transport in annular flow with phase changes are discussed. Presented model accounts the capillarity induced transverse flow of liquid and predicts the microscale heat transport processes when the nucleate boiling becomes suppressed. The simultaneous influence of the forced convection, nucleate boiling and liquid film evaporation during flow boiling in plate-fin heat exchangers is considered. The equation for prediction of the flow boiling heat transfer at low flux conditions is presented and verified using experimental data.
机译:本文讨论了微级热交换器流沸腾和冷凝过程中的两相气体流动和传热的特性。展示了在两相紧凑型热交换器的矩形迷你烷基中向下流动的蒸发液膜的数值模拟结果,并讨论了环形流动中的微观热传输与相变的特殊性。呈现的模型账户毛细管性诱导液体横向流动,并在核心沸腾被抑制时预测微观传递过程。考虑了板式翅片热交换器流沸腾过程中强制对流,核心沸腾和液膜蒸发的同时影响。通过实验数据介绍并验证了用于预测低通量条件下的流沸热传热的方程。

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