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Numerical simulations of nucleate boiling in impinging jets: Applications in power electronics cooling

机译:射流中核沸腾的数值模拟:在电力电子冷却中的应用

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Boiling jet impingement cooling is currently being explored to cool power electronics components. In hybrid vehicles, inverters are used for DC-AC conversion. These inverters involve a number of insulated-gate bipolar transistors (IGBTs), which are used as on/ off switches. The heat dissipated in these transistors can result in heat fluxes of up to 200 W/cm~2, which makes the thermal management problem quite important. In this paper, turbulent jet impingement involving nucleate boiling is explored numerically. The framework for these computations is the CFD code FLUENT. For nucleate boiling, the Eulerian multiphase model is used. The numerical results for boiling water and R113 jets (submerged) are validated against existing experimental data in the literature. Some representative IGBT package simulations that use R134a as the cooling fluid are also presented.
机译:目前正在研究采用沸腾射流冲击冷却来冷却电力电子元件。在混合动力汽车中,逆变器用于DC-AC转换。这些逆变器涉及许多用作开/关开关的绝缘栅双极型晶体管(IGBT)。这些晶体管中散发的热量可以导致高达200 W / cm〜2的热通量,这使得热管理问题变得非常重要。本文对含核沸腾的湍流射流进行了数值研究。这些计算的框架是CFD代码FLUENT。对于核沸腾,使用欧拉多相模型。针对文献中现有的实验数据验证了沸腾水和R113射流(淹没)的数值结果。还介绍了一些使用R134a作为冷却液的代表性IGBT封装仿真。

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