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An experimental and computational study of water cooled heatsinks for HEV's

机译:HEV水冷散热器的实验和计算研究

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Power switching devices in dc/dc power converters for Hybrid Electric Vehicles (HEVs) are fluid cooled. Fluid cooled heatsinks make up nearly a third of the volume and weight of DC/DC converters. The design of heatsinks in automotive applications is therefore of paramount importance in order to gain high power-to-volume and high power-to-weight ratios. Literature on heatsink designs often present test results that are based on one set of input data only (e.g. fluid inlet temperature, flow rate and fluid mixture). The fluid inlet temperature and flow rate, however, can vary substantially in an automotive fluid cooled system and the heatsink may therefore not perform well. Fluctuation of theses parameters must therefore be considered in the design of fluid cooled heatsinks in order to allow optimal cooling performance under all conditions. This paper describes the design of a heatsink that is optimised for one set of parameters. The heatsink is then tested at temperature and flow rate variations to emulate the fluctuation in a vehicle cooling system.
机译:用于混合动力电动车辆(HEV)的DC / DC功率转换器中的电源开关装置是流体冷却的。流体冷却散热器构成了DC / DC转换器的容积和重量的近三分之一。因此,汽车应用中的散热器的设计是至关重要的,以获得高功率到容积和高功率对重量比率。散热器的文献通常存在基于一组输入数据的测试结果(例如,流体入口温度,流速和流体混合物)。然而,流体入口温度和流速可以在汽车流体冷却系统中基本上变化,因此散热器可能不执行良好。因此,必须在流体冷却散热器的设计中考虑这些参数的波动,以便在所有条件下实现最佳的冷却性能。本文介绍了为一组参数进行优化的散热器的设计。然后在温度和流速变化下测试散热器,以使车辆冷却系统中的波动模拟。

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