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Multi-Layer Mini-Channel and Ribbed Mini-Channel Based High Performance Cooling Configurations for Automotive Inverters - Part A: Design and Evaluation

机译:基于多层微型通道和带肋微型通道的汽车变频器高性能冷却配置-A部分:设计和评估

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Necessitated by the dwindling supply of petroleum resources, various new automotive technologies have been actively developed from the perspective of achieving energy security and diversifying energy sources. Hybrid electric vehicles and electric vehicles are a few such examples. Such diversification requires the use of power control units essentially for power control, power conversion, and power conditioning applications such as variable speed motor drives (dc-ac conversion), dc-dc converters and other similar devices. The power control unit of a hybrid electric vehicle or electric vehicle is essentially the brain of the hybrid system as it manages the power flow between the electric motor generator, battery and gas engine. Over the last few years, the performance of this power control unit has been improved and size has been reduced to attain higher efficiency and performance, causing the heat dissipation as well as heat density to increase significantly. Efforts are constantly being made to reduce this size even further. As a consequence, a better high performance cooler/heat exchanger is required to maintain the active devices temperature within optimum range. Cooling schemes based on multiple parallel channels are a few solutions which have been widely used to dissipate transient and steady concentrated heat loads and can be applied to existing cooling system with minor modifications. The aim of the present study has therefore been to study the various cooling options based on mini-channel and rib-turbulated mini-channel cooling for application in a hybrid electric vehicle and other similar consumer products, and perform a parametric and optimization study on the selected designs. Significant improvements in terms of thermal performance, reduced overall pressure drop, and volume reduction have been shown both experimentally and numerically. This paper is the first part in a two part submission and focuses on the design and evaluation of mini-channel and rib-turbulated mini-channel cooling configurations. The second part of this paper discusses the manufacturing and testing of the cooling device.
机译:由于石油资源供应的减少,从实现能源安全和能源多样化的角度出发,积极开发了各种新的汽车技术。混合动力电动汽车和电动汽车就是这样的例子。这种多样化要求实质上将功率控制单元用于功率控制,功率转换和功率调节应用,例如变速电动机驱动器(DC-AC转换),DC-DC转换器和其他类似设备。混合动力电动汽车或电动汽车的功率控制单元实质上是混合动力系统的大脑,因为它管理电动发电机,电池和燃气发动机之间的功率流。在过去的几年中,此功率控制单元的性能得到了改善,尺寸已减小,以实现更高的效率和性能,从而导致散热和热量密度显着增加。人们一直在努力减小这种尺寸。结果,需要更好的高性能冷却器/热交换器,以将有源设备的温度保持在最佳范围内。基于多个并行通道的冷却方案是一些解决方案,已被广泛用于消散瞬态和稳定的集中热负荷,并且可以稍加修改即可应用于现有的冷却系统。因此,本研究的目的是研究基于微通道和肋湍流微通道冷却的各种冷却方案,以用于混合动力电动汽车和其他类似消费类产品,并对冷却性能进行参数化和优化研究。选定的设计。在热性能,减少的总压降和体积减小方面,已有显着的实验和数值显示。本文是两部分提交的第一部分,重点介绍了微通道和肋湍流微通道冷却配置的设计和评估。本文的第二部分讨论了冷却装置的制造和测试。

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