4.8 Article

Jet Impingement Cooling in Power Electronics for Electrified Automotive Transportation: Current Status and Future Trends

期刊

IEEE TRANSACTIONS ON POWER ELECTRONICS
卷 36, 期 9, 页码 10420-10435

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TPEL.2021.3059558

关键词

Cooling; Power electronics; Heat transfer; Heating systems; Multichip modules; Reliability; Transportation; Cooling; electric vehicles; electrified powertrains; heat flux; inverters; jet impingement; power electronics

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Effective thermal management of power electronics in electric vehicles is crucial for reliability and increased power density. This article focuses on jet impingement as an advanced cooling technique, discussing its proven thermal performance in high-heat-flux applications and future technology development. Factors such as heat transfer, pressure drop, reliability, and current technical gaps and challenges in jet impingement research in electrified transportation are also highlighted.
Effective thermal management of power electronics in electric vehicles is essential for reliability and increased power density. Currently, traditional cooling technologies such as cold plates and heat sinks have been utilized by the automotive industry. As the next generation of power electronics implements wide-bandgap devices, however, increased heat fluxes will require more advanced cooling strategies. Recently, jet impingement has gained attention as an advanced cooling technique for power electronics due to its proven thermal performance in high-heat-flux applications. This article aims to review the state-of-the-art jet impingement designs applied for power electronics cooling, as well as review future jet impingement technology. Important factors for widespread implementation such as heat transfer, pressure drop, and reliability are discussed, along with the current technical gaps and challenges for jet impingement research in electrified transportation.

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