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- W2895880066 abstract "With the increasing heat fluxes of IC chips, the traditional rectangular microchannel almost reaches the limits to meet the requirements. It is significant to propose optimized structure or other enhanced heat transfer mothed to improve the heat dissipation in the limited space. In this study, a three-dimensional conjugate numerical simulation model has been conducted to analyze the flow and temperature characteristic of proposed silicon-based rectangular microchannel structures. It was found that the microchannel with the front loose back compact configuration (FLBC) of internal spoiler cavities presented the optimal flow and heat transfer performance, which was furtherly improved as the increases of Re. Additionally, the pressure drop of the microchannel sustained approximate identical given that the number of internal spoiler cavities was kept the same. In terms of thermal performance, lower temperature and better uniform temperature characteristic of the microchannel with FLBC were obtained comparing with that using traditional rectangular microchannel with the same number of internal spoiler cavities. It was believed that the presented method could pave a way for thermal management in high heat flux electronic devices." @default.
- W2895880066 created "2018-10-26" @default.
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- W2895880066 date "2018-08-01" @default.
- W2895880066 modified "2023-09-23" @default.
- W2895880066 title "Numerical study on a novel microchannel structure towards high efficient heat dissipation in high power electronics" @default.
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- W2895880066 doi "https://doi.org/10.1109/icept.2018.8480799" @default.
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