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石墨烯微通道的流动传热数值模拟

刘志凯 朱旻琦 万吴兵 魏宁

轻工机械2024,Vol.42Issue(4):36-42,49,8.
轻工机械2024,Vol.42Issue(4):36-42,49,8.DOI:10.3969/j.issn.1005-2895.2024.04.005

石墨烯微通道的流动传热数值模拟

Numerical Simulation of Flow and Heat Transfer in Graphene Microchannel

刘志凯 1朱旻琦 2万吴兵 3魏宁1

作者信息

  • 1. 江南大学 机械工程学院,江苏 无锡 214122
  • 2. 中国电子科技集团58 研究所,江苏 无锡 214072
  • 3. 国家超算无锡中心,江苏 无锡 214000
  • 折叠

摘要

Abstract

In order to improve the heat transfer performance of microchannel heat sinks,the graphene coating was applied to the inner wall of the channels to optimize heat transfer efficiency.By combining molecular dynamics simulations with computational fluid dynamics,the impact of inlet velocity and channel length on total heat transfer rate at the solid-liquid interface of graphene-coated microchannels and conventional microchannels was investigated.The results show that the introduction of graphene leads to slippage of fluid molecules relative to the wall surface,increases the average flow velocity,and reduces the velocity difference between the fluid molecules.The use of graphene coatings and increased the inlet velocity can significantly improve interfacial heat transfer capacity.Compared with conventional microchannels,the heat transfer rate of graphene microchannels is increased by up to 49%,and the maximum average heat flux can reach 730 W/cm2.The interfacial heat transfer rate increases with the channel length,eventually reaches its maximum value and tends to stablility.The reseach results have some reference value for the design of high-performance microchannel heat sink.

关键词

微通道散热器/计算流体力学/分子动力学/石墨烯涂层/滑移速度/界面热阻

Key words

microchannel heat sink/CFD(Computational Fluid Dynamics)/MD(Molecular Dynamics)/graphene coating/slip velocity/interface thermal resistance

分类

能源科技

引用本文复制引用

刘志凯,朱旻琦,万吴兵,魏宁..石墨烯微通道的流动传热数值模拟[J].轻工机械,2024,42(4):36-42,49,8.

基金项目

江苏省自然科学青年基金项目(BK2021007). (BK2021007)

轻工机械

OACSTPCD

1005-2895

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