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首页> 外文期刊>International Journal of Physical Sciences >Micro and nano thermal flow characteristics of a flat plate heat pipe heat spreader
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Micro and nano thermal flow characteristics of a flat plate heat pipe heat spreader

机译:平板式热管散热器的微米和纳米热流特性

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The present study investigates the characteristics and heat transfer performance of a flat heat pipe (FHP) heat spreader with various wick structures. A flat heat pipe heat spreader exemplifies successful heat transfer applications for highly efficient devices in space, energy technology, electronics cooling etc. The present experimental and simulation results reveal the heat transfer characteristics of a flat heat pipe with various parameters in the range of 5~20 W. In the experimental study, eight different wick structures were evaluated in order to find the optimum wick, and various working fluids such as water, acetone, ethanol, and TiO2-nanofluids were used since the main driving force comes from the capillary force generated in the wick. The 0.1%-TiO2nanofluidic flat heat pipe system exhibited the best heat spreading performance. In the present study, a simulation based on the thermal resistance network with special modified spreading resistance was conducted. The simulation results show a reasonable agreement with the experimental results.
机译:本研究研究了具有各种灯芯结构的扁平热管(FHP)散热器的特性和传热性能。扁平热管散热器很好地证明了空间,能源技术,电子冷却等高效设备的成功传热应用。目前的实验和仿真结果表明,各种参数在5〜 20W。在实验研究中,对八种不同的灯芯结构进行了评估,以找到最佳的灯芯。由于主要驱动力来自毛细作用力,因此使用了各种工作流体,例如水,丙酮,乙醇和TiO2纳米流体。在灯芯中产生。 0.1%TiO2纳米流体扁平热管系统表现出最佳的散热性能。在本研究中,进行了基于热阻网络的仿真,该热阻网络具有特殊的改进的扩展电阻。仿真结果与实验结果基本吻合。

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