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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer characteristics of a new type of copper wire-bonded flat heat pipe using nanofluids
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Heat transfer characteristics of a new type of copper wire-bonded flat heat pipe using nanofluids

机译:新型纳米流体铜丝焊接扁平热管的传热特性

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摘要

An experimental study was conducted to investigate the thermal performances of a new type of copper wire-bonded flat heat pipe using water, ethanol and nanofluids as working fluids. The influences of the working fluid, the operating temperature or operating pressure, the wire diameter and the space gap between two wires on the thermal performances of the heat pipe were investigated. Experimental results show that the wire diameter has an important effect on the heat transfer coefficient but has hardly impact on the maximum heat flux. The space gap between two wires not only has an important effect on the heat transfer coefficient but also has a significant impact on the maximum heat flux. The maximum heat power increases apparently with increasing the operating temperature. Using nanofluid as working fluid can improve the heat transfer performance of the heat pipe; the best heat transfer performance of heat pipe is achieved at the concentration of 1.0wt.% under different saturation temperature conditions with different nanofluid; nanofluid is a kind of new working fluid to the copper wire-bonded flat heat pipe.
机译:进行了实验研究,以水,乙醇和纳米流体为工作流体,研究了新型的铜丝粘合扁平热管的热性能。研究了工作流体,工作温度或工作压力,焊丝直径和两根焊丝之间的间隙对热管热性能的影响。实验结果表明,线径对传热系数有重要影响,但对最大热通量几乎没有影响。两根导线之间的间隙不仅对传热系数有重要影响,而且对最大热通量也有显着影响。随着工作温度的升高,最大热功率明显增加。使用纳米流体作为工作流体可以提高热管的传热性能;在不同的纳米流体,不同的饱和温度条件下,热管的最佳传热性能为1.0wt。%。纳米流体是铜丝焊接扁平热管的一种新型工作流体。

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