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Heat Transfer Performance of Heat Pipe Cooling Device with the Use of Alumina Nanofluid

机译:使用氧化铝纳米流体的热管冷却装置的传热性能

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摘要

Experimental study is performed to investigate heat transfer performance of multi heat pipe cooling device using pure water and alumina nanofluid as a working fluid. Consideration is given to the effects of fill charge ratio and heat flux on heat transfer performance. The cooling device consists of evaporator section, condenser section and adiabatic section. The evaporator and condenser whose external sizes are 45 mm in length, 45 mm in width and 8 mm in thickness, are connected by four parallel adiabatic circular tubes, i.e., adiabatic section. Here, the corresponding size is 6mm in outer diameter ×5mm in inner diameter ×45mm in length. Thermocouples of 0.3 mm in diameter are employed to measure the surface temperatures of the evaporator condenser sections. It is found that heat transfer performance as well as effective thermal conductivity of the heat pipe is affected by various operating conditions and higher cooling performance is coursed by using the nanofluid as a working fluid.
机译:以纯水和氧化铝纳米流体为工作流体,对多热管冷却装置的传热性能进行了实验研究。考虑填充电荷率和热通量对传热性能的影响。冷却装置由蒸发器部分,冷凝器部分和绝热部分组成。蒸发器和冷凝器的外部尺寸为长45mm,宽45mm和厚8mm,它们通过四个平行的绝热圆管,即绝热段连接。这里,相应的尺寸是外径6mm×内径5mm×长度45mm。直径为0.3毫米的热电偶用于测量蒸发器冷凝器部分的表面温度。已经发现,传热性能以及热管的有效导热率受到各种操作条件的影响,并且通过使用纳米流体作为工作流体来实现更高的冷却性能。

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