Experimental investigation and Numerical Analysis of Horizontally Placed Flat Pulsating Heat Pipe for Electronic Cooling

R. D. Bhagat, S. Deshmukh
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引用次数: 1

Abstract

- The experimental investigation and numerical analysis of horizontally placed flat pulsating heat pipe is carried out. The flat pulsating heat pipe with a width of 11 mm and thickness of 2mm is used for experimental investigation. Out of the total volume of the tube 72 % of the volume is filled with water as working fluid. The processor of a computer act as heat source. The flat pulsating heat pipe takes heat from the processor of and rejects heat at another end. The externally powered fan is used to increase the rate of heat transfer. During the operation the 8 watts of power is consumed by the processor. The maximum temperature recorded during the operation of processor of computer is 323 K. The temperatures are measured with the help of digital laser thermometer. The numerical model is developed with Ansys design modeler. The volume of fluid approach is used to predict the physics of fluid flow during complex phenomenon of evaporation and condensation.
电子冷却用水平布置平面脉动热管的实验研究与数值分析
——对水平放置的平面脉动热管进行了实验研究和数值分析。实验采用宽度为11 mm,厚度为2mm的平板脉动热管。在管道的总体积中,72%的体积是由水作为工作流体填充的。计算机的处理器起热源的作用。扁平的脉动热管从处理器吸收热量,并在另一端排出热量。采用外置风扇,增加换热速率。在运行过程中,8瓦的功率被处理器消耗。计算机处理器运行时记录的最高温度为323k。温度测量采用数字激光测温仪。利用Ansys设计建模器建立了数值模型。流体体积法用于预测流体在蒸发和冷凝等复杂现象下的流动物理特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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