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Circulation Effectiveness of Working Fluid in Inclined Micro Heat Pipes

机译:倾斜微热管中工作流体的循环效果

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Micro heat pipe is a two-phase heat transfer device offering effective high heat-flux removal in electronics cooling. Essentially, micro heat pipe relies on the phase-change processes, namely evaporation and condensation, and the circulation of working fluid to function as heat transfer equipment. The vast applications of micro heat pipe in portable appliances necessitate its functionality under different orientations with respect to gravity. Therefore, its thermal performance is strongly related to its orientation. By incorporating solid wall conduction, together with the continuity, momentum, and energy equations of the working fluid, a mathematical model is developed to investigate the heat and fluid flow characteristics of inclined micro heat pipes. We investigate both the favorable and adverse effects of gravity on the circulation rate which is intimately related to the thermal performance of micro heat pipes. The effects of gravity, through the angle of inclination, on the circulation strength and heat transport capacity are analysed. This study serves as a useful analytical tool in the micro heat pipe design and performance analysis, associated with different inclinations and operating conditions.
机译:微热管是一种双相传热装置,提供有效的高热通量去除电子冷却。基本上,微热管依赖于相变过程,即蒸发和冷凝,以及工作流体的循环用作传热设备。微热管在便携式设备中的广泛应用需要在不同取向下的功能相对于重力。因此,其热性能与其取向强烈相关。通过将固体壁传导结合在一起与工作流体的连续性,动量和能量方程一起,开发了数学模型以研究倾斜微热管的热量和流体流动特性。我们调查重力对与微热管的热性能密切相关的循环速率的有利和不利影响。分析了重力,通过倾斜角度对循环强度和传热能力的影响。本研究用作微热管设计和性能分析中的有用分析工具,与不同的倾斜和操作条件相关联。

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