首页> 外文会议>ASME InterPack conference;IPACK2009 >NOVEL FLUORESCENT VISUALIZATION METHOD TO CHARACTERIZE TRANSPORT PROPERTIES IN MICRO/NANO HEAT PIPE WICK STRUCTURES
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NOVEL FLUORESCENT VISUALIZATION METHOD TO CHARACTERIZE TRANSPORT PROPERTIES IN MICRO/NANO HEAT PIPE WICK STRUCTURES

机译:新型荧光可视化方法表征微/纳米热管芯结构的传输特性

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Heat pipes have been gaining a lot of popularity in electronics cooling applications due to their ease of operation, reliability, and high effective thermal conductivity. An important component of a heat pipe is the wick structure, which transports the condensate from condenser to evaporator. The design of wick structures is complicated by competing requirements to create high capillary driving forces and maintain high permeability. While generating large pore sizes will help achieve high permeability, it will significantly reduce the wick's capillary performance. This study presents a novel experimental method to simultaneously measure capillary and permeability characteristics of the wick structures using fluorescent visualization. This technique will be used to study the effects of pore size and gravitational force on the flow-related properties of the wick structures. Initial results are presented on wick samples visually characterized from zero to nine g acceleration on a centrifuge. These results will provide a tool to understand the physics involved in transport through porous structures and help in the design of high performance heat pipes.
机译:由于热管的易操作性,可靠性和高效的热导率,热管在电子制冷应用中已经获得了广泛的普及。热管的重要组成部分是芯子结构,该结构将冷凝水从冷凝器传输到蒸发器。灯芯结构的设计由于产生高毛细驱动力和保持高渗透性的竞争要求而变得复杂。虽然产生大孔径将有助于实现高渗透性,但会显着降低灯芯的毛细管性能。这项研究提出了一种新颖的实验方法,可以同时使用荧光可视化技术来测量毛细结构的毛细作用和渗透性。该技术将用于研究孔径和重力对灯芯结构与流动相关的特性的影响。初始结果显示在吸液芯样本上,该吸液芯样本在离心机上的加速度从0到9 g不等。这些结果将提供一种工具,以了解通过多孔结构进行传输所涉及的物理过程,并有助于设计高性能热管。

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