首页> 外文会议>6th international conference on nanochannels, microchannels and minichannels 2008 >POOL BOILING HEAT TRANSFER ON VERTICAL MICRO POROUS COATED SURFACE IN CONFINED SPACE
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POOL BOILING HEAT TRANSFER ON VERTICAL MICRO POROUS COATED SURFACE IN CONFINED SPACE

机译:密闭空间中垂直微孔涂层表面的池沸腾传热

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Attributed to its high heat transfer coefficient, evaporating cooling involving the use of micro heat exchangers is considered a possible thermal management solution for cooling of high heat flux electronic devices. The present work desires to develop high-performance micro heat exchangers operating in the evaporation regime. The pool boiling heat transfer performance on one plain plate and one micro porous coated plate were tested in a vertical open and a 1-mm confined spaces. The test results show that the heat transfer was enhanced by the confined space at low and moderate heat fluxes but degraded at high flux condition on plain surface. The micro porous coating may significantly enhance the pool boiling performance. However, the heat transfer characteristic in confined space is not exactly the same as that on open surfaces. Owing to the interaction of forced removal of the superheated liquid due to the bubble departure and retard the departure of bubbles by the confined plate, there is no much difference for pool boiling heat transfer on micro porous coated surface in confined and unconfined spaces at low and moderate heat fluxes. At high heat flux, large amount of bubbles were confined by the cover plate. This caused the partial dry out and significant degrade on heat transfer performance.
机译:归因于其高的热传递系数,涉及使用微型热交换器的蒸发冷却被认为是用于冷却高热通量电子设备的可能的热管理解决方案。本工作期望开发在蒸发状态下运行的高性能微型热交换器。在垂直的开放空间和1mm的密闭空间中测试了一块平板和一块微孔涂层板上的池沸腾传热性能。测试结果表明,在中低热通量下,密闭空间增强了热传递,而在高通量条件下,在平坦表面上传热降低了。微孔涂层可以显着增强池沸腾性能。但是,密闭空间内的传热特性与开放表面上的传热特性并不完全相同。由于由于气泡的离开而迫使过热液体的去除和由密闭的板块阻止气泡离开的相互作用,在低和低密闭空间内的微孔涂层表面上的池沸腾传热没有太大区别。中等的热通量。在高热通量下,大量的气泡被盖板限制。这导致部分变干并严重降低传热性能。

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