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Effects of Varying Geometrical Parameters on Boiling From Microfabricated Enhanced Structures

机译:几何参数的变化对微结构增强结构沸腾的影响

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The current study involves two-phase cooling from enhanced structures whose dimensions have been changed systematically using microfabrication techniques. The aim is to optimize the dimensions to maximize the heat transfer. The enhanced structure used in this study consists of a stacked network of interconnecting channels making it highly porous. The effect of varying the pore size, pitch and height on the boiling performance was studied, with fluorocarbon FC-72 as the working fluid. While most of the previous studies on the mechanism of enhanced nucleate boiling have focused on a small range of wall superheats (0―4 K), the present study covers a wider range (as high as 30 K). A larger pore and smaller pitch resulted in higher heat dissipation at all heat fluxes. The. effect of stacking multiple layers showed a proportional increase in heat dissipation (with additional layers) in a certain range of wall superheat values only. In the wall superheat range 8―13 K, no appreciable difference was observed between a single layer structure and a three layer structure. A fin effect combined with change in the boiling phenomenon within the sub-surface layers is proposed to explain this effect.
机译:当前的研究涉及从增强结构进行的两相冷却,增强结构的尺寸已使用微细加工技术进行了系统更改。目的是优化尺寸以最大化传热。本研究中使用的增强结构由相互连接的通道组成的堆叠网络组成,使其高度多孔。以碳氟化合物FC-72为工作液,研究了改变孔径,螺距和高度对沸腾性能的影响。尽管先前有关增强核沸腾机理的大多数研究都集中在壁过热的小范围内(0-4 K),但目前的研究范围更广(高达30 K)。较大的孔和较小的节距导致所有热通量下的较高散热。的。仅在一定范围的壁过热值范围内,多层堆叠的热效应显示出(附加层)的散热成比例增加。在8-13 K的壁过热范围内,单层结构和三层结构之间没有观察到明显的差异。提出了鳍效应与地下层内沸腾现象的变化相结合来解释这种效应。

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