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FLOW BOILING ENHANCEMENT IN MICROCHANNELS WITH DIFFUSION BONDED WIRE MESH

机译:扩散键合丝网在微通道中的沸腾增强

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摘要

Flow boiling and heat transfer enhancement in four parallel microchannels using a dielectric working fluid, HFE 7000, was investigated. Each channel was 1000 μm wide and 510 μm high. A unique channel surface enhancement technique via diffusion bonding a layer of conductive fine wire mesh onto the heating wall was developed. According to the obtained flow boiling curves for both the bare and mesh channels, the amount of wall superheat was significantly reduced for the mesh channel at all stream-wise locations. This indicated that the nucleate boiling in the mesh channel was enhanced due to the increase of nucleation sites the mesh introduced. Both the nucleate boiling dominated and convective evaporation dominated regimes were identified. In addition, the overall trend for the flow boiling heat transfer coefficient, with respect to vapor quality, was increasing until the vapor quality reached approximately 0.4. The critical heat flux (CHF) for the mesh channel was also significantly higher than that of the bare channel in the low vapor quality region. Due to the fact of how the mesh was incorporated into the channels, no pressure drop penalty was identified for the mesh channels. Potential applications for this kind of mesh channel include high heat-flux electronic cooling systems and various energy conversion systems.
机译:研究了使用电介质工作流体HFE 7000在四个平行微通道中的流动沸腾和传热增强。每个通道的宽度为1000μm,高度为510μm。开发了一种独特的通道表面增强技术,该技术通过将一层导电细金属丝网扩散粘合到加热壁上来实现。根据获得的裸露和网状流道的沸腾曲线,在所有流向位置,网状流道的壁过热量均显着降低。这表明由于网孔引入的成核位点的增加,网孔中的核沸腾得到增强。确定了以核沸腾为主和以对流蒸发为主的体系。另外,相对于蒸气质量,流动沸腾传热系数的总体趋势一直增加,直到蒸气质量达到约0.4。在低蒸汽质量区域,网状通道的临界热通量(CHF)也显着高于裸露通道的临界热通量。由于网孔是如何结合到通道中的事实,没有发现网孔通道的压降损失。这种网状通道的潜在应用包括高热通量电子冷却系统和各种能量转换系统。

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