首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >Microchannel Size Effects on Two-Phase Local Heat Transfer and Pressure Drop in Silicon MicroChannel Heat Sinks with a Dielectric Fluid
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Microchannel Size Effects on Two-Phase Local Heat Transfer and Pressure Drop in Silicon MicroChannel Heat Sinks with a Dielectric Fluid

机译:微通道尺寸对介电液硅微通道散热器中两相局部传热和压降的影响

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Two-phase heat transfer in microchannels can support very high heat fluxes for use in high-performance electronics-cooling applications. However, the effects of microchannel cross-sectional dimensions on the heat transfer coefficient and pressure drop have not been investigated extensively. In the present work, experiments are conducted to investigate the local flow boiling heat transfer in microchannel heat sinks. The effect of channel size on the heat transfer coefficient and pressure drop is studied for mass fluxes ranging from 250 to 1600 kg/m~2s. The test sections consist of parallel microchannels with nominal widths of 100, 250,400, 700, and 1000 μrn, all with a depth of 400 μm, cut into 12.7 mm × 12.7 mm silicon substrates. Twenty-five microheaters embedded in the substrate allow local control of the imposed heat flux, while twenty-five temperature microsensors integrated into the back of the substrates enable local measurements of temperature. The dielectric fluid Fluorinert FC-77 is used as the working fluid. The results of this study serve to quantify the effectiveness of microchannel heat transport while simultaneously assessing the pressure drop trade-offs.
机译:微通道中的两相传热可以支持非常高的热通量,以用于高性能电子冷却应用。然而,尚未广泛研究微通道横截面尺寸对传热系数和压降的影响。在目前的工作中,进行实验以研究微通道散热器中的局部流动沸腾传热。研究了质量通量为250至1600 kg / m〜2s的通道尺寸对传热系数和压降的影响。测试部分由平行微通道组成,标称宽度分别为100、250、400、700和1000μm,深度均为400μm,并切成12.7 mm×12.7 mm的硅基板。嵌入在基板中的25个微加热器允许对施加的热通量进行局部控制,而集成在基板背面的25个温度微传感器则可以对温度进行局部测量。介电液Fluorinert FC-77用作工作液。这项研究的结果有助于量化微通道传热的有效性,同时评估压降的权衡。

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