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首页> 外文期刊>International Journal of Heat and Mass Transfer >Flow boiling in microchannel with synthetic jet in cross-flow
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Flow boiling in microchannel with synthetic jet in cross-flow

机译:合成射流在错流下在微通道中沸腾

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Flow boiling heat transfer in a microchannel with a micro synthetic jet powered by liquid/vapor phase change was studied. The synthetic jet had no moving parts and used the motion of the interfacial layer between vapor and liquid to propel liquid. Bubbles were generated on a micro heater in a chamber, 3.5 mm in radius and 220 pm tall, which was connected to the microchannel through a 300 pm nozzle opening. Periodic growth and collapse of bubbles in the chamber powered the synthetic jet. Using highspeed photography and a microscope, the sequence of bubble growth and collapse in the chamber, bubble nucleation in the microchannel, and their interaction with the synthetic jet were captured and analyzed. The jet velocity was estimated using image processing and its momentum coefficient was used to characterize the strength of the synthetic jet. The results showed that the synthetic jet enhanced nucleate flow boiling heat transfer in the microchannel by up to 20%. dry-out spots formed over the heated surface for high heat fluxes were mitigated by the synthetic jet as it assisted rewetting the surface and maintaining the integrity of the thin liquid film adjacent to the heated surface.
机译:研究了由液体/蒸汽相变驱动的微合成射流在微通道中的沸腾传热。合成射流没有运动部件,并利用蒸汽和液体之间的界面层运动来推动液体。在半径为3.5毫米,高为220 pm的腔室内的微型加热器上产生气泡,该气泡通过300 pm的喷嘴开口连接到微通道。腔室中气泡的周期性增长和破裂为合成射流提供了动力。使用高速摄影和显微镜,捕获并分析了气泡在腔室中生长和破裂,微通道中气泡成核及其与合成射流的相互作用的顺序。使用图像处理估计射流速度,并将其动量系数用于表征合成射流的强度。结果表明,合成射流将微通道中的核流沸腾传热提高了20%。合成射流可减轻在加热表面上形成的高热通量干燥点,因为它有助于重新润湿表面并保持与加热表面相邻的液体薄膜的完整性。

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