首页> 外文会议>ASME International Conference on Micro/Nanoscale Heat and Mass Transfer >ENHANCED FLOW BOILING IN MICROCHANNELS USING AUXILIARY CHANNELS AND MULTIPLE MICRONOZZLES
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ENHANCED FLOW BOILING IN MICROCHANNELS USING AUXILIARY CHANNELS AND MULTIPLE MICRONOZZLES

机译:使用辅助通道和多个微淋动物增强微通道的流量沸腾

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Flow boiling in an array of five parallel microchannels (W=200 μm, H=250 μm, L=10 mm) can be dramatically enhanced using self-excited and self-sustained high frequency two-phase oscillations induced by two-nozzle configuration. However, the effect of the two-phase oscillations is confined to the downstream of the microchannels. In this study, four-nozzle microchannel configuration is developed with an aim to extend mixing to the entire channel. Flow boiling in the four-nozzle microchannel is experimentally studied with deionized water over a mass flux range of 120 to 600 kg/m~2 s. Overall average heat transfer coefficient (HTC) is significantly enhanced approximately 54.5% by extending the enhanced multi-channel mixing to the whole channel. It is equally important that the pressure drop can be further reduced by approximately 50%. Compared with previous two-nozzle design, four-nozzle configuration not only extends the mixing to the whole channel but also increase nucleation sites, which has been confirmed by visualization study to promote nucleation boiling.
机译:可以使用由双喷嘴配置引起的自激和自持续的高频两相振荡来显着提高五个平行微通道(W =200μm,H =250μm,L = 10mm)的阵列中的流动沸腾。然而,两相振荡的效果仅限于微通道的下游。在这项研究中,开发了四个喷嘴微通道配置,其目的是延伸到整个通道的混合。四喷嘴微通道中的流动沸腾在大量助焊剂范围内通过去离子水进行实验研究,在120至600 kg / m〜2 s。通过将增强的多通道混合延伸到整个通道,总平均传热系数(HTC)显着提高了约54.5%。它同样重要的是,压降可以进一步降低约50%。与先前的双喷嘴设计相比,四个喷嘴配置不仅延伸到整个通道的混合,而且增加了核心位点,这已经通过可视化研究证实,以促进核心沸腾。

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