首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2011 >CAVITATION-BOILING COUPLING PHENOMENON EXPERIMENTAL INVESTIGATION OF R134A FLOW IN MICROCHANNEL
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CAVITATION-BOILING COUPLING PHENOMENON EXPERIMENTAL INVESTIGATION OF R134A FLOW IN MICROCHANNEL

机译:微通道内R134A流动空化-沸腾耦合现象的实验研究

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Cavitation-boiling coupling phenomenon of R134a flow in micro-channel was experimentally investigated. The cavitation structure, a rectangular micro-orifice 0.2 mm wide and 4mm long, embedded in a micro-channel 0.8 mm wide and 1 mm deep which was engraved on an oxygen-free copper plate covered with quartz glass. Electric film heater was employed under the copper bottom corresponding cavitation structures. Flow patterns were observed by microscope. In the experiment, a phenomenon was observed that hydrodynamic cavitation occurred easier as the mass flow rate increasing. The microchannel wall temperature increased and then decreased along channel with heat power, and flow regimes were different when heat power changed. The cavitation initial position is the corner behind the cavitation structure but not the main flow region.
机译:实验研究了R134a在微通道中的空化-沸腾耦合现象。空化结构是一个长方形的0.2毫米宽,4毫米长的微孔,嵌在一个0.8毫米宽,1毫米深的微通道中,刻在刻有石英玻璃的无氧铜板上。在铜底相应的气蚀结构下采用电热膜加热器。通过显微镜观察流动模式。在实验中,观察到一种现象,随着质量流量的增加,流体动力空化更容易发生。随着热能的增加,微通道壁的温度沿通道上升,然后下降,当热力变化时,流态不同。空化初始位置是空化结构后面的角,而不是主流区域。

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