首页> 外文会议>4th International Conference on Nanochannels, Microchannels and Minichannels 2006(ICNMM2006) pt.B >Hydrodynamic Cavitation and Boiling in Refrigerant (R-123) Flow inside Microchannels
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Hydrodynamic Cavitation and Boiling in Refrigerant (R-123) Flow inside Microchannels

机译:微通道内部的制冷剂(R-123)流动中的水力空化和沸腾

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This report investigates the effect that hydrodynamic cavitation has on heat transfer. The fluid medium is refrigerant R-123 flowing through 227 μm hydraulic diameter microchannels. The cavitation is instigated by the inlet orifice. Adiabatic tests were conducted to study the two-phase cavitating flow morphologies and hydrodynamic characteristics of the flow. Diabatic experiments were performed resulting in surface temperatures under heat fluxes up to 213 W/cm~2 and mass velocities from 622 kg/m~2s to 1368 kg/m~2s. Results were compared to non-cavitating flows at the same mass velocities. It was found that the cavitating flows can significantly enhance the heat transfer. The heat transfer coefficient of the cavitating flows was larger than the non-cavitating flows by as much as 84%.
机译:该报告调查了水力空化对传热的影响。流体介质是流经227μm液压直径微通道的制冷剂R-123。进气孔会引起气穴现象。进行了绝热试验以研究两相空化流的形态和流动的水动力特性。进行了绝热实验,结果表明表面温度在高达213 W / cm〜2的热通量和622 kg / m〜2s的速度下达到1368 kg / m〜2s。将结果与相同质量流速下的非空化流进行比较。发现空化流可以显着增强热传递。空化流的传热系数比非空化流大84%。

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