首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >FLOW BOILING OF CARBON DIOXIDE IN HORIZONTAL MINI-CHANNEL AND PATTERN DYNAMICS APPROACH TO STUDY FLOW PATTERN
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FLOW BOILING OF CARBON DIOXIDE IN HORIZONTAL MINI-CHANNEL AND PATTERN DYNAMICS APPROACH TO STUDY FLOW PATTERN

机译:水平小通道中二氧化碳的沸腾及模式动力学研究方法

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This paper provides a brief review on experimental and numerical investigations of flow patterns, pressure drop, and heat transfer including critical heat flux (CHF) of flow boiling carbon-dioxide (CO_2) at high pressure in mini-channels ranging 0.5mm to 3.0mm in diameter. The flow patterns of CO_2 at high pressure with small density difference between vapor and liquid and low surface tension show a slightly different structure from so far observed in mini-channels with air and water. The phase mal-distribution, similar to conventional tubes, in the cross-section becomes rather significant beyond the critical Bond number, which leads to the intermittent dryout at the upper wall of the tube. So far proposed flow pattern transition criteria are ineffective there, and newly developed discrete bubble model demonstrates its high potential in predicting flow patterns. Conventional homogeneous flow model is still available in predicting pressure drop. Based on this fact, flow instability problems, which significantly affect CHF, is discussed focusing on high-pressure CO_2 flow.
机译:本文简要介绍了在0.5mm至3.0mm的小通道内在高压下对流动沸腾二氧化碳(CO_2)的流动模式,压降和传热(包括临界热通量(CHF))进行实验和数值研究的情况在直径上。迄今为止,在具有空气和水的小通道中观察到的CO_2的高压流态具有微弱的蒸气和液体密度差以及低的表面张力,显示出与目前略有不同的结构。类似于常规管子,在横截面中的相分布不均变得非常重要,超过了临界键数,这导致了管子上壁的间歇性变干。到目前为止,所提出的流型转换标准在那里无效,新开发的离散气泡模型证明了其在预测流型方面的巨大潜力。常规均质流模型仍可用于预测压降。基于这一事实,讨论了严重影响CHF的流动不稳定性问题,重点是高压CO_2流动。

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