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首页> 外文期刊>International Journal of Heat and Mass Transfer >Pressure drop and heat transfer analysis of flow boiling in a minichannel: influence of the inlet condition on two-phase flow stability
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Pressure drop and heat transfer analysis of flow boiling in a minichannel: influence of the inlet condition on two-phase flow stability

机译:小型通道内沸腾的压降和传热分析:入口条件对两相流稳定性的影响

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摘要

We study flow boiling in a rectangular minichannel of 0.5x4 mm~2 cross-section (hydraulic diameter: 889 μm). A two-phase flow pressure drop analysis by ranging several mass flow rates for a chosen heat flux provided to the minichannel has been performed. Two kinds of upstream conditions have been investigated to show up the confinement influence on boiling. Steady and unsteady thermo-hydraulic behaviors are reported. A stability criterion is found depending on the two controlled parameters (heat flux and mass-flow rate). The upstream condition is modified by adding a compliant buffer tank and the procedure is repeated. Unsteady flows are observed with a different intensity and with a different range of operating conditions when the flow is mainly vapor. When no compliance source is connected, the unsteady behaviors are observed in the same operating conditions. Nevertheless the characteristics of the fluctuations differ notably in amplitude and frequency. In the steady state conditions a pressure loss model is proposed based on a homogeneous assumption. A total pressure loss steady state modeling of the boiling flow is realized using a homogeneous model for the two-phase flow zone to check the steady average minichannel pressure loss. A good agreement is found with the experimental and model results.
机译:我们研究了在横截面为0.5x4 mm〜2(液压直径:889μm)的矩形小通道中的沸腾现象。通过对提供给小通道的选定热通量的几种质量流率进行测量,进行了两相流压降分析。研究了两种上游条件,以显示限制条件对沸腾的影响。据报道稳态和非稳态热工行为。根据两个受控参数(热通量和质量流量)可以找到一个稳定性标准。通过添加顺应性缓冲罐来修改上游条件,并重复该过程。当流动主要为蒸汽时,会观察到不同强度和不同工况范围的不稳定流动。当未连接合规源时,在相同的操作条件下会观察到不稳定的行为。然而,波动的特征在幅度和频率上明显不同。在稳态条件下,基于均匀假设提出了压力损失模型。使用两相流区的均质模型来检查沸腾流的总压力损失稳态模型,以检查稳态平均小通道压力损失。与实验和模型结果发现了很好的一致性。

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