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Numerical Simulation of Upward Two-Phase Flow in Narrow Channel between Two Flat Plates with Bilateral Heating

机译:双侧加热两个平板窄通道向上两相流的数值模拟

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The convection heat transfer characteristic in narrow channel is superior. Therefore, narrow channels are suitable for being manufactured into compact heat transfer components with high heat transfer performance. This new technology of heat transfer enhancement with no source is widely applied to various fields such as microelectronic heat sink, cryogenic industry, chemical industry, aeronautic & astronautic industry and nuclear engineering. In integrated reactor, the coolant channels between the plate fuels are narrow channels. As to the investigation of two-phase flow and heat transfer in narrow channels, reports are focused on experimental research with low pressure, at home and abroad, but reports on numerical simulation research are relatively small. Based on separated flow, a theoretical two-fluid model predicting for upward flow in a rectangular narrow channel with bilateral heating has been developed in this paper. The theoretical model is based on fundamental conservation principles: the mass, momentum and energy conservation equations of liquid films and the momentum conservation equation of vapor core. The model assumed that liquid film covers the surface of the channel while the vapor with entrained droplets flows in the central core. And there exists the mass transfer between the liquid droplets in the vapor core and the liquid films. Through numerically solving these equations, liquid film thickness, radial velocity and temperature distribution in liquid films and heat transfer coefficient are obtained. The calculated results shows that the width of the narrow channel, heat pattern, heat flux have great influences on heat transfer coefficient and the thickness of liquid film. The heat transfer coefficient will increase with the decrease of the channel width. That is, the heat transfer may be enhanced with small rectangular narrow channel. But when the channel width is less than a certain value, the model may not be proper anymore. So the further research should be necessary. As the applications of the present model, the critical heat flux and critical quality are calculated.
机译:狭窄通道中的对流传热特性是优越的。因此,窄通道适用于具有高传热性能的紧凑型传热组件。这种热传递增强技术无源广泛应用于各种领域,如微电子散热器,低温工业,化学工业,航空航天工业和核工程。在集成的反应器中,板燃料之间的冷却剂通道是窄通道。至于调查狭窄渠道中的两相流量和热传递,报告集中在国内外低压的实验研究,但有关数值模拟研究的报道相对较小。基于分离的流动,本文已经开发了一种具有双边加热的矩形窄通道中的向上流动的理论双流体模型。理论模型基于基础保护原理:液体膜的质量,动量和节能方程及蒸气芯的动量保守方程。该模型假设液体膜覆盖通道的表面,同时具有夹带液滴在中心芯中的蒸汽流动。并且存在蒸气芯和液体膜之间的液滴之间的质量传递。通过数值求解这些方程,获得液体膜厚度,液体膜和热传递系数的温度分布。计算结果表明,窄通道,热图案,热通量的宽度对传热系数和液体膜的厚度具有很大的影响。传热系数随着通道宽度的降低而增加。也就是说,可以用小矩形窄通道增强传热。但是当信道宽度小于一定值时,模型可能不再适当。所以应该需要进一步的研究。作为本模型的应用,计算临界热通量和临界质量。

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