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Algebraic turbulence modeling in adiabatic and evaporating annular two-phase flow

机译:绝热与蒸发环形两相流中的代数湍流建模

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The study considers algebraic turbulence modeling in adiabatic and evaporating annular two-phase flow, focusing in particular on momentum and heat transfer (so-called 'convective boiling') through the annular liquid film. In contrast with single-phase wall-bounded flow theory, shear-driven annular liquid films are assumed here to behave as fluid-bounded flows, mostly interacting with the shearing gas-entrained droplets core flow. Besides providing velocity and temperature profiles through the liquid film, the turbulence model proposed here predicts key parameters such as the average liquid film thickness, the void fraction and the convective boiling heat transfer coefficient with accuracies comparable or better than those of leading design correlations. This turbulence model is part of a unified annular flow modeling suite that includes methods to predict the entrained liquid fraction and the axial frictional pressure gradient. The underlying heat transfer database covers nine fluids (water, two hydrocarbons and six refrigerants) for vertical and horizontal tubes of 1.03-14.4 mm diameter and pressures of 0.1-7.2MPa. Importantly, this study shows that there appears to be no macro-to-microscale transition when it comes to annular flow. Simply better physical modeling is required to span this range.
机译:该研究考虑了在绝热和蒸发的环形两相流中的代数湍流建模,特别关注通过环形液膜的动量和热传递(所谓的“对流沸腾”)。与单相壁边界流理论相反,此处假定剪切驱动环形液体膜的行为像流体边界流,主要与剪切气体夹带的液滴核心流相互作用。除了提供通过液膜的速度和温度分布图之外,这里提出的湍流模型还预测关键参数,例如平均液膜厚度,空隙率和对流沸腾传热系数,其准确性可与领先的设计相关性相媲美或更好。该湍流模型是统一的环形流动建模套件的一部分,该套件包括预测夹带液体分数和轴向摩擦压力梯度的方法。基本的传热数据库涵盖直径为1.03-14.4 mm,压力为0.1-7.2MPa的垂直和水平管的九种流体(水,两种碳氢化合物和六种制冷剂)。重要的是,这项研究表明,当涉及环形流动时,似乎没有宏观到微观的转变。仅需要更好的物理建模来跨越这个范围。

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