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Determination of dryout localization using a five-equation model of annular flow for boiling in minichannels

机译:使用环形流的五方程模型在小通道中沸腾确定干dry位置

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Detailed studies have suggested that the critical heat flux in the form of dryout in minichannels occurs when the combined effects of entrainment, deposition, and evaporation of the film make the film flow rate go gradually and smoothly to zero. Most approaches so far used the mass balance equation for the liquid film with appropriate formulations for the rate of deposition and entrainment respectively. It must be acknowledged that any discrepancy in determination of deposition and entrainment rates, together with cross-correlations between them, leads to the loss of accuracy of model predictions. Conservation equations relating the primary parameters are established for the liquid film and vapor core. The model consists of three mass balance equations, for liquid in the film as well as two-phase core and the gas phase itself. These equations are supplemented by the corresponding momentum equations for liquid in the film and the two-phase core. Applicability of the model has been tested on some experimental data.
机译:详细的研究表明,当薄膜的夹带,沉积和蒸发的综合作用使薄膜流速逐渐平稳地降至零时,就会在小通道内以干燥形式出现临界热通量。迄今为止,大多数方法对液膜使用质量平衡方程,并分别采用适当的公式表示沉积速率和夹带速率。必须承认,沉积和夹带速率确定中的任何差异以及它们之间的互相关性都会导致模型预测准确性的损失。建立了与主要参数有关的守恒方程,用于液膜和蒸气核。该模型由三个质量平衡方程组成,用于薄膜中的液体以及两相核和气相本身。这些方程式由薄膜和两相铁心中液体的相应动量方程式补充。该模型的适用性已经在一些实验数据上进行了测试。

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