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A HEAT TRANSFER MODEL FOR EVAPORATING MICRO-CHANNEL COALESCING BUBBLE FLOW

机译:蒸发微通道聚结泡流量的传热模型

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The current study presents a one-dimensional model of confined coalescing bubble flow for the prediction of micro-channel convective boiling heat transfer. Coalescing bubble flow has recently been identified as one of the characteristic flow patterns to be found in micro-scale systems, occurring at intermediate vapor qualities between the isolated bubble and the fully annular regimes. As two or more bubbles bond under the action of inertia and surface tension, the passage frequency of the bubble-liquid slug pair declines, with a redistribution of liquid among the remaining flow structures. Assuming heat transfer to occur only by conduction through the thin evaporating liquid film surrounding individual bubbles, the present model includes a simplified description of the dynamics of the thin film evaporation process that takes into account the added mass transfer by breakup of the bridging liquid slugs. The new model has been confronted against experimental data taken within the coalescing bubble flow mode that have been identified by a diabatic micro-scale flow pattern map. The comparisons for three different fluids (R-134a, R-236fa and R-245fa) gave encouraging results with 83percent of the database predicted within a +-30percent error band.
机译:当前研究提出了微通道对流沸腾热传递的预测局限于聚结气泡流动的一维模型。聚结气泡流最近被鉴定为在微观尺度系统中找到的特征的流动模式中的一个,在所述分离的气泡和完全环形制度之间的中间蒸气的品质发生。作为两种或多种惰性和表面张力,气泡液塞对下降的通道频率,与液体剩余流结构中的再分布的作用下气泡键。假设传热仅通过传导通过围绕单独的气泡的薄的蒸发液体,薄膜发生,本模型包括薄膜蒸发过程,考虑到由桥接液塞的解体增加的质量传递的动力学的简化描述。新的模型已经面临针对已被鉴定由非绝热微尺度流型图聚结气泡流动模式内所取的实验数据。对于三个不同的流体(R-134A,R-236fa的和R-245fa的)的比较,得到鼓励与一个+ -30percent误差带内预测数据库的83percent结果。

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