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首页> 外文期刊>Annals of nuclear energy >Prediction of rod film thickness of vertical upward co-current adiabatic flow in rod bundle
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Prediction of rod film thickness of vertical upward co-current adiabatic flow in rod bundle

机译:棒束垂直向上并流绝热棒膜厚度的预测

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Prediction of rod film thickness and its distribution in annular flow in rod bundle is of essential importance to nuclear power industry. This is attributed to the possible film dryout on fuel rods under certain conditions, which will result in a drastically increasing cladding temperature and possible fuel damage. Though there exist a lot of models or correlations to predict film thickness for annular flow in pipes, there are few models to predict rod film thickness inside rod bundle. The one-dimensional models or correlations for pipe flow cannot be used for rod bundle directly due to different geometry and flow dynamics. In relation to this, a new approach to predict the rod film thickness inside rod bundle has been developed. This approach first divides the rod bundle cross-section into three regions according to their characteristic length scales. Then, the gas and liquid flow distribution inside rod bundle has been given with reasonable assumptions. Based on the flow distribution profile, the sub-channel area-averaged gas and liquid volumetric fluxes have been given. Finally, the correlation developed for pipe flow is adopted for each sub-channel based on the local two-phase parameters in the rod bundle. Compared to experimental data obtained in-house and found in the literature, the newly proposed approach can predict rod film thickness with satisfactory accuracy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:棒膜厚度的预测及其在棒束中环流中的分布对核电工业至关重要。这归因于在某些条件下燃料棒上的薄膜可能会变干,这将导致覆层温度急剧上升并可能损坏燃料。尽管有很多模型或相关性可以预测管道中环形流动的膜厚,但很少有模型可以预测棒束内部的棒膜厚度。由于几何形状和流动动力学不同,因此无法将管流的一维模型或相关性直接用于棒束。与此相关,已经开发了一种预测棒束内部棒膜厚度的新方法。该方法首先根据杆束横截面的特征长度尺度将其分为三个区域。然后,在合理的假设下给出了棒束内部的气体和液体流动分布。根据流量分布曲线,给出了子通道面积平均的气体和液体体积通量。最后,基于棒束中的局部两相参数,为每个子通道采用为管道流量建立的相关性。与内部获得并在文献中找到的实验数据相比,新提出的方法可以以令人满意的精度预测棒膜厚度。 (C)2018 Elsevier Ltd.保留所有权利。

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