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Drift-flux model of sub-channel in vertical rod bundles with spacer grids

机译:带有隔栅的垂直杆束中子通道的漂移通量模型

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Drift-flux model has been one of the most popular models predicting two phase flow parameters in nuclear reactor and other industrial equipment since proposed. Most of researches are based on the void fraction measurement on the whole cross-section of the void fraction, which is under the influence of casing tube and might be unfit for sub-channel. Therefore, experiments have been performed to measure the void fraction in sub-channels with the newly designed impedance void meter, based on which the existing drift-flux correlations have been evaluated. However, few correlations have good performance in bubbly and cap bubbly flow. In order to improve the accuracy and consider the physical significance, the new correlation of distribution parameter is proposed by adopting Julia's drift velocity correlation. The proposed correlation could predict the present data, Yang's data and Clark's data with the mean relative error of 13.96%, 16.23% and 24.9% respectively. Furthermore, the LID effect on distribution parameter has been analyzed with different spacer grids. The mixing vane spacer grid (MVSG) results in a larger value of distribution parameter than simplified spacer grid in low void fraction region for the stronger recirculating flow. (C) 2018 Elsevier Ltd. All rights reserved.
机译:自提出以来,漂移通量模型一直是预测核反应堆和其他工业设备中两相流参数的最受欢迎的模型之一。大多数研究是基于对空隙率整个横截面的空隙率测量,这是在套管的影响下,可能不适合于子通道。因此,已经进行了使用新设计的阻抗空隙计测量子通道中空隙率的实验,在此基础上评估了现有的漂移-通量相关性。但是,很少有相关性在气泡流和上限气泡流中具有良好的性能。为了提高精度并考虑物理意义,采用茱莉亚漂移速度相关性提出了新的分布参数相关性。所提出的相关性可以预测当前数据,Yang数据和Clark数据,平均相对误差分别为13.96%,16.23%和24.9%。此外,已使用不同的间隔网格分析了LID对分布参数的影响。混合叶片隔栅(MVSG)在低空隙率区域中产生比简化隔栅更大的分配参数值,以实现更强的循环流。 (C)2018 Elsevier Ltd.保留所有权利。

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