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首页> 外文期刊>International Journal of Heat and Mass Transfer >Bubble breakup and coalescence models for bubbly flow simulation using interfacial area transport equation
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Bubble breakup and coalescence models for bubbly flow simulation using interfacial area transport equation

机译:基于界面面积输运方程的气泡流模拟的气泡破裂和合并模型

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This paper provides the state-of-the-art critical review on the modeled source and sink terms of the one group interfacial area transport equation. The reviewed source and sink terms include models developed by Wu et al., Hibiki and Ishii, Hibiki et al., Yao and Morel, Park et al., Hibiki et al., Kataoka et al., Nguyen et al., Shen and Hibiki and Hazuku et al. The present critical review assesses major issues in modeling the one-group source and sink terms. Important conclusions are that the existing source and sink terms are not well-validated for developing and transient flows and the applicability of the source and sink terms to high pressure conditions such as prototypic nuclear reactor conditions has not been well-discussed. In view of these, coefficients of the source and sink terms in Hibiki and Ishii's model have been modified for their application to prototypic nuclear reactor conditions. In addition, approximated area-averaged source and sink terms due to turbulent diffusion and lateral migration are derived by area-averaging local source and sink terms due to turbulent diffusion and lateral migration developed by Kataoka et al. The role of the area-averaged source and sink terms due to turbulent diffusion and lateral migration on the interfacial area transport should be tested in a future study. This paper also overviews important model validation challenges to be addressed in a future study. The challenging model validation should address the model performance for various test sections and flow conditions. They are (1) the effect of channel size (small (or micro/mini)-to-large channels) on the interfacial area transport, (2) the scalability of the interfacial area transport equation to prototypic nuclear reactor conditions, (3) the effect of covariance due to phase distribution on the interfacial area transport, (4) the effect of inlet conditions on the interfacial area transport, (5) the applicability of the interfacial area transport equation to transient and developing flow conditions, and (6) the applicability of the interfacial area transport equation to various flow channels including a rod bundle. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提供了对一组界面区域传输方程的模型源项和宿项的最新技术的重要综述。审查的源和汇术语包括Wu等人,Hibiki和Ishii,Hibiki等人,Yao和Morel,Park等人,Hibiki等人,Kataoka等人,Nguyen等人,Shen等人开发的模型。 Hibiki和Hazuku等。本批判性评估评估了对一组源和汇术语建模的主要问题。重要的结论是,现有的源汇和汇汇项并没有得到很好的验证以用于发育和瞬变流动,并且尚未充分讨论源汇和汇汇项对高压条件(如原型核反应堆条件)的适用性。有鉴于此,已对Hibiki和Ishii模型中的源项和宿项系数进行了修改,以将其应用于原型核反应堆条件。此外,由Kataoka等人开发的由湍流扩散和侧向迁移引起的局部源和汇聚区域的面积平均,可以推导出由于湍流扩散和侧向迁移而引起的近似面积平均的源汇和汇聚项。湍流扩散和侧向迁移所引起的面积平均源和汇项在界面区域传输中的作用应在以后的研究中进行测试。本文还概述了未来研究中要解决的重要模型验证挑战。具有挑战性的模型验证应解决各种测试部分和流动条件下的模型性能。它们是(1)通道尺寸(小(或微/微型)到大通道)对界面面积传输的影响,(2)界面面积传输方程对原型核反应堆条件的可扩展性,(3)相分布对界面面积输运的协方差影响;(4)入口条件对界面面积输运的影响;(5)界面​​面积输运方程式对瞬态和发展流动条件的适用性;以及(6)界面面积传输方程对包括棒束在内的各种流动通道的适用性。 (C)2018 Elsevier Ltd.保留所有权利。

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