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首页> 外文期刊>Annals of nuclear energy >Numerical implementation, verification and validation of two-phase flow four-equation drift flux model with Jacobian-free Newton-Krylov method
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Numerical implementation, verification and validation of two-phase flow four-equation drift flux model with Jacobian-free Newton-Krylov method

机译:两相流四方程漂移通量模型的无Jacobian Newton-Krylov方法数值实现,验证和确认

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This paper presents a numerical investigation on using the Jacobian-free Newton-Krylov (JENK) method to solve the two-phase flow four-equation drift flux model with realistic constitutive correlations ('closure models'). The drift flux model is based on Isshi and his collaborators' work. Additional constitutive correlations for vertical channel flow, such as two-phase flow pressure drop, flow regime map, wall boiling and interfacial heat transfer models, were taken from the RELAP5-3D Code Manual and included to complete the model. The staggered grid finite volume method and fully implicit backward Euler method was used for the spatial discretization and time integration schemes, respectively. The Jacobian-free Newton-Krylov method shows no difficulty in solving the two-phase flow drift flux model with a discrete flow regime map. In addition to the Jacobian-free approach, the preconditioning matrix is obtained by using the default finite differencing method provided in the PETSc package, and consequently the labor-intensive implementation of complex analytical Jacobian matrix is avoided. Extensive and successful numerical verification and validation have been performed to prove the correct implementation of the models and methods. Code-to-code comparison with RELAP5-3D has further demonstrated the successful implementation of the drift flux model. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文对使用无雅可比牛顿-克雷洛夫(JENK)方法求解具有实际本构关系的两相流四方程漂移通量模型(“封闭模型”)进行了数值研究。漂移通量模型基于Isshi及其合作者的工作。垂直通道流的其他本构关系,例如两相流压降,流态图,壁沸腾和界面传热模型,均取自RELAP5-3D代码手册,并包括在内以完善模型。离散网格和时间积分方案分别采用了交错网格有限体积法和完全隐式向后欧拉方法。无雅可比牛顿-克雷洛夫方法在求解具有离散流态图的两相流漂移通量模型时没有困难。除了无雅可比方法之外,还使用PETSc软件包中提供的默认有限差分方法获得了预处理矩阵,因此避免了复杂的分析雅可比矩阵的劳动密集型实现。已经进行了广泛而成功的数值验证和确认,以证明模型和方法的正确实施。与RELAP5-3D的代码之间的比较进一步证明了漂移通量模型的成功实施。 (C)2015 Elsevier Ltd.保留所有权利。

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