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Solving phase appearance/disappearance two-phase flow problems with high resolution staggered grid and fully implicit schemes by the Jacobian-free Newton-Krylov Method

机译:用无雅可比牛顿-克雷洛夫方法求解具有高分辨率交错网格和全隐式方案的相出现/消失两相流问题

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The phase appearance/disappearance issue presents serious numerical challenges in two-phase flow simulations. Although many existing nuclear reactor safety analysis codes use different kinds of treatments for the phase appearance/disappearance problem, there are no fully consensual solutions. In this paper, a high-resolution spatial discretization scheme on staggered grid mesh and fully implicit time integration methods was used in two-phase flow simulations. Numerical treatments of the momentum equations were introduced for the disappearing phase without the need to use a cut-off value on void fraction. A discretized nonlinear system was solved using the Jacobian-free Newton Krylov (JFNK) method, which does not require expensive and error-prone derivation and implementation of analytical Jacobian matrix. These methods were tested with several two-phase flow problems with phase appearance/disappearance phenomena considered, such as a linear advection problem, an oscillating manometer problem, and a sedimentation problem. The combined methods demonstrated extremely robust and stable behaviors in solving the one-dimensional two-phase flow problems with phase appearance/disappearance. High resolution spatial discretization and second-order fully implicit method also demonstrated their capabilities in significantly reducing numerical errors. (C) 2016 Elsevier Ltd. All rights reserved.
机译:相出现/消失问题在两相流模拟中提出了严重的数值挑战。尽管许多现有的核反应堆安全性分析法规对相出现/消失问题使用了不同的处理方法,但尚无完全共识的解决方案。本文在两相流模拟中采用了交错网格的高分辨率空间离散方案和完全隐式时间积分方法。对于消失阶段引入了动量方程的数值处理,而无需使用空隙率的临界值。离散非线性系统使用无雅可比牛顿Krylov(JFNK)方法求解,该方法不需要昂贵且易于出错的推导和解析雅可比矩阵的实现。对这些方法进行了测试,考虑了几个两相流动问题,其中考虑了相出现/消失现象,例如线性对流问题,振荡压力计问题和沉降问题。组合方法在解决具有相出现/消失的一维两相流动问题时表现出极其强大和稳定的行为。高分辨率空间离散化和二阶完全隐式方法也证明了其显着减少数值误差的能力。 (C)2016 Elsevier Ltd.保留所有权利。

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