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An implicit numerical scheme for the simulation of three-dimensional two-phase flows in light water nuclear reactors

机译:轻水核反应器中三维两相流动模拟的隐含数值方案

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摘要

An implicit numerical scheme is presented for solving the two-fluid model widely used in the analysis of a gas-liquid two-phase flow in light water nuclear reactors (LWRs). The pressure equation is established by combining the momentum and mass conservation equations. The implicit calculation of each governing equation is separated into phase- and space-link steps. In the phase-link step, the interfacial momentum and heat transfers are implicitly calculated. Then the solution accounting for the convection and diffusion terms is calculated simultaneously in space. The phase- and space-link steps are repeated for convergence. The numerical scheme is implemented in CUPID, which is a multidimensional two-phase flow analysis code for LWRs, and verified against a set of conceptual two-phase flow problems which include typical thermal hydraulic phenomena in LWRs. Calculations are performed using four numerical schemes, semi-implicit ICE and SMAC schemes, an implicit scheme, and an implicit scheme with increased time step size, and the results are discussed.
机译:提出了一种隐式数值方案,用于求解在轻水核反应堆(LWRS)中的气液两相流分析中广泛应用的双流体模型。通过组合动量和质量保护方程来建立压力方程。每个管理方程的隐式计算分为相位和空间链路步骤。在相 - 链路步骤中,隐式计算界面动量和热传输。然后在空间中同时计算对流和扩散术语的解决方案。相位和空间链路步骤重复收敛。数值方案在丘比特中实现,其是LWRS的多维两相流分析码,并验证了一组概念的两相流量问题,包括LWR中的典型热液压现象。使用四个数值方案,半隐式冰和SMAC方案,隐式方案和具有增加的时间步长的隐式方案进行计算,并且讨论了结果。

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