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Review of multi-physics temporal coupling methods for analysis of nuclear reactors

机译:核反应堆分析的多物理场时间耦合方法综述

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The advanced numerical simulation of a realistic physical system typically involves multi-physics problem. For example, analysis of a LWR core involves the intricate simulation of neutron production and transport, heat transfer throughout the structures of the system and the flowing, possibly two-phase, coolant. Such analysis involves the dynamic coupling of multiple simulation codes, each one devoted to the solving of one of the coupled physics. Multiple temporal coupling methods exist, yet the accuracy of such coupling is generally driven by the least accurate numerical scheme. The goal of this paper is to review in detail the approaches and numerical methods that can be used for the multi-physics temporal coupling, including a comprehensive discussion of the issues associated with the temporal coupling, and define approaches that can be used to perform multi-physics analysis. The paper is not limited to any particular multi-physics process or situation, but is intended to provide a generic description of multi-physics temporal coupling schemes for any development stage of the individual (single-physics) tools and methods. This includes a wide spectrum of situation, where the individual (single-physics) solvers are based on pre-existing computation codes embedded as individual components, or a new development where the temporal coupling can be developed and implemented as a part of code development. The discussed coupling methods are demonstrated in the framework of LWR core analysis. (c) 2015 Elsevier Ltd. All rights reserved.
机译:现实物理系统的高级数值模拟通常涉及多物理场问题。例如,对轻水堆堆芯的分析涉及对中子产生和传输,整个系统结构的传热以及流动的,可能是两相的冷却剂的复杂模拟。这种分析涉及多个仿真代码的动态耦合,每个仿真代码都专门用于解决耦合物理之一。存在多种时间耦合方法,但是这种耦合的精度通常由最不精确的数值方案来驱动。本文的目的是详细审查可用于多物理场时间耦合的方法和数值方法,包括对与时间耦合相关的问题的全面讨论,并定义可用于执行多物理场时间耦合的方法。 -物理分析。本文不限于任何特定的多物理场过程或情况,而是旨在为单个(单物理场)工具和方法的任何开发阶段提供多物理场时间耦合方案的一般描述。这包括广泛的情况,其中单个(单物理学)求解器基于嵌入为单个组件的预先存在的计算代码,或者是新开发,其中时间耦合可以作为代码开发的一部分进行开发和实现。讨论的耦合方法在LWR岩心分析框架中得到证明。 (c)2015 Elsevier Ltd.保留所有权利。

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