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首页> 外文期刊>Annals of nuclear energy >Reactor physics study of square and hexagonal lattice cell using MANTRA (Method of Characteristics based Neutron TRAnsport Code) coupled with resonance treated multi energy group cross section library
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Reactor physics study of square and hexagonal lattice cell using MANTRA (Method of Characteristics based Neutron TRAnsport Code) coupled with resonance treated multi energy group cross section library

机译:基于MANTRA(Method of Characteristics based Neutron TRAnsport Code)耦合共振处理的多能群截面库对方形和六方晶格单元进行反应堆物理研究

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Since last few years we have been developing a computer code MANTRA (Method of ChAracteristics based Neutron TRAnsport Code) in phased manner to solve neutron transport equation using Method of Characteristics (MOC) for lattice (i.e. assembly) as well as full core with a flexibility of choosing boundary condition out of vacuum/periodic/reflective options appropriate for the simulation. In literature, we have already reported about the development and performance of the code in triangular mesh network for mainly lattice level calculation with reflective and periodic boundary conditions and to some extent core level calculation with vacuum boundary condition using the processed cross section of benchmark prob-lem. Later, we have explored the advantage of linear source assumption over the commonly used flat source assumption within a mesh in some selected transport calculations (where the variation in neutron flux is substantial) using MANTRA. We have also demonstrated the application of Krylov subspace iter-ation in a matrix-free framework to accelerate the solution of MANTRA for solving complex problems in effective manner. In continuation of the work, MANTRA is now coupled with WIMSD multi energy group cross section library. For the purpose of coupling, a module is developed in the code to process the cross section data and apply resonance treatment to account for the self-shielding effect of the res-onant nuclides. The resonance treatment requires estimation of Dancoff factor, which is carried out using MANTRA for various arrangement of fuel elements. Finally, a number of benchmark problems based on PHWR, BWR, VVER lattices are studied with resonance treated library to compare the performance of MANTRA with other internationally recognized codes like HELIOS, DRAGON, WIMSD, MCNP etc.(c) 2022 Elsevier Ltd. All rights reserved.
机译:自最近几年以来,我们一直在分阶段开发计算机代码MANTRA(基于ChAracteristics的中子TRAnsport代码方法),以使用特征方法(MOC)求解中子输运方程,用于晶格(即组装)以及全核心,可以灵活地选择适合模拟的真空/周期性/反射选项的边界条件。在文献中,我们已经报道了三角网网络中代码的发展和性能,主要是使用反射和周期性边界条件的晶格级计算,以及在一定程度上使用基准概率的处理截面进行真空边界条件的核心级计算。后来,我们使用 MANTRA 探索了线性源假设相对于网格内常用的平面源假设的优势,在一些选定的输运计算中(其中中子通量的变化很大)。我们还演示了 Krylov 子空间迭代在无矩阵框架中的应用,以加速 MANTRA 的求解,以有效的方式解决复杂问题。为了继续这项工作,MANTRA现在与WIMSD多能量群截面库相结合。为了实现耦合,在代码中开发了一个模块来处理截面数据并应用共振处理来解释再生核素的自屏蔽效应。共振处理需要估计Dancoff因子,使用MANTRA对燃料元件的各种布置进行估计。最后,利用共振处理库研究了基于PHWR、BWR、VVER晶格的一系列基准问题,将MANTRA与HELIOS、DRAGON、WIMSD、MCNP等其他国际公认的代码的性能进行了比较。保留所有权利。

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