Benchmarks for Infinite Medium, Time Dependent Transport Problems with Isotropic Scattering

IF 0.7 4区 工程技术 Q3 MATHEMATICS, APPLIED
W. Bennett, R. McClarren
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引用次数: 3

Abstract

Abstract The widely used AZURV1 transport benchmarks package provides a suite of solutions to isotropic scattering transport problems with a variety of initial conditions. Most of these solutions have an initial condition that is a Dirac delta function in space; as a result these benchmarks are challenging problems to use for verification tests in computer codes. Nevertheless, approximating a delta function in simulation often leads to low orders of convergence and the inability to test the convergence of high-order numerical methods. While there are examples in the literature of integration of these solutions as Green’s functions for the transport operator to produce results for more easily simulated sources, they are limited in scope and briefly explained. For a sampling of initial conditions and sources, we present solutions for the uncollided and collided scalar flux to facilitate accurate testing of source treatment in numerical solvers. The solution for the uncollided scalar flux is found in analytic form for some sources. Since integrating the Green’s functions is often nontrivial, discussion of integration difficulty and workarounds to find convergent integrals is included. Additionally, our uncollided solutions can be used as source terms in verification studies, in a similar way to the method of manufactured solutions.
无限介质的基准,具有各向同性散射的时间相关输运问题
广泛使用的AZURV1传输基准测试包为各种初始条件下的各向同性散射传输问题提供了一套解决方案。大多数解的初始条件都是空间中的狄拉克函数;因此,这些基准是在计算机代码中用于验证测试的具有挑战性的问题。然而,在模拟中近似delta函数往往导致低阶收敛和无法测试高阶数值方法的收敛性。虽然在文献中有一些例子,将这些解决方案集成为运输算子的格林函数,以产生更容易模拟的源的结果,但它们的范围有限,并简要解释。对于初始条件和源的采样,我们给出了未碰撞和碰撞标量通量的解,以便于在数值求解中精确测试源处理。对于某些源,给出了非碰撞标量通量的解析解。由于格林函数的积分通常是非平凡的,因此讨论了积分的难度和寻找收敛积分的变通方法。此外,我们的未碰撞解可以作为验证研究中的源项,以类似于制造解的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Computational and Theoretical Transport
Journal of Computational and Theoretical Transport Mathematics-Mathematical Physics
CiteScore
1.30
自引率
0.00%
发文量
15
期刊介绍: Emphasizing computational methods and theoretical studies, this unique journal invites articles on neutral-particle transport, kinetic theory, radiative transfer, charged-particle transport, and macroscopic transport phenomena. In addition, the journal encourages articles on uncertainty quantification related to these fields. Offering a range of information and research methodologies unavailable elsewhere, Journal of Computational and Theoretical Transport brings together closely related mathematical concepts and techniques to encourage a productive, interdisciplinary exchange of ideas.
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