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Numerical simulation of the transient hydrogen trapping process using an analytical approximation of the McNabb and Foster equation. Part 2: Domain of validity

机译:MCNABB分析近似瞬态氢捕获过程的数值模拟。 第2部分:有效的领域

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In a previous study [1], a resolution scheme called Generalized Oriani39;s Approximation (GOA) was proposed to solve a transient transport and trapping problem in the Abaqus Finite Element software. This proposition was motivated by the convergence of the Finite Element problem linked to the estimation of several functions during the computation (and especially the dudt one). In this study, the GOA is shown to be able to provide an accurate estimation of the trapped concentration in transient trapping processes as soon as the time increment is small enough for two configurations: hydrogen in metals and water in polymers. An estimation of the induced error is given. The GOA approach is illustrated on a simple configuration with various trapping parameters. Last, the ability of Abaqus to converge while modeling a transient trapping and transport problem is analyzed considering several dudt: it is shown especially that its estimation based on the GOA allows the solver to efficiently converge toward the solution. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在先前的研究[1]中,提出了一种称为通用oriani39; s近似(goA)的分辨率方案,以解决ABAQUS有限元软件中的瞬态传输和捕获问题。这种命题是通过链接到计算期间若干函数的有限元问题的有限元问题的融合(尤其是DUDT One)的趋同。在该研究中,果阿一旦时间增量足够小,可以在两种配置中足够小,可以在瞬态捕获过程中提供精确估计瞬态捕获过程中的捕获浓度:在聚合物中金属和水中的氢气。给出了诱导误差的估计。 GOA方法在具有各种捕获参数的简单配置上进行说明。最后,考虑到几个DUDT,分析了ABAQUS在建模时收敛的能力:特别地说明了基于GOA的估计,允许求解器有效地融合到解决方案的估计。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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