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The Tailored CFD Package ‘containmentFOAM’ for Analysis of Containment Atmosphere Mixing, H2/CO Mitigation and Aerosol Transport

机译:用于分析遏制气氛混合,H2 / Co缓解和气溶胶运输的定制CFD封装'ContainmentFoam'

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摘要

The severe reactor accident at Fukushima Daiichi Nuclear Power Plant (2011) has confirmed the need to understand the flow and transport processes of steam and combustible gases inside the containment and connected buildings. Over several years, Computational Fluid Dynamics (CFD) models, mostly based on proprietary solvers, have been developed to provide highly resolved insights; supporting the assessment of effectiveness of safety measures and possible combustion loads challenging the containment integrity. This paper summarizes the design and implementation of containmentFOAM, a tailored solver and model library based on OpenFOAM®. It is developed in support of Research & Development related to containment flows, mixing processes, pressurization, and assessment of passive safety systems. Based on preliminary separate-effect verification and validation results, an application oriented integral validation case is presented on the basis of an experiment on gas mixing and H2 mitigation by means of passive auto-catalytic recombiners in the THAI facility (Becker Technologies, Eschborn, Germany). The simulation results compare well with the experimental data and demonstrate the general applicability of containmentFOAM for technical scale analysis. Concluding the paper, the strategy for dissemination of the code and measures implemented to minimize potential user errors are outlined.
机译:Fukusima Daiichi核电站(2011)的严重反应堆事故已确认需要了解蒸汽和连接建筑物内的蒸汽和可燃气体的流量和运输过程。多年来,已经开发出计算流体动力学(CFD)模型,主要是基于专有的求解器,以提供高度解决的见解;支持评估安全措施的有效性和可能的​​燃烧载荷挑战遏制完整性。本文总结了基于OpenFoam®的ContainmentFoam,定制求解器和模型库的设计和实现。它是通过与遏制流动,混合过程,加压和被动安全系统的评估相关的研发而开发的。基于初步的单独效应验证和验证结果,基于泰国设施中的被动自动催化重组器(Becker Technologies,德国埃斯克(德国)通过被动自动催化重组的实验,提出了一种面向应用的整体验证案例。 )。仿真结果与实验数据相比,并证明了遏制FOAM用于技术规模分析的一般适用性。结论本文,概述了传播守则和措施来最大限度地减少潜在用户错误的策略。

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