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Verification and validation of the HTGR systems CFD code Flownex

机译:HTGR系统CFD代码Flownex的验证和确认

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Regulatory requirements prescribe extensive verification and validation (V&V) of computer codes that are used in the design and analysis of accident conditions in nuclear plants. Flownex is a dynamic systems CFD code used as the primary thermal-fluid simulation code by the Pebble Bed Modular Reactor Company (PBMR). Stringent quality assurance processes have been implemented to ensure that the code conforms to the set standards. These processes include the comparison of Flownex with analytical results as well as with experimental data. The results of this process are summarized in this paper. Analytical solutions are used to verify Flownex's element models so as to ensure that the basic theory is correctly implemented in the computer code. As part of the analytical V&V effort various well-defined problems are solved using numerical methods implemented in independent computer codes. Comparison with experimental and plant data is a very important feature of the V&V program to validate that the chosen theory is fit for purpose. For this, validation data from the pebble bed micro model (PBMM) is used. In addition to the PBMM experimental data Flownex is compared to a number of small thermal-fluid experiments in which certain specific component phenomena is validated. These experiments were developed in collaboration with North-West University (previously Potchefstroom University).
机译:监管要求规定了用于设计和分析核电厂事故情况的计算机代码的广泛验证和确认(V&V)。 Flownex是一种动态系统CFD代码,被Pebble Bed Modular Reactor Company(PBMR)用作主要的热流体模拟代码。已实施严格的质量保证流程,以确保代码符合设定的标准。这些过程包括将Flownex与分析结果以及实验数据进行比较。本文总结了该过程的结果。分析解决方案用于验证Flownex的元素模型,以确保在计算机代码中正确实施了基本理论。作为分析性V&V工作的一部分,使用独立计算机代码中实现的数值方法可以解决各种定义明确的问题。 V&V程序的一项非常重要的功能是与实验数据和工厂数据进行比较,以验证所选理论是否适合目标。为此,使用了来自卵石床微观模型(PBMM)的验证数据。除了PBMM实验数据外,还将Flownex与许多小型热流体实验进行比较,在其中验证了某些特定的组分现象。这些实验是与西北大学(以前的波切夫斯特鲁姆大学)合作开发的。

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