首页> 外文会议>International conference on nuclear engineering >EXTENSION AND APPLICATION OF THE COUPLED 1D-3D THERMAL-HYDRAULIC CODE ATHLET-ANSYS CFX FOR THE SIMULATION OF LIQUID METAL COOLANT FLOWS IN ADVANCED REACTOR CONCEPTS
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EXTENSION AND APPLICATION OF THE COUPLED 1D-3D THERMAL-HYDRAULIC CODE ATHLET-ANSYS CFX FOR THE SIMULATION OF LIQUID METAL COOLANT FLOWS IN ADVANCED REACTOR CONCEPTS

机译:耦合的1D-3D热液压代码Athlet-Ansys CFX的扩展和应用,用于仿真液态金属冷却剂流动中的仿真概念

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The thermal-hydraulic (TH) system code ATHLET is developed by the Gesellschaft fur Anlagen- und Reaktorsicherheit (GRS) mbH in the last decades for the analysis of the whole spectrum of design basis and beyond design basis accidents for PWRs and BWRs. Recently, ATHLET was coupled with the commercial 3D computational fluid dynamics (CFD) software package ANSYS CFX to improve the system code simulation capabilities for flows with pronounced 3D phenomena such as flow mixing, thermal stratification, etc. The aim of the current development of the coupled code ATHLET - ANSYS CFX is focused on the extension of the physical models of the computer program for the application to innovative reactor concepts. Within the European project THINS (Thermal Hydraulics of Innovative Nuclear Systems), validation activities for coupled thermal-hydraulic codes are carried out. The Swedish experimental facility TALL, operated by KTH, Stockholm is currently being refurbished for thermal-hydraulic experiments with lead-bismuth eutectic alloy (LBE) coolant at natural and forced circulation conditions. Simulations with ATHLET-ANSYS CFX will be carried out and the results will be compared with experimental data. The paper gives an overview on models' extensions and the implementation of different physical properties of liquid metals in ATHLET and ANSYS CFX. First coupled 1D-3D calculations for simplified configurations are presented. Then, preliminary results of the supporting 3D simulations for the design process of the 3D TALL test section are discussed.
机译:在过去的几十年里,通过Gesellschaft Fur Anlagen-und Reaktorsicheit(GRS)MBH开发了热液压(TH)系统代码运动员,用于分析PWR和BWR的整个设计基础及其设计基础事故。最近,运动员与商业3D计算流体动力学(CFD)软件包ANSYS CFX联系,以改善具有发音3D现象的流量的系统代码仿真能力,例如流动混合,热分层等。目前的发展的目的耦合代码运动员 - ANSYS CFX专注于将应用于创新的反应堆概念的计算机程序的物理模型的扩展。在欧洲项目THINS(创新核系统的热水力)中,进行了耦合热液压码的验证活动。斯德哥尔摩经营的瑞典实验设施高,斯德哥尔摩目前正在经过翻新,用于在天然和强制循环条件下具有铅铋共晶合金(LBE)冷却剂的热液压实验。将进行与Athlet-Ansys CFX的模拟,结果将与实验数据进行比较。本文概述了模型的延伸和液体金属的不同物理性质在运动员和ANSYS CFX中的实施。提出了用于简化配置的第一耦合1D-3D计算。然后,讨论了用于3D高测试部分的设计过程的支持3D模拟的初步结果。

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