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MELCOR CODE VALIDATION ON HE-FUS3 LOOP

机译:HE-FUS3回路上的MELCOR代码验证

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Since the last decade, Tractebel Engineering has been involved in several consecutive projects in the field of High Temperature Gas Reactor (HTGR). The objectives of the present project called RAPHAEL is to provide R&D results in order to consolidate available data on generic V/HTR technologies and to develop innovative solutions to further contribute to the improvement of HTR performances. One of the objectives of the RAPHAEL Sub-project Safety is to qualify tools for performing safety analyses and supporting the safety approach and demonstration. One of the work packages concerns the validation of the existing thermal-hydraulic system codes capabilities needed to perform transient analysis in V/HTR. This validation is carried out by benchmarking against experimental data and by comparing simulation results given by several codes.The current paper presents the work performed at Tractebel Engineering on the simulation of the HE-FUS3 experimental loop - ENEA facility, Brasimone (Italy) - with the MELCOR v. 1.8.6 code. The HE-FUS3 loop contains a wide range of components characteristic of a V/HTR like compressor, pipes, diffusers, valves, heaters and heat exchangers. Even if the loop characteristics/configuration is not prototypical of a V/HTR design, the loop is useful to assess the objectives identified by the Project, i.e. helium operating fluid, design pressure and temperature set respectively at 10.5 MPa and 530 °C. The experimental data of the HE-FUS3 loop made available for the benchmark are a set of steady state tests for the thermal-hydraulic characterization of the loop and two transient tests - Loss Of Flow Accidents (LOFA). Moreover, to assess the characteristics of the compressor, data have also been provided from a compressor test campaign. From the code-to-experiment comparison the ability of MELCOR v.1.8.6 to reproduce the experimental results is judged.
机译:自上个十年以来,Tractebel Engineering参与了高温气体反应器(HTGR)领域的多个连续项目。这个名为RAPHAEL的项目的目的是提供R&D结果,以巩固有关通用V / HTR技术的可用数据,并开发创新的解决方案,以进一步促进HTR性能的提高。 RAPHAEL子项目安全性的目标之一是使执行安全分析和支持安全方法与论证的工具合格。工作包之一涉及验证在V / HTR中执行瞬态分析所需的现有热工液压系统代码功能。通过对照实验数据进行基准测试,并比较几种代码给出的模拟结果,可以进行此验证。 本白皮书介绍了Tractebel Engineering在用MELCOR v.1.8.6代码对HE-FUS3实验回路(ENEA设施,意大利Brasimone)进行的工作。 HE-FUS3回路包含V / HTR的众多组件特性,例如压缩机,管道,扩散器,阀,加热器和热交换器。即使回路特性/配置不是V / HTR设计的原型,回路也可用于评估项目确定的目标,即氦工作流体,设计压力和温度分别设置为10.5 MPa和530°C。可用于基准测试的HE-FUS3回路的实验数据是一组用于回路热工液压特性的稳态测试和两个瞬态测试-流量损失事故(LOFA)。此外,为了评估压缩机的特性,还从压缩机测试活动中提供了数据。从代码到实验的比较,可以判断MELCOR v.1.8.6再现实验结果的能力。

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