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Relap5/mod3.2 investigation of main loop isolating valves in case of SGTR in VVER440/V230

机译:在VVER440 / V230中使用SGTR时对主回路隔离阀进行Relap5 / mod3.2研究

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During the development of symptom-based emergency operating procedures (SB-EOPs) for VVER440/V230 units at Kozloduy NPP, a number of analyses have been performed using the RELAP5/MOD3.2 computer code (RELAP5/MOD3 Code Manual. User's Guidelines. NU-REG/CR-5535, INEL-95/0174, vols. 1-4, Rev. 1, 1990). Some of them discuss advantages and disadvantages of the use of Main Loop Isolating Valves (GZZs) in case of steam generator tube rupture (SGTR) transient. Use of the GZZs as a part of EOP mitigation strategies for SGTR accidents is analyzed in this paper to identify the behavior of important VVER parameters. A double-ended single-pipe break in SG #6 was chosen as representative. The results of these analyses demonstrate that sometimes GZZs - installed on the hot and cold legs of the primary loops - could provide safety function but sometimes their closing and re-opening could make the situation worse. RELAP5/MOD3.2 computer code has been used to simulate the SGTR transient in VVER 440 NPP model [RELAP5/MOD3 Code Manual. User's Guidelines. NUREG/CR-5535, INEL-95/0174, vol. 5, Rev. 1, 1995]. This model was developed at the Institute for Nuclear Research and Nuclear Energy, Bulgarian Academy of Sciences (INRNE-BAS), Sofia, for analyses of operational occurrences, abnormal events and design bases scenarios. The model provides a significant analytical capability for specialists working in the field of NPP safety.
机译:在为Kozloduy NPP的VVER440 / V230设备开发基于症状的紧急操作程序(SB-EOP)期间,已使用RELAP5 / MOD3.2计算机代码(RELAP5 / MOD3代码手册。用户指南)进行了许多分析。 NU-REG / CR-5535,INEL-95 / 0174,第1-4卷,修订版1,1990年)。他们中的一些人讨论了在蒸汽发生器管破裂(SGTR)瞬变的情况下使用主回路隔离阀(GZZ)的优缺点。本文分析了将GZZ作为SGTR事故EOP缓解策略的一部分,以识别重要VVER参数的行为。 SG#6中的双端单管道中断被选为代表。这些分析的结果表明,有时将GZZ安装在主回路的冷,热管上,可以提供安全功能,但有时关闭和重新打开它们会使情况变得更糟。 RELAP5 / MOD3.2计算机代码已用于模拟VVER 440 NPP模型中的SGTR瞬变[RELAP5 / MOD3代码手册。用户指南。 NUREG / CR-5535,INEL-95 / 0174,卷5,修订版1,1995年]。该模型是由索非亚保加利亚科学院核研究与核能研究所(INRNE-BAS)开发的,用于分析运行事件,异常事件和设计基准方案。该模型为NPP安全领域的专家提供了重要的分析能力。

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