首页> 外文期刊>Journal of Nuclear Science and Technology >PWR SMALL BREAK LOSS-OF-COOLANT-ACCIDENT EXPERIMENT AT ROSA-V/LSTF WITH A COMBINATION OF SECONDARY-SIDE DEPRESSURIZATION AND GRAVITY-DRIVEN SAFETY INJECTION
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PWR SMALL BREAK LOSS-OF-COOLANT-ACCIDENT EXPERIMENT AT ROSA-V/LSTF WITH A COMBINATION OF SECONDARY-SIDE DEPRESSURIZATION AND GRAVITY-DRIVEN SAFETY INJECTION

机译:结合二次侧降压和重力驱动的安全注射在ROSA-V / LSTF上进行PWR小破损冷却液事故实验

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摘要

Investigation of thermal-hydraulic phenomena under natural circulation conditions at low pressures is important for development of a next-generation PWR relying on a secondary depressurization system (SDS) and gravity-driven safety injection system (GDIS) for long-term core cooling. Such phenomena have not been sufficiently investigated so far since they do not have significant importance in the safety analysis for the conventional PWRs. A loss-of-coolant accident test was conducted at the ROSA-V/LSTF, a large scale PWR simulator, using the SDS, GDIS and a flashing-driven safety injection system (FDIS) which is a newly proposed safety system in this study. The FDIS, unlike the conventional accumulator injection system, does not have a potential to bring noncondensable gas into the primary system and thus is advantageous for those reactor designs which rely on the SDS. From analyses of the test results, the effectiveness of the combined use of the SDS and GDIS on the long-term core cooling was confirmed, important thermal-hydraulic phenomena and characteristics of the FDIS were clarified, and the problems of the RELAP5/MOD3 code to predict low pressure behavior were identified. [References: 17]
机译:低压自然循环条件下热工现象的研究对于依靠二次降压系统(SDS)和重力驱动安全注入系统(GDIS)进行长期堆芯冷却的下一代压水堆的开发很重要。迄今为止,尚未对此类现象进行充分研究,因为它们在常规PWR的安全性分析中不具有重要意义。在ROSA-V / LSTF,大型压水堆模拟器上使用SDS,GDIS和闪动驱动的安全注入系统(FDIS)进行了冷却水失误测试,这是本研究中新提出的安全系统。与传统的蓄能器喷射系统不同,FDIS没有将不可冷凝气体带入主系统的潜力,因此对于那些依赖SDS的反应堆设计是有利的。通过对测试结果的分析,确认了SDS和GDIS结合使用对长期堆芯冷却的有效性,明确了重要的热工现象和FDIS的特性,并提出了RELAP5 / MOD3代码的问题确定了预测低压行为的方法。 [参考:17]

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