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Study on containment pressure response with passive containment cooling system performance under design basis accident

机译:设计基准事故下具有被动安全壳冷却系统性能的安全壳压力响应研究

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The passive containment cooling system which utilizes natural phenomena to remove the energy released from reactor will prevent steel containment from overpressure during the postulated accident and provide long-term cooling to decrease the pressure and temperature of containment. The peak pressure in containment under the design basis accidents is important to the design and evaluation on the passive containment cooling system. In this paper, a dedicated code PCCSAP-3D for the evaluation on the performance of the passive containment cooling system is used to analyze the thermal-hydraulic transients in the containment of the advanced pressurized water reactor AP1000. Some factors are compared to study their e on the peak pressure of containment under the typical loss-of-coolant and main steam-line break accident. The results show that the amount of released coolant, the free volume and shell thickness of containment are dominant for containment pressure during the postulated accident, in comparison with the initial conditions. And the containment pressure response is more sensitive to internal initial conditions than to ambient conditions. The peak pressure under the postulated accidents is mainly contributed from rapid coolant release and it is not sensitive to the containment cooling performed by the passive containment cooling system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:利用自然现象去除反应堆释放的能量的被动式安全壳冷却系统将防止钢壳在假定的事故期间因超压而产生,并提供长期冷却以降低安全壳的压力和温度。设计基准事故下安全壳的峰值压力对于被动安全壳冷却系统的设计和评估很重要。在本文中,用于评估被动安全壳冷却系统性能的专用代码PCCSAP-3D用于分析先进压水堆AP1000的安全壳中的热工水力瞬变。比较了一些因素,以研究在典型的冷却液损失和主蒸汽管道破裂事故下安全壳的峰值压力。结果表明,与初始条件相比,在假定的事故期间,冷却剂的释放量,安全壳的自由体积和壳厚是安全壳压力的主要因素。安全壳压力响应对内部初始条件比对环境条件更敏感。假定事故下的峰值压力主要是由于冷却液的快速释放造成的,并且对被动安全壳冷却系统执行的安全壳冷却不敏感。 (C)2016 Elsevier Ltd.保留所有权利。

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