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Evaluation of the vibration response of third generation nuclear power plants with isolation technology under large commercial aircraft impact

机译:大型商用飞机撞击下采用隔离技术的第三代核电站振动响应评估

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With the development of nuclear power technology, third-generation nuclear power plants (NPPs) are being built in many places. Examples include the American passive AP1000 NPP, the French EPR NPP, and China's Hualong One NPP. These will become the main reactor type for future NPP construction. Base isolation is employed as the aseismic technology in NPPs, and its design standard has been standardized according to ASCE 4-16 and other related codes. Since the 9/11 terrorist incident, large commercial aircraft impact (AI), as a beyond design-basis event, has attracted increasing attention in nuclear research. In the case of a third-generation NPP with isolation technology, it is necessary to evaluate its safety and integrity against AI. In this study, the dynamic response of a base-isolated third-generation NPP subjected to impact by a large commercial aircraft, the Airbus A340-300, is investigated. The most typical design for a third-generation NPP is to build many buildings on the same base-mat. The presence of a flexible isolation layer renders the dynamic behavior of a base-isolated NPP different from that of a non-isolated NPP under AI loads. Five key factors, including the horizontal stiffness of isolation bearings, horizontal damping of isolation bearings, total weight and weight distribution of the NPP, and AI force and direction affect the vibration characteristics of NPPs. The horizontal stiffness of isolation bearings affects the constraint effect of the foundation on the superstructure, while the damping of isolation bearings affects the dissipation of impact energy. Meanwhile, the total weight and weight distribution of the NPP affect the vibration response of different regions, and the impact force affects the vibration intensity of the NPP.
机译:随着核电技术的发展,许多地方都在建造第三代核电站。例如,美国的被动式AP1000核电厂,法国的EPR式核电厂和中国的华龙一号核电厂。这些将成为未来核电厂建设的主要反应堆类型。在NPP中采用基础隔离作为抗震技术,其设计标准已根据ASCE 4-16和其他相关规范进行了标准化。自9/11恐怖事件以来,大型商业飞机撞击(AI)作为一项超出设计基础的事件,已在核研究中引起了越来越多的关注。对于具有隔离技术的第三代NPP,有必要评估其针对AI的安全性和完整性。在这项研究中,研究了被大型商用飞机空中客车A340-300撞击的,基础隔离的第三代NPP的动力响应。第三代核电厂的最典型设计是在同一座垫子上建造许多建筑物。柔性隔离层的存在使得在AI负载下,基本隔离NPP的动态行为不同于非隔离NPP的动态行为。隔离轴承的水平刚度,隔离轴承的水平阻尼,核电厂的总重量和重量分布以及AI力和方向等五个关键因素会影响核电厂的振动特性。隔震支座的水平刚度影响基础对上部结构的约束作用,而隔震支座的阻尼影响冲击能量的耗散。同时,核电厂的总重量和重量分布会影响不同区域的振动响应,而冲击力会影响核电厂的振动强度。

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