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Innovative seismic resistant structure of shield building with base isolation and tuned-mass-damping for AP1000 nuclear power plants

机译:AP1000核电站具有基础隔离和调谐质量阻尼的盾构建筑创新抗震结构

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Purpose Seismic isolation, as an effective risk mitigation strategy of building/bridge structures, is incorporated into AP1000 nuclear power plants (NPPs) to alleviate the seismic damage that may occur to traditional structures of NPPs during their service. This is to promote the passive safety concept in the structural design of AP1000 NPPs against earthquakes. Design/methodology/approach In conjunction with seismic isolation, tuned-mass-damping (TMD) is integrated into the seismic resistance system of AP1000 NPPs to satisfy the multi-functional purposes. The proposed base-isolation-tuned-mass-damper (BIS-TMD) is studied by comparing the seismic performance of NPPs with four different design configurations (i.e. without BIS, BIS, BIS-TMD and TMD) with the design parameters of the TMD subsystem optimized. Findings Such a new seismic protection system (BIS-TMD) is proved to be promising because the advantages of BIS and TMD can be fully used. The benefits of the new structure include effective energy dissipation (i.e. wide vibration absorption band and a stable damping effect), which results in the high performance of NPPs subject to earthquakes with various intensity levels and spectra features. Originality/value Parametric studies are performed to demonstrate the seismic robustness (e.g. consistent performance against the changing mass of the water in the gravity liquid tank and mechanical properties) which further ensures that seismic safety requirements of NPPs can be satisfied through the use of BIS-TMD.
机译:目的地震隔离是一种有效的建筑/桥梁结构风险缓解策略,已被纳入AP1000核电厂(NPP)中,以减轻传统NPP服役期间可能遭受的地震破坏。这是为了在AP1000核电站的抗震结构设计中推广被动安全概念。设计/方法/方法与地震隔离相结合,将调谐质量阻尼(TMD)集成到AP1000核电厂的抗震系统中,以满足多功能目的。通过比较具有四种不同设计配置(即不带BIS,BIS,BIS-TMD和TMD)的NPP的抗震性能与TMD的设计参数,研究了拟议的基础隔离调谐质量阻尼器(BIS-TMD)子系统已优化。研究结果这种新的地震保护系统(BIS-TMD)被证明是有前途的,因为BIS和TMD的优点可以得到充分利用。新结构的好处包括有效的能量消散(即宽的振动吸收带和稳定的阻尼效果),这使得NPP在遭受不同强度和频谱特征的地震时具有高性能。进行了独创性/价值参数研究,以证明其抗震性(例如,针对重力液体罐中水量变化和机械性能的稳定性能),这进一步确保了通过使用BIS可以满足NPP的抗震安全性要求- TMD。

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