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Vulnerability assessment of AP1000 NPP under mainshock-aftershock sequences

机译:主轴余震序列下AP1000 NPP的漏洞评估

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摘要

Researches explicitly indicate that the seismic events, consisting of the several shock waves (the first followed by the aftershock or train) may result in cumulative damage even if the intensity is not strong. This manuscript presents the vulnerability assessment formulation to estimate the influence of aftershocks on the damage of the nuclear power plant (NPP). In the formulation, the engineering demand (ED) parameter is derived. Four categories of performance levels (PL), three limit states (LS) and the relative intensity measure (Delta IM) are defined to calculate the fragility of the AP1000 NPP under 30 groups of seismic sequences. The effect of aftershock and mainshock-aftershock ratio Delta VSa on the vulnerability of the structure are quantitatively analyzed. The observed results indicated that the aftershock can cause additional cumulative damage to the NPP. The fragility increases by 10-40% for different damage levels with an increase of Delta VSa from 0.5 to 1.0. The fragility framework can thus be used to assess the vulnerability of NPP under mainshock-aftershock sequences.
机译:研究明确地表明,由几个冲击波(首先是余震或火车)组成的地震事件可能导致累积损坏,即使强度不强。该稿件介绍了脆弱性评估制定,以估算余震对核电站损坏的影响(NPP)的影响。在制定中,导出工程需求(ED)参数。定义了四类性能水平(PL),三个限制状态(LS)和相对强度测量(Delta IM)以计算30个地震序列下的AP1000 NPP的脆性。余震和主轴 - 余震比率ΔVsa对结构脆弱性的影响是定量分析的。所观察到的结果表明,余震会对NPP造成额外的累积损伤。不同损伤水平的脆性增加了10-40%,增加了ΔVsa的0.5至1.0。因此,脆弱框架可用于评估Mainshock-ershock序列下NPP的脆弱性。

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