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METHODOLOGY FOR ASSESSING SHOCK EFFECT DUE TO AIRCRAFT IMPACT CONSIDERING THE NONLINEAR OF IMPACT ZONE AND SOIL-STRUCTURE INTERACTION

机译:考虑到非线性冲击区和土壤结构相互作用的飞机影响,评估冲击效果的方法

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Based on the shock damage propagation distances and the median fragility limit of the equipments, the NEI 07-13 employs the shock damage rules for determining the potential for affecting safe shutdown and fuel cooling equipments. However, the NEI 07-13 does not provide more detailed guidance for performing the shock damage assessments, because both the shock damage distances and the methodology for developing the median fragility limit are not provided in NEI 07-13. This paper discussed methodology developed for performing simplified assessments for shock effects considering the material nonlinearity of the impact zone and the soil-structure interaction. Three different models (i.e., linear model, nonlinear mode, and SSI model) were developed to calculate the in-structure shock response. The results of the linear model show the shock response due to aircraft impact would completely propagate from the center of initial impact zone and then along a structure pathway (e.g. wall, floor, basemat) to the in-structure without any energy dissipation. As a result, the in-structure shock response spectra are considerably higher than the spectra associated with the design-basis earthquake in the high frequency range. In order to reduce the shock effects on the in-structure safety-related systems and equipments, the material nonlinearity of the impact zone and the soil-structure interaction were incorporated in the dynamic analysis. The numerical results show that both the material nonlinearity and the soil-structure interaction would obviously absorb the energy of the shock waves, so the in-structure shock response spectra were reduced due to these two factors. Finally, the representative shock response spectra were compared with those used in the seismic margin assessment in order to assess specific equipment survival.
机译:基于冲击损伤传播距离和设备的中值脆弱极限,NEI 07-13采用冲击损伤规则来确定影响安全关闭和燃料冷却设备的可能性。然而,NEI 07-13不提供更详细的执行冲击损伤评估指导,因为在NEI 07-13中没有提供震动损伤距离和用于开发中位脆弱性限制的方法。本文讨论了考虑撞击区的材料非线性和土结构相互作用对对冲击效应进行简化评估开发的方法。开发了三种不同的模型(即线性模型,非线性模式和SSI模型)以计算结构内的冲击响应。线性模型的结果显示由于飞机冲击导致的冲击响应将完全从初始冲击区的中心传播,然后沿着结构途径(例如墙壁,地板,跨越)而没有任何能量耗散的结构。结果,结构内休克响应光谱比高频范围内的设计基地相关的光谱相当高。为了减少对结构内安全相关系统和设备的冲击效果,在动态分析中纳入了冲击区的材料非线性和土壤结构相互作用。数值结果表明,该材料的非线性和土壤结构相互作用都将明显吸收冲击波的能量,使由于这两个因素中,结构冲击响应光谱降低。最后,将代表性休克响应光谱与用于地震保证金评估中使用的那些进行比较,以评估特定的设备存活。

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