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首页> 外文期刊>International Journal of Advanced Structural Engineering >Response analysis of a nuclear containment structure with nonlinear soil–structure interaction under bi-directional ground motion
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Response analysis of a nuclear containment structure with nonlinear soil–structure interaction under bi-directional ground motion

机译:双向地震动下具有非线性土-结构相互作用的核安全壳结构的响应分析

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Design of critical facilities such as nuclear power plant requires an accurate and precise evaluation of seismic demands, as any failure of these facilities poses immense threat to the community. Design complexity of these structures reinforces the necessity of a robust 3D modeling and analysis of the structure and the soil–foundation interface. Moreover, it is important to consider the multiple components of ground motion during time history analysis for a realistic simulation. Present study is focused on investigating the seismic response of a nuclear containment structure considering nonlinear Winkler-based approach to model the soil–foundation interface using a distributed array of inelastic springs, dashpots and gap elements. It is observed from this study that the natural period of the structure increases about 10?%, whereas the force demands decreases up to 24?% by considering the soil–structure interaction. Further, it is observed that foundation deformations, such as rotation and sliding are affected by the embedment ratio, indicating an increase of up to 56?% in these responses for a reduction of embedment from 0.5 to 0.05× the width of the footing.
机译:关键设施(例如核电厂)的设计需要对地震需求进行准确而准确的评估,因为这些设施的任何故障都会对社区造成巨大威胁。这些结构的设计复杂性增强了对结构和土壤-基础界面进行可靠的3D建模和分析的必要性。此外,对于真实的模拟,在时程分析中考虑地面运动的多个组成部分也很重要。当前的研究集中在研究核安全壳结构的地震响应,考虑了基于非线性Winkler的方法,该方法使用非弹性弹簧,减震器和间隙单元的分布式阵列对土壤-基础界面进行建模。从这项研究中可以看出,结构的自然周期增加了约10%,而考虑到土与结构的相互作用,力的需求下降了24%。此外,还发现嵌入率对基础变形(例如旋转和滑动)产生影响,表明这些响应最多增加56%,从而使嵌入从基础宽度的0.5减小到0.05倍。

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