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Analysis of Cylindrical Granular Material Silos under Seismic Excitation

机译:地震作用下圆柱状颗粒料仓的分析

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Silos generally work as storage structures between supply and demand for various goods, and their structural safety has long been of interest to the civil engineering profession. This is especially true for dynamically loaded silos, e.g., in case of seismic excitation. Particularly thin-walled cylindrical silos are highly vulnerable to seismic induced pressures, which can cause critical buckling phenomena of the silo shell. The analysis of silos can be carried out in two different ways. In the first, the seismic loading is modeled through statically equivalent loads acting on the shell. Alternatively, a time history analysis might be carried out, in which nonlinear phenomena due to the filling as well as the interaction between the shell and the granular material are taken into account. The paper presents a comparison of these approaches. The model used for the nonlinear time history analysis considers the granular material by means of the intergranular strain approach for hypoplasticity theory. The interaction effects between the granular material and the shell is represented by contact elements. Additionally, soil?¢????structure interaction effects are taken into account.
机译:筒仓通常充当各种商品供需之间的存储结构,其结构安全性一直是土木工程专业关注的焦点。对于动态加载的筒仓,例如在地震激励的情况下,尤其如此。特别是薄壁圆柱形筒仓非常容易受到地震感应的压力,这可能会导致筒仓壳体发生严重屈曲现象。筒仓的分析可以两种不同的方式进行。首先,通过作用在壳体上的静态等效载荷对地震载荷进行建模。可替代地,可以进行时程分析,其中考虑由于填充以及壳与粒状材料之间的相互作用引起的非线性现象。本文介绍了这些方法的比较。非线性时程分析所使用的模型通过用于次塑性理论的晶间应变方法考虑了颗粒材料。粒状材料和壳之间的相互作用效果由接触元素表示。另外,考虑了土壤与结构的相互作用。

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