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Finite element and analytical stochastic models for assessment of underground reinforced concrete water storage facilities and results of their application

机译:地下钢筋混凝土储水设施评估的有限元和随机分析模型及其应用结果

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摘要

Typical underground water storage facilities consist of reinforced concrete tanks and pipes. Although methods of their analysis are well developed, the use of these methods does not always give unambiguous results, as presented in the paper. An example of underground tank is considered in which cylindrical roof collapsed during construction under soil and excavator loads. The causes of failure are investigated with deterministic and stochastic models. In the first step nonlinear finite element analysis including soil-structure interaction was performed to examine overall level of the structural safety, which was found satisfactory thus not explaining the collapse. In the second step an analytical stochastic model was developed and analysed with emphasis to sensitivity. The last analysis explained the collapse as a complex of unfavourable states for considered variables and the failure was recognised as a mixed construction-geotechnical-structural problem. The key role played backfill properties and its depth.
机译:典型的地下水存储设施包括钢筋混凝土储罐和管道。尽管它们的分析方法已经很好地开发了,但如本文所述,使用这些方法并不总是能给出明确的结果。考虑地下储罐的示例,其中在施工过程中,在土壤和挖掘机的负载下,圆柱形屋顶坍塌了。使用确定性和随机模型研究失败的原因。在第一步中,进行了包括土-结构相互作用的非线性有限元分析,以检查结构安全性的总体水平,发现该结构令人满意,因此无法解释坍塌。在第二步中,建立了分析型随机模型并重点进行了敏感性分析。最后的分析将坍塌解释为考虑变量的不利状态的复杂体,而破坏则被认为是混合的建筑-岩土-结构问题。关键作用是回填属性及其深度。

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