AI Article Synopsis

  • Typical underground water storage facilities are usually made of reinforced concrete tanks and pipes, and their analysis methods can lead to unclear results.
  • An example presented shows a cylindrical roof of an underground tank that collapsed during construction, prompting an investigation using both deterministic and stochastic models.
  • The initial finite element analysis determined that the structural safety was acceptable, while the stochastic model later revealed that the collapse was due to a combination of unfavorable conditions, highlighting the significance of backfill properties and depth in the failure.

Article Abstract

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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6319736PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0209916PLOS

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