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Evaluating random set technique for reliability analysis of deep urban excavation using Monte Carlo simulation

机译:基于蒙特卡洛模拟的评估随机集技术用于城市深层开挖的可靠性分析

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Over the last few years, the importance of non-deterministic techniques in Geotechnical engineering is highlighted in literature. Random set (RS) theory is recently being utilized for reliability analysis of geotechnical problems, however, its application in deep urban excavation is not yet investigated for a real case study. Hence, in this paper, an attempt is made to investigate the feasibility of the RS method in determining the reliability of deep excavations. For this reason, a 27-meter-deep urban excavation in Tehran, Iran is considered as a case study. The excavation is numerically modelled. Subsequently the reliability analysis is performed. Findings indicate that the probability of collapse of excavation is as low as 10(-7) which suggests that the project is safe against collapse. The aforementioned conclusion is confirmed when RS results were compared with site observation. Additionally, RS results were evaluated using Monte Carlo (MC) technique. Although further studies for more real case studies are recommended, good agreement between the results of MC and RS methods suggests the feasibility of RS technique for estimating the reliability of deep urban excavations.
机译:在过去的几年中,文献中强调了非确定性技术在岩土工程中的重要性。随机集(RS)理论最近被用于岩土工程问题的可靠性分析,但是,尚未在实际案例中研究它在城市深层开挖中的应用。因此,本文尝试研究RS方法在确定深基坑可靠度中的可行性。因此,在伊朗德黑兰的27米深的城市发掘被视为案例研究。开挖是数值模拟的。随后进行可靠性分析。研究结果表明,开挖倒塌的可能性低至10(-7),这表明该项目可以防止倒塌。当将RS结果与现场观察进行比较时,上述结论得到了证实。此外,使用蒙特卡洛(MC)技术评估RS结果。尽管建议对更真实的案例进行进一步研究,但MC和RS方法的结果之间的良好一致性表明RS技术可用于评估城市深层挖掘的可靠性。

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