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A Novel Application of Risk Analysis Methods to Evaluate the Future Viability of Two Large Concrete Stormwater Detention Tanks

机译:风险分析方法的新型应用评价两种大型混凝土雨水拘留箱未来存活率

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Many aspects of geotechnical design, such as the analysis of slopes using slip circles and the evaluation of imposed earth pressure , whether active, passive or at-rest, can be made fairly precisely. These lend them selves to the application of safety factors for use in design. However, problem s involving groundwater flows and seepage often require an understanding of the secur ity of the structure with respect to resistance to soil ero sion. Such evaluations are com plex and necessitate the use of quantitative risk analysis m ethodologies to provide an estim ation of failure probabilities involving groups of experi enced engineers providing subjective judgement through elicitation panel methods. The paper describes the appl ication of the Q uantitative Risk Analysis (QRA) approach using event trees to assess th e piping failure risk around two m assive submerged, underground, concrete storage tanks in the UK. This process highlighted the most significant risks, their potential mitigation and the likelihood o f the risks actually occurring in terms of a "Probability of Failure" within a pa rticular time scale.
机译:岩土设计的许多方面,例如使用滑动圆圈的斜坡分析和施加的地球压力的评估,无论是有效,被动还是处于静止,都可以相当准确地进行。这些将它们借助自行到在设计中使用的安全因子。然而,涉及地下水流量和渗流的问题■通常需要了解结构对土壤ERO Sion的抵抗力的Secur Ity。这些评估是COMPLEX,并且需要使用定量风险分析M个成虫病,以提供涉及通过引发面板方法提供主观判断的经验工程师组的失效概率的估计。本文介绍了Q Uantative风险分析(QRA)方法的应用程序使用事件树,评估英国两国潜水,地下,具体储罐的两米级淹没,地下,混凝土储罐左右的管道故障风险。这一过程强调了最重要的风险,其潜在的缓解和of在PA RTOCULATIOM规模内的“失败概率”方面实际发生的风险。

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