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Reliability analysis of flood embankments taking into account a stochastic distribution of hydraulic loading

机译:考虑水力荷载随机分布的防洪堤可靠性分析

摘要

Flooding is a worldwide phenomenon. Over the last few decades the world has experienced a rising number of devastating flood events and the trend in such natural disasters is increasing. Furthermore, escalations in both the probability and magnitude of flood hazards are expected as a result of climate change. Flood defence embankments are one of the major flood defence measures and reliability assessment for these structures is therefore a very important process. Routine hydro-mechanical models for the stability of flood embankments are based on the assumptions of steady-state through-flow and zero pore-pressures above the phreatic surface, i.e. negative capillary pressure (suction) is ignored. Despite common belief, these assumptions may not always lead to conservative design. In addition, hydraulic loading is stochastic in nature and flood embankment stability should therefore be assessed in probabilistic terms. This cannot be accommodated by steady-state flow models. The paper presents an approach for reliability analysis of flood embankment taking into account the transient water through-flow. The factor of safety of the embankment is assessed in probabilistic terms based on a stochastic distribution for the hydraulic loading. Two different probabilistic approaches are tested to compare and validate the results.
机译:洪水是一种全球现象。在过去的几十年中,世界经历了越来越多的毁灭性洪水事件,此类自然灾害的趋势正在增加。此外,由于气候变化,预计洪水灾害的可能性和程度都会增加。防洪堤是主要的防洪措施之一,因此对这些建筑物的可靠性评估是一个非常重要的过程。用于洪水路堤稳定性的常规液压力学模型基于稳态通流和潜水面以上零孔隙压力的假设,即负毛细压力(吸力)被忽略。尽管有共同的信念,但这些假设可能并不总是导致保守的设计。另外,水力负荷本质上是随机的,因此应以概率的方式评估防洪堤的稳定性。稳态流量模型无法解决此问题。本文提出了一种考虑瞬态水流的洪水路堤可靠性分析方法。路堤的安全系数是根据液压载荷的随机分布以概率形式评估的。测试了两种不同的概率方法来比较和验证结果。

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