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Performance-based flood safety-checking for non-engineered masonry structures

机译:非工程砌体结构基于性能的洪水安全检查

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Demand and Capacity Factor Design (DCFD) is a probability-based safety-checking format for performance-based seismic design and assessment of structures. Inspired from the original DCFD formulation for seismic excitation, this work proposes a similar performance-based safety-checking format for flooding, adopting the flood height as the intensity measure. The proposed DCFD formulation implements the fragility/hazard parameters for flooding. The structural fragility is evaluated by adopting an efficient and simulation-based method yielding the so-called "robust" fragility curve and an associated plus/minus one-standard deviation interval. The structural performance is measured by the (critical) demand to capacity ratio for the weakest element of the weakest wall within the structure, subjected to a combination of hydro-static, hydro-dynamic and accidental debris impact loads. Analogous to the incremental dynamic analysis method proposed for seismic demand assessment, an incremental flood height analysis is used to monitor the structural performance as a function of increasing water height. For each structural modelling configuration, generated based on the characterization of uncertainties in loading and material mechanical properties, the incremental flood height analysis is employed in order to calculate the critical water height corresponding to a demand to capacity ratio of unity. The application of the proposed methodology is demonstrated for both flood fragility/risk assessment and comparative screening of various viable flood mitigation strategies for a non-engineered building made of cement bricks in Dar Es Salaam, Africa. (C) 2015 Elsevier Ltd. All rights reserved.
机译:需求和容量因数设计(DCFD)是一种基于概率的安全检查格式,用于基于性能的抗震设计和结构评估。从最初的DCFD地震激励公式的启发,这项工作提出了一种类似的基于性能的洪水安全检查格式,采用洪水高度作为强度度量。提议的DCFD公式实现了洪水的脆弱性/危险参数。通过采用一种有效的基于仿真的方法来评估结构的脆性,得出所谓的“稳健”的脆性曲线以及相关的正负一标准偏差区间。结构性能由结构内最薄弱的墙体中最薄弱的元素的(临界)需求与容量之比来衡量,要承受静水压力,水动力和意外碎屑冲击载荷的共同作用。与提议用于地震需求评估的增量动力分析方法类似,增量洪水高度分析用于监视结构性能随​​水位升高的变化。对于基于载荷和材料力学性能的不确定性特征而生成的每种结构建模配置,采用增量洪水高度分析以计算与单位需求容量比相对应的临界水位。在非洲达累斯萨拉姆的非工程用水泥砖建造的建筑物中,证明了所提出方法的应用可用于洪水脆弱性/风险评估以及比较筛选各种可行的缓解洪水策略。 (C)2015 Elsevier Ltd.保留所有权利。

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