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首页> 外文期刊>Shock and vibration >Embankment Seismic Fragility Assessment under the Near-Fault Pulse-like Ground Motions by Applying the Response Surface Method
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Embankment Seismic Fragility Assessment under the Near-Fault Pulse-like Ground Motions by Applying the Response Surface Method

机译:通过施加响应表面法在近故障脉冲样地面运动下的堤防地震脆弱性评估

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摘要

Uncertainties of the ground motions and structural parameters are the main factors that limit the accuracy of embankment seismic fragility assessment. In response to the uncertainties of the ground motions, artificial synthesizing method of the near-fault pulse-like ground motions was proposed, and 15 ground motions with the rupture fault distances ranging from 1 to 15?km were synthesized by taking the Chi-Chi earthquake in Taiwan, China, as an example. The Xi’an-Baoji expressway K1125?+?470 embankment was taken as the research object, and a total of 12 structural parameters were selected as the design variables, namely, the elastic modulus, bulk modulus, shear modulus, density, cohesion force, and internal friction angle of the embankment fill and soil foundation, respectively. In response to the uncertainties of these parameters, 3 principal components with large impacts on the embankment seismic fragility were extracted based on the principal component analysis. Mapping relationships among the principal components and embankment seismic damages were analyzed using the uniform design response surface method, and the seismic fragility assessment was carried out and the fragility curves were plotted. The research results are consistent with the actual embankment seismic damage conditions of the Chi-Chi earthquake, indicating that the proposed method is scientific and reasonable. It also shows that it would obviously overestimate the seismic performance in the embankment seismic fragility assessment without considering the uncertainties of the ground motions and structural parameters.
机译:地面运动和结构参数的不确定性是限制路堤地震脆弱性评估准确性的主要因素。响应于地面运动的不确定性,提出了近端故障脉冲样地面运动的人工合成方法,并通过服用Chi-Chi合成了15个接地运动范围的破裂故障距离为1至15μm中国台湾地震为例。西安宝鸡高速公路K1125?+ 470堤,作为研究对象,选择了12种结构参数作为设计变量,即弹性模量,散装模量,剪切模量,密度,内聚力分别和土壤基础的内部摩擦角分别。响应于这些参数的不确定性,基于主成分分析,提取了对堤防地震脆性影响的3个具有很大影响的主要成分。使用均匀的设计响应表面方法分析主成分和堤防地震损伤之间的映射关系,进行地震脆性评估,绘制脆性曲线。研究结果与Chi-Chi地震的实际路堤地震损伤条件一致,表明该方法是科学合理的。它还表明,在不考虑地面运动和结构参数的不确定性的情况下,显然会高估了路堤地震脆弱性评估中​​的地震性能。

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