首页> 外文期刊>International journal of architectural heritage >Numerical Modeling of a Church Nave Wall Subjected to Differential Settlements: Soil-Structure Interaction, Time-Dependence and Sensitivity Analysis
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Numerical Modeling of a Church Nave Wall Subjected to Differential Settlements: Soil-Structure Interaction, Time-Dependence and Sensitivity Analysis

机译:差动定居点教堂殿墙的数值建模:土结构相互作用,时间依赖性和敏感性分析

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摘要

Historic masonry structures are particularly sensitive to differential soil settlements. These settlements may be caused by deformable soil, shallow or inadequate foundation, structural additions in the building and changes in the underground water table due to the large-scale land use change in urban areas. This paper deals with the numerical modeling of a church nave wall subjected to differential settlement caused by a combination of the above factors. The building in question, the church of Saint Jacob in Leuven, has suffered extensive damage caused by centuries-long settlement. A numerical simulation campaign is carried out in order to reproduce and interpret the cracking damage observed in the building. The numerical analyses are based on material and soil property determination, the monitoring of settlement in the church over an extended period of time and soil-structure interaction. A sensitivity study is carried out, focused on the effect of material parameters on the response in terms of settlement magnitude and crack width and extent. Soil consolidation over time is considered through an analytical approach. The numerical results are compared with the in-situ observed damage and with an analytical damage prediction model.
机译:历史砌体结构对差动土壤定居点特别敏感。这些定居点可能是由可变形的土壤,浅或不足的基础,建筑物中的结构添加和地下水位的变化,由于城市地区的大规模土地使用变化。本文涉及由上述因素组合引起的差动沉降的教堂殿墙的数值建模。鲁汶圣雅各教堂有问题的建筑,由几个世纪以来长期造成的造成广泛的损害。进行数值模拟运动,以便在建筑物中繁殖和解释观察到的破裂损伤。数值分析基于材料和土壤性质测定,在延长的时间和土壤结构相互作用中监测教堂的定居点。进行敏感性研究,专注于材料参数对沉降幅度和裂缝宽度和范围的响应的影响。通过分析方法考虑了通过时间的土壤合并。将数值结果与原位观察到的损坏和分析损伤预测模型进行比较。

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