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Impact of modeling architectural detailing for predicting unreinforced masonry response to subsidence

机译:对建筑细节建模的影响对预测未加固砌体对沉降的预测的影响

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摘要

In tunneling, attempts at using remote sensing as a less expensive alternative to traditional surveying for creating computational models of masonry buildings for better damage prediction raise fundamental questions as to the necessary data quality, as there is a direct relationship between quality and acquisition costs. To understand the implications of such choices, 16 finite element models were devised to investigate the impact of window shape, brick orientation, window size, and the presence of lintels. Responses were considered with respect to gravity loads and excavation-induced subsidence. Permutations of three common window shapes were modeled as representative of Georgian brick structures. The base model was benchmarked against large-scale experimental work using non-linear analysis. This study proves that a few simple assumptions can be used in reducing the complexity of building facades for computation without generating major errors in structural response prediction.
机译:在隧道技术中,试图将遥感技术作为传统测量方法的一种较便宜的替代方法来创建砌体建筑的计算模型,以更好地进行破坏预测,这引发了有关必要数据质量的根本问题,因为质量和购置成本之间存在直接关系。为了理解这种选择的含义,设计了16个有限元模型来研究窗户形状,砖块方向,窗户尺寸和门的存在的影响。考虑了有关重力载荷和开挖引起的沉降的响应。对三种常见的窗口形状的排列进行了建模,以代表格鲁吉亚砖结构。基本模型使用非线性分析针对大规模实验工作进行了基准测试。这项研究证明,可以使用一些简单的假设来减少建筑立面的计算复杂性,而不会在结构响应预测中产生重大错误。

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