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Response of framed buildings to excavation-induced movements

机译:框架建筑物对开挖引起的运动的响应

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This paper presents a study of the influence of frame action on the response of buildings to deformations induced by deep excavations in soft clay. Using the finite element method, a building was modelled as a framed structure adjacent to a multi-propped excavation, firstly as a frame with continuous footings and then as a frame with individual footings. The geometry, location, and structural elements forming the frame models were varied to investigate the response of various frames. Using a structural analysis, parameters representing the stiffness of the frames in reducing deflection ratios and horizontal strains were derived. The influence of the frame action on the building stiffness can be quantified using the results from the finite element models. This makes it possible to estimate building modification factors from the relevant design charts so that induced deflection ratios and horizontal strains, caused by adjacent excavation and tunnelling activities, can be calculated. The approach gives a more realistic estimate of the tensile strains for assessing the potential damage caused to buildings.
机译:本文研究了框架作用对建筑物对软黏土深基坑诱发变形的响应的影响。使用有限元方法,将建筑物建模为与多支撑挖掘相邻的框架结构,首先将其建模为具有连续基础的框架,然后再将其建模为具有单独基础的框架。改变形成框架模型的几何形状,位置和结构元素以研究各种框架的响应。使用结构分析,得出了代表框架刚度的参数,这些刚度在减小挠度比和水平应变的情况下。框架作用对建筑物刚度的影响可以使用有限元模型的结果进行量化。这样就可以从相关的设计图中估算建筑物的改建系数,从而可以计算由相邻的开挖和掘进活动引起的挠度比和水平应变。该方法可以更实际地估计拉伸应变,以评估对建筑物造成的潜在破坏。

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