Subsidence of Existing Buildings from the Impact of New Construction

Y. Vynnykov, M. Kharchenko, D. Yermolenko, M. Akopian
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Abstract

The article describes the methodology and results of geodetic observations of additional subsidence of two residential buildings with strip foundations on moist loess soil. Next to them, a pit was dug for the new building, which was deeper than the level of the soles of these foundations. The authors proved that of arranging the pit fence ensured the fulfillment of regulatory requirements for not exceeding the maximum allowable values of foundations of existing buildings by additional subsidence. The technology provided for the construction of a pit enclosure with sheet piling (I-beam No. 30) with a step of 1 m, with timber lagging between them. At the same time, the phasing of soil extraction in the initial stages under the protection of a soil berm was maintained. Then they installed the capping beam, struts, rakers and gradually raised the floor and outer wall of the parking lot of the new building. Sufficient convergence of the simulation results in the plane condition using the finite element method and field studies was determined. An elastic-plastic soil model of the "basement - foundations of an existing building - pit enclosure" system was used for modeling.
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新建筑影响下现有建筑物的下沉
本文介绍了湿性黄土上两座条形基础住宅附加沉降的大地测量方法和结果。在它们旁边,为新建筑挖了一个坑,这个坑比这些地基的底部还要深。论证了基坑围护结构的布置保证了既有建筑基础不超过最大允许沉降值的规定要求。该技术采用板桩(工字梁30号)建造一个坑围护结构,台阶为1米,中间有木材滞后。同时,在土堤的保护下,保持了初始阶段的分阶段抽土。然后他们安装了顶梁,支柱,耙子,并逐渐提高了新大楼停车场的地板和外墙。在平面条件下,利用有限元方法和实地研究确定了仿真结果的充分收敛性。采用“地下室-既有建筑基础-基坑围护结构”系统的弹塑性土模型进行建模。
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