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Finite Element Research of Self-Supporting Technology in Construction of Underground Structures Adjacent to Existing Buildings

机译:与既有建筑物相邻的地下结构施工中自支撑技术的有限元研究

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The sedimentation of adjacent buildings and the transmutation of supporting piles were simulated by large-scale finite element engineering software ANSYS according to a residential community foundation-pit excavation practice. Then the data was compared with monitoring data in the actual construction process, and innovative technology programs were designed. It relied on the underground engineering structure self-stiffness to provide supporting points for retaining piles, turning retaining points from cantilever components into multi-span continuous hyper static components. It greatly reduced the effect of bending moment of supporting piles. So that we can significantly reduce supporting piles'' length and sectional area of the design, saving about 60% of construction cost and shorting construction period. The success of the technology research and application has accumulated experience for future similar underground construction.
机译:根据居民社区基坑开挖实践,利用大型有限元工程软件ANSYS对相邻建筑物的沉降和支桩的变形进行了模拟。然后将数据与实际施工过程中的监控数据进行比较,并设计了创新技术程序。它依靠地下工程结构的自刚度来提供支撑桩的支撑点,将支撑点从悬臂构件变成多跨连续超静构件。大大降低了支桩弯矩的影响。这样就可以显着减少支撑桩的设计长度和截面积,节省了约60%的施工成本,缩短了工期。技术研究和应用的成功为未来类似的地下建筑积累了经验。

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