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Investigating pile anchor support system for deep foundation pit in a congested area of Changchun

机译:调查长春拥挤地区深基坑桩锚固系统

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摘要

Foundation pit engineering has been developing rapidly with the challenges associated with modern urbanization. As a result, deep excavations can now be performed at the heart of coastal metropolises with dense existing structures and adverse soil and hydraulic conditions. On the other hand, foundation engineering is challenged with sustainability and economic viability such that cost-effectiveness is a key factor provided that the robustness and safety requirements are fully satisfied. This paper presents the design of the retaining system for a deep foundation excavation that is located in a second-tier inland city with less crowed existing structures and good soil and hydraulic conditions. This is representative of the current trend of the suburban development of major cities and the development of below first-tier cities, as a response to the saturating of the major cities. Different designs are reviewed for this case in order to strike the balance between structural capability and cost-effectiveness. The analysis indicates that a hybrid solution is particularly suitable for such type of construction. Specifically, results show that the maximum displacement, bending moment, and shear force in the pit can be reduced by over 50%, 40%, and 30%, respectively, by the combination of soil nailing wall and pile anchor compared with a single support solution. And for the combination of non-prestressed anchor bolts and prestressed anchor cables can effectively save the cost while improving the safety factor of foundation pit during excavation. The findings are instructive to similar projects with cost-effectiveness as a major factor.
机译:基金会坑工程一直迅速发展与现代城市化相关的挑战。因此,现在可以在沿海大都市的核心和致密的土壤和液压条件下在沿海大都市的核心处进行深度挖掘。另一方面,基础工程受到可持续性和经济利用的挑战,使成本效益是一个关键因素,条件是稳健性和安全要求完全满足。本文介绍了挡泥系统的设计,为深井挖掘,位于第二层内陆城市,较少拥挤的现有结构和良好的土壤和液压条件。这代表了主要城市郊区发展的当前趋势,以及一级城市以下的发展,作为对主要城市饱和的回应。对这种情况进行审查不同的设计,以便在结构能力和成本效益之间取得平衡。分析表明混合液特别适用于这种类型的结构。具体而言,结果表明,通过与单个支撑件相比,坑内的最大位移,弯矩和剪切力分别通过土壤钉壁和桩锚的组合减少了50%,40%和30%。解决方案。并且对于非预应力锚固螺栓和预应力锚固电缆的组合可以有效地节省成本,同时在挖掘过程中提高基坑的安全系数。该研究结果对与主要因素的成本效益相似的项目是有效的。

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