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Application of numerical simulation for the analysis and interpretation of pile-anchor system failure

机译:数值模拟在桩锚系统失效分析与解释中的应用

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Progressive increase in population causing land scarcity, which is forcing construction industry to build multistory buildings having underground basements. Normally, basements are constructed for parking facility. This research work evaluates important factors which have caused the collapse of pile-anchor system at under construction five star hotel. 21 m deep excavation is carried out, to have five basements, after installation of 600 mm diameter cast in-situ contiguous concrete piles at plot periphery. To retain piles and backfill, soil anchors are installed as pit excavation is proceeded. Before collapse, anchors are designed by federal highway administration procedure and four anchor rows are installed with three strands per anchor in first row and four in remaining. However, after collapse, system is modeled and analyzed in plaxis using mohr-coulomb method. It is investigated that in-appropriate evaluation of soil properties, additional surcharge loads, lesser number of strands per anchor, shorter grouted body length and shorter pile embedment depth caused large deformations to occur which governed the collapse of east side pile wall. To resume work, old anchors are assumed to be standing at one factor of safety and then system is analyzed using finite element approach. Finally, it is concluded to use four strands per anchor in first new row and five strands in remaining three with increase in grouted and un-grouted body lengths.
机译:人口的逐步增加导致土地稀缺,这迫使建筑业建造具有地下地下室的多层建筑物。通常,地下室是为停车设施而建造的。这项研究工作评估了导致在建五星级酒店桩锚系统崩溃的重要因素。在地块外围安装直径为600 mm的现浇连续混凝土桩后,进行21 m深的挖掘,有五个地下室。为了保留桩和回填土,在进行基坑开挖时要安装土锚。在倒塌之前,根据联邦高速公路管理程序设计锚,并安装四排锚,第一排每个锚三股,其余四排。但是,坍塌后,使用莫尔-库仑法在系统中对系统进行建模和分析。研究发现,对土壤性质的不适当评估,附加的超载,每个锚索的股数更少,灌浆的体长较短和桩的埋入深度较短,导致了大的变形发生,从而导致了东侧桩壁的坍塌。为了恢复工作,旧锚被假定处于一个安全因素,然后使用有限元方法对系统进行分析。最后,得出结论,在第一排新锚中,每个锚使用四股锚链,其余三股锚固使用五股锚链,随着灌浆和未灌浆的体长的增加。

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