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Effect of ground improvement on the lateral resistance of closed-end steel pipe piles in a coal ash pond

机译:基于煤灰池闭端钢管桩横向电阻的影响

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摘要

This study assessed the effect of configuration of the ground-improved body to improve the lateral resistance of piles driven into a coal ash pond. Nine closed-end steel pipe piles were studied by lateral load tests in the investigation, which included four test piles and five reaction piles. While TP1 pile was carried out without the reinforcement, TP2, TP3, and TP4 piles were tested with various reinforcements, including grid-type, block-type, and cross-type. The lateral load test results showed that the ultimate lateral loading capacity, pile-head stiffness, and soil resistance of the reinforced piles compared with TP1 pile were increased by 26%-39%, 54%-238%, and 33%-128%, respectively. Conversely, the maximum bending moments of the reinforced piles were reduced by 48%-73%, respectively. Soil-mixing wall reinforcement was found to increase effectively the lateral resistance of the closed-end steel pipe piles in a coal ash pond. However, because a variety of ground-improved body configurations can increase the lateral resistance of piles, the choice of the type of reinforcement must be considered for reliable design, construction feasibility, and economic benefits of engineering practice.
机译:本研究评估了地面改良体的配置对提高打入煤灰池的桩的横向阻力的影响。本次调查共对9根封闭式钢管桩进行了横向荷载试验,其中包括4根试验桩和5根反力桩。TP1桩在没有钢筋的情况下进行,而TP2、TP3和TP4桩则使用各种钢筋进行了测试,包括网格型、块型和交叉型。横向荷载试验结果表明,与TP1桩相比,加固桩的极限横向承载力、桩头刚度和土壤阻力分别提高了26%-39%、54%-238%和33%-128%。相反,加固桩的最大弯矩分别降低了48%-73%。在粉煤灰池中,搅拌墙加固可以有效地提高封闭式钢管桩的侧向阻力。然而,由于各种地基改良体结构可以增加桩的横向阻力,因此必须考虑加固类型的选择,以确保可靠的设计、施工可行性和工程实践的经济效益。

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