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Load-Displacement Relationship of Single Piles in Clay Considering Different Tip Grouting Volumes and Grouting Returned Heights

机译:考虑不同桩端注浆量和注浆返回高度的黏土中单桩荷载-位移关系

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A total of five model nondisplacement piles tests were conducted to analyze the different volumes of tip grouting on the pile load-displacement response. The ultimate compressive bearing capacity of single piles with different tip grouting volumes is higher than that of the nongrouting test pile by 37.5%-112.5%. In addition, the height of the grouting returned is approximately 14 times the pile diameter (approximately 0.65 m) above the pile tip. A simple analytical method is presented for nonlinear analysis of the load-displacement response of a single postgrouting pile, considering different tip grouting volumes and grouting returned heights. Two models are adopted in the proposed approach. One model uses a modified hyperbolic model, which introduces the enhancement coefficients alpha(s) and beta(s) to describe the contribution of the grouting returned on the pile shaft resistance-displacement relationship. The other model is based on test results that capture the pile tip resistance-displacement response at the pile tip. In addition, a highly effective algorithm is proposed for the analysis of the load-displacement behavior of a single postgrouting pile based on the two models. Comparisons are made among the results of the present method, model test measurements, another analytical method, and two field cases study measurements. The comparisons show that the results of the present method are in good agreement with the measured results of the model tests, the measured results of two field case studies, and the calculated results derived from the other analytical method. A parametric study was conducted to analyze the influence of grouting volume on the pile shaft resistance enhancement coefficient and parameters related to the proposed model on the load-displacement response. (C) 2019 American Society of Civil Engineers.
机译:总共进行了五次模型无位移桩测试,以分析不同桩端注浆量对桩的荷载-位移响应。不同桩端注浆量的单桩极限抗压承载力比非注浆试验桩高37.5%-112.5%。此外,返回的灌浆高度约为桩头上方桩直径的14倍(约0.65 m)。提出了一种简单的分析方法,该方法考虑了不同的顶部注浆量和注浆返回高度,从而对单个后注浆桩的荷载-位移响应进行了非线性分析。该方法采用了两种模型。一种模型使用修改后的双曲线模型,该模型引入了增强系数alpha和beta来描述返回的灌浆对桩身阻力-位移关系的贡献。另一个模型基于测试结果,该结果捕获了桩尖处的桩尖阻力-位移响应。此外,基于这两种模型,提出了一种高效的算法来分析单个注浆桩的荷载-位移特性。在本方法的结果,模型测试测量,另一种分析方法以及两个现场案例研究测量之间进行比较。比较表明,本方法的结果与模型试验的测量结果,两次现场案例研究的测量结果以及从另一种分析方法得出的计算结果非常吻合。进行了参数研究,分析了灌浆量对桩身阻力增强系数的影响以及与所提出模型有关的参数对荷载-位移响应的影响。 (C)2019美国土木工程师学会。

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