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ESTIMATION OF HORIZONTAL DEFORMATIONAL PROPERTY USING A PRESSUREMETER TEST FOR THE EVALUATION OF LATERAL BEARING CAPACITY OF A PILE

机译:利用压力测定试验估计水平变形性能,以评价桩侧横向承载能力

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There are a number of methods available that can be used to estimate the bearing capacity of piles that are subject to lateral load, such as the theory of subgrade reaction or the elastic continuum approach. The objective of these approaches is to determine the lateral load corresponding to the allowable lateral displacement of the pile. It is important to select the appropriate soil stiffness when analyzing soil behavior within the allowable displacement of piles because the stiffness of soil is dependent on the displacement of piles. Even though pressuremeter tests can measure the stress-strain behavior within a wide strain range, pressuremeter test results have been utilized to assess only the fragmentary soil modulus based on either semi-empirical correlations or analytical approaches. This study is concerned with a methodology that can estimate the horizontal deformational property, while taking into consideration the nonlinear deformational characteristics of sandy soils. Pressuremeter tests were conducted for 15 cases using a calibration chamber. Reloading curves were employed in the estimation of horizontal deformational property in order to minimize the effect of soil disturbance caused by the installation of the probe. The shear modulus degradation characteristics were estimated from the curve fitting for the reloading curve and from extrapolation using the exponential function. In addition, the difference was taken into account between the stress state around the probe in reloading and that of the in-situ state. A consistent relationship was observed between the maximum shear modulus taken from the suggested method and the bender element tests performed in the calibration chamber, simultaneously with the pressuremeter tests. In addition, the results showed significant concurrence with the well-known empirical correlation.
机译:有许多可用于估计横向载荷的桩的承载力的方法,例如路基反应理论或弹性连续体方法。这些方法的目的是确定对应于桩的允许横向位移的横向载荷。在分析桩的允许位移内的土壤行为时选择适当的土刚度是重要的,因为土壤刚度取决于桩的位移。尽管加压仪测试可以测量宽应力范围内的应力 - 应变行为,但是已经利用了基于半经验相关或分析方法的碎片土量模量来评估零碎的土壤模量。本研究涉及一种方法,可以估算水平变形性质,同时考虑到砂土的非线性变形特性。使用校准室进行压力表测试15例。在水平变形性质的估计中采用重新加载曲线,以最小化探头安装引起的土壤干扰的影响。从曲线配件估计剪切模量劣化特性,用于使用指数函数从外推。此外,在重新加载的探针周围的应力状态和原位状态的应力状态之间考虑了差异。在从建议的方法和在校准室中进行的弯曲器元件试验中的最大剪切模量之间观察到一致的关系,同时与压力仪测试同时进行。此外,结果表明,具有众所周知的经验相关性的显着同时。

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