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俞季民, 魏杰. 砂土中桩端阻力深度影响机理分析[J]. 岩土工程学报, 1991, 13(5): 46-53.
引用本文: 俞季民, 魏杰. 砂土中桩端阻力深度影响机理分析[J]. 岩土工程学报, 1991, 13(5): 46-53.
Yu Jimin, Wei Jie. The Mechanism of Depth Effect on Point Resistance of Pile in Sand[J]. Chinese Journal of Geotechnical Engineering, 1991, 13(5): 46-53.
Citation: Yu Jimin, Wei Jie. The Mechanism of Depth Effect on Point Resistance of Pile in Sand[J]. Chinese Journal of Geotechnical Engineering, 1991, 13(5): 46-53.

砂土中桩端阻力深度影响机理分析

The Mechanism of Depth Effect on Point Resistance of Pile in Sand

  • 摘要: 在人工均匀填筑的平潭标准砂中,对数种不同入土深度的模型桩,贯入不同填筑密度的砂中,利用读数显微镜详细地对数百个观测点进行桩周土体变形场的观测,利用土压传感器观测桩端周围的附加应力场。通过试验,观察到桩模在各种不同入土深度和不同填筑密度的砂中,端阻力在临界深度以下均出现似稳值的现象。随着似稳值现象的出现,上体变形场及变形增量场的变形特征均近于稳定。 本文还分析了桩贯入土体某一深度和再贯入一定深度后土的剪切机理和压缩机理的具体特征及两种机理的区别和过渡。从而进一步解释了端阻力的深度效应,为建立合理反映深度影响的端阻力计算方法提供了依据。

     

    Abstract: Model tests of displaced pile in laboratory, performed in uniform grain and evenly filled Pin-Tan standard sand are used to study the mechanism of depth effect on point resistance. Pile models penetrated into different density fill with different penetrated depth were tested. The displacement field indicated by marks around the pile shaft were observed with a measuring microscope. The distribution of additional stress around the pile tips was measured with pressure cells.In the process of testing, below the critical depth, for various cases, "quasi-stable" point resistance was observed. After the occurrence of "quasi-stable" phenomenon, soil displacement field and incremental displacement field had tendency to become stable.Analyzed the actual chracteristics of the ahear and compression mechanism and their difference and transition of model pile, during the pile penetration into sand some depth and consequent penetration to a certain depth, the mechanism of depth effect was further explained. From the analysis, it would become the basis for the proposal of a new method of calculation for pile point resistance with consideration of the depth effect.

     

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