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Research on the Horizontal Displacement Coefficient of Soil Surrounding Pile in Layered Foundations by Considering the Soil Mass's Longitudinal Continuity

机译:考虑土体纵向连续性的分层地基中土围桩水平位移系数研究

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When utilizing the p-y curve to simulate the nonlinear characteristics of soil surrounding pile in layered foundations, due to having not taken into account the soil mass's longitudinal continuity, the calculation deviation of horizontal displacement increases with the growth of a load. This paper adopted the layered elasticity system theory to consider the soil mass's longitudinal continuity, as well as utilizing the research method for layered isotropic bodies, assuming that the horizontal resistance is evenly distributed around the perimeter of the pile's cross-section. Then an appropriate transfer matrix method of horizontal displacement coefficient for the soil surrounding pile in layered foundations was established. According to the calculation principle of finite element equivalent load, the horizontal displacement coefficient matrix was deduced as well as providing a corrected formula for the horizontal displacement of soil surrounding pile through the p-y curve method when the external load was increased. Following the established model, a program was created which was used for calculating and analyzing the horizontal displacement coefficient matrix of three-layered soil in order to verify this method's validity and rationale. Where there is a relatively large discrepancy in the soil layers' properties, this paper's method is able to reflect the influence on the layered soil's actual distributional difference as well as the nearby soil layers' interaction.
机译:当使用p-y曲线模拟分层基础中桩基周围土体的非线性特性时,由于未考虑土体的纵向连续性,因此水平位移的计算偏差会随着载荷的增长而增加。本文采用层状弹性系统理论来考虑土体的纵向连续性,并假设层间水平阻力在桩的横截面周围均匀分布,并利用层状各向同性体的研究方法。建立了层状地基中土桩水平位移系数的合适传递矩阵法。根据有限元当量荷载的计算原理,推导了水平位移系数矩阵,并通过外力增加时的p-y曲线法,给出了桩周围土体水平位移的修正公式。根据建立的模型,创建了一个程序用于计算和分析三层土的水平位移系数矩阵,以验证该方法的有效性和合理性。在土层特性存在较大差异的地方,本文的方法能够反映出对层状土实际分布差异以及附近土层相互作用的影响。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第8期|948917.1-948917.10|共10页
  • 作者

    Yao Wen-Juan; Zhou Hua-Cong;

  • 作者单位

    Department of Civil Engineering, Shanghai University, No. 149 Yanchang Road, Shanghai 200072, China;

    Department of Civil Engineering, Shanghai University, No. 149 Yanchang Road, Shanghai 200072, China ,College of Architecture and Engineering, Anhui Polytechnic University, Wuhu 241000, China;

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