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Relevance of soil-pile tangential tractions for the estimation of kinematic seismic forces: Formulation and setting of a Winkler approach

机译:土壤-桩切向牵引力与运动地震力估计的相关性:Winkler方法的公式化和设定

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摘要

The effects of considering the tangential tractions that act on the soil-pile interface in the estimation of the pile seismic response are studied through a Beam on Dynamic Winkler Foundation model, which includes the distributed moments produced by the rotation of the pile cross-section and the action of the incident field. The performance of the developed Winkler formulation is evaluated by using a rigorous continuum model based on boundary elements that allows the use of both smooth and welded contact conditions at the soil-pile interface. In order to do the analyses, the seismic response of a fixed-head single pile embedded in different soils subjected to planar shear waves is computed in terms of envelopes of maximum bending moments and shear forces. Two soil profiles are assumed: homogeneous and two-strata halfspaces. The tangential tractions are found to significantly increase the pile maximum shear forces, but to have a minor impact on the pile maximum bending moments. The proposed Winkler model accurately reproduces the results of the continuum formulation for both contact conditions. However, some differences are found in the evaluation of the inter-layer envelopes, for which the simplified model underestimates their values.
机译:通过基于动态Winkler的梁模型研究了考虑在桩-地震界面估计中考虑到土-桩界面的切向牵引力的影响,该模型包括由桩横截面的旋转和事故现场的行动。通过使用基于边界元素的严格连续模型来评估开发的Winkler配方的性能,该模型允许在土-桩界面处同时使用光滑和焊接接触条件。为了进行分析,根据最大弯矩和剪力的包络,计算了埋入不同土壤中的固定头单桩在平面剪切波作用下的地震响应。假定有两种土壤剖面:均质和两层半空间。发现切向牵引力显着增加了桩的最大剪切力,但对桩的最大弯曲力矩影响很小。所提出的Winkler模型可以准确地再现两种接触条件下连续体公式的结果。但是,在层间包络的评估中发现了一些差异,为此简化模型低估了它们的值。

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  • 来源
    《Applied Mathematical Modelling》 |2018年第7期|1-19|共19页
  • 作者单位

    Instituto Universitario de Sistemas Inteligentes y Aplicaciones Numéricas en Ingeniería (SIANI), Universidad de Las Palmas de Gran Canaria, Edificio Central del Parque Científico y Tecnológico, Campus Universitario de Tafira;

    Instituto Universitario de Sistemas Inteligentes y Aplicaciones Numéricas en Ingeniería (SIANI), Universidad de Las Palmas de Gran Canaria, Edificio Central del Parque Científico y Tecnológico, Campus Universitario de Tafira;

    Instituto Universitario de Sistemas Inteligentes y Aplicaciones Numéricas en Ingeniería (SIANI), Universidad de Las Palmas de Gran Canaria, Edificio Central del Parque Científico y Tecnológico, Campus Universitario de Tafira;

    Instituto Universitario de Sistemas Inteligentes y Aplicaciones Numéricas en Ingeniería (SIANI), Universidad de Las Palmas de Gran Canaria, Edificio Central del Parque Científico y Tecnológico, Campus Universitario de Tafira;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pile foundation; Soil-structure interaction; Kinematic interaction; BDWF model; Boundary element; Tangential tractions;

    机译:桩基;土-结构相互作用;运动学相互作用;BDWF模型;边界元;切向牵引力;

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