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Dynamic behavior of micropile systems subjected to sinusoidal ground motions: Centrifugal model studies.

机译:经受正弦形地面运动的微型桩系统的动力学行为:离心模型研究。

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摘要

The behavior of micropile group systems under static loading has been investigated and design guidelines have been assessed in a state of practice review (Bruce and Juran, 1997). However, the application of micropiles to seismic retrofitting is facing the need for established and reliable design guidelines.; In order to investigate the seismic behavior of micropile group systems (isolated piles, groups and networks of reticulated micropiles) under axial, lateral and combined loading in selected types of engineering applications, a proposed Workplan for Laboratory Centrifugal and Numerical Model Studies on the Seismic Behavior of Micropile Systems has been undertaken by the Polytechnic University at New York in cooperation with the Ecole Nationale des Ponts et Chaussees Geotechnical Research Center - CERMES at Paris and the University of Canterburry at New Zealand. The prime objective is to provide the experimental data base to develop and evaluate seismic design methods for selected engineering applications, including new construction in earthquake zones and seismic retrofitting of bridge foundations, retaining systems and slope stabilization.; A series of centrifuge tests on instrumented micropile group systems were performed at the Rensselaer Polytechnic Institute (RPI) Geotechnical Centrifuge Research Center and several configurations of model micropile group systems were tested in loose to medium dry sand. Micropile bending moment, deflection, and acceleration were measured during testing. Dynamic p-y curves were derived from the measurements for low and high levels of shaking and were compared with the backbone p-y curves for sand recommended by API and other published data. Group and network effects were investigated for different configurations and at different loading levels.; The main objectives of this research were to investigate the effects of (i) acceleration shaking level; (ii )group and two-dimensional network configuration; (iii) superstructure loading level; and (iv) micropile inclination on the seismic response of selected micropile systems. The preliminary results illustrate that, due to their slenderness and flexibility (ductility), during the seismic induced ground motions, the micropile system remains integrated with the soil and appears to effectively transfer inertial forces acting on the superstructure to the foundations soils. For the selected frequency of excitation of 2 Hz, the results indicate a positive group effect increasing with the number of piles and the batter angle. This dissertation describes the experimental procedures used to carry out the centrifugal model tests, discusses the test interpretation methods, and summarizes the main findings.
机译:已经研究了微型桩系统在静态载荷下的行为,并在实践评估中评估了设计准则(Bruce和Juran,1997)。但是,将微型桩应用于地震改型面临着建立可靠的设计准则的需求。为了研究选定类型的工程应用中轴向,侧向和组合载荷下微桩组系统(网状微桩的隔离桩,组和网络)在地震作用下的抗震性能,提出了一项针对实验室抗震性能的离心和数值模型研究工作计划纽约理工大学与巴黎国家高等商学院岩土工程研究中心-巴黎的CERMES和新西兰的坎特伯雷大学合作,对微堆系统进行​​了研究。主要目的是提供实验数据库,以开发和评估针对选定工程应用的地震设计方法,包括地震区的新建工程以及桥梁基础,挡土系统和边坡稳定的地震改建。在伦斯勒理工学院(RPI)岩土离心机研究中心对仪器化的微型桩组系统进行了一系列离心测试,并在松散至中等干燥的沙子中测试了模型微型桩组系统的几种配置。在测试过程中测量了微型桩的弯矩,挠度和加速度。动态p-y曲线是从低和高水平摇晃的测量值中得出的,并与API和其他已公开数据推荐的沙地主干p-y曲线进行了比较。研究了不同配置和不同负载水平下的组和网络效应。这项研究的主要目的是调查(i)加速震动水平的影响; (ii)组和二维网络配置; (iii)上层建筑的负荷水平; (iv)微型桩对选定微型桩系统地震响应的倾向。初步结果表明,由于它们的细长性和柔韧性(延性),在地震引起的地震动过程中,微桩系统仍与土壤保持一体,并且似乎可以将作用于上部结构的惯性力有效地传递到基础土壤。对于选定的2 Hz激发频率,结果表明正的群效应随堆数和击球角的增加而增加。本文介绍了进行离心模型试验的实验步骤,讨论了试验解释方法,并总结了主要发现。

著录项

  • 作者

    Benslimane, Aomar.;

  • 作者单位

    Polytechnic University.;

  • 授予单位 Polytechnic University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 356 p.
  • 总页数 356
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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