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Electro-location, tomography and porosity measurements in geotechnical centrifuge models based on electrical resistivity concepts.

机译:基于电阻率概念的岩土离心机模型中的电定位,层析成像和孔隙度测量。

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摘要

This research was focused on the development of electrical techniques for soil characterization and soil dynamic behavior assessment. The research carried out mainly includes (1) development of a needle probe tool for assessment of soil spatial variability in terms of porosity with high-resolution in the centrifuge testing; (2) development of an electro-location technique to accurately detect buried objects' movements inside the soil during dynamic events; (3) collaborative development of a new electrode switching system to implement electrical resistivity tomography, and electro-location with high speed and high resolution.; To assess soil spatial variability with high-resolution, electrical needle probes with different tip shapes were developed to measure soil electrical resistivity. After normalizing soil resistivity by pore fluid resistivity, this information can be correlated to soil porosity. Calibrations in laboratory prepared soils were conducted. Loosening due to insertion of needle probes was evaluated. A special needle probe tool, along with data acquisition and data processing tools were developed to be operated by the new NEES robot on the centrifuge. The needle probes have great potential to resolve interfaces between soil layers and small local porosity variations with a spatial resolution approximately equal to the spacing between electrodes (about half of the probe diameter).; A new electrode switching system was developed to accurately detect buried objects' movements using a new electro-location scheme. The idea was to establish an electromagnetic field in a centrifuge model by injecting low-frequency alternating currents through pairs of boundary electrodes. The locations of buried objects are related to the potentials measured on them. A closed form expression for the electric field in a rectangular specimen with insulated boundaries was obtained based on the method of images. Effects of sampling parameters on spatial resolution and tradeoffs between spatial and temporal resolution were investigated. Application of the electro-location method in detection of liquefaction-induced settlements of heavy objects in the centrifuge test was performed, and the obtained positions agreed remarkably with independent measurements. The electro-location method is considered to be a useful tool for measurement of buried objects' movements in the physical centrifuge models and it is potentially useful for field applications.
机译:这项研究的重点是用于土壤表征和土壤动力学行为评估的电气技术的发展。进行的研究主要包括:(1)开发一种针刺工具,用于在离心测试中以高分辨率对土壤孔隙度方面的空间变异性进行评估; (2)开发一种电定位技术,以准确检测动态事件期间埋入物体在土壤中的运动; (3)共同开发新的电极开关系统,以实现电阻层析成像和高速,高分辨率的电定位。为了用高分辨率评估土壤空间变异性,开发了具有不同尖端形状的电针探针来测量土壤电阻率。通过孔隙流体电阻率将土壤电阻率归一化后,该信息可以与土壤孔隙率相关。在实验室准备的土壤中进行校准。评估由于插入针探针而造成的松动。开发了一种特殊的针探针工具,以及数据采集和数据处理工具,由离心机上的新型NEES机器人进行操作。针式探针具有解决土壤层之间的界面和较小的局部孔隙率变化的巨大潜力,其空间分辨率大约等于电极之间的间距(约为探针直径的一半)。开发了一种新的电极开关系统,以使用新的电定位方案精确检测埋藏物体的运动。这个想法是通过在成对的边界模型中注入低频交流电来建立离心机模型中的电磁场。掩埋物体的位置与在其上测得的电位有关。基于图像方法,获得了具有绝缘边界的矩形试样中电场的闭合形式表达式。研究了采样参数对空间分辨率的影响以及时空分辨率之间的权衡。进行了电定位法在离心试验中在检测液化引起的重物沉降中的应用,获得的位置与独立测量结果非常一致。电定位方法被认为是用于测量物理离心机模型中掩埋物体运动的有用工具,并且可能在现场应用中有用。

著录项

  • 作者

    Li, Zhihua.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Geophysics.; Engineering Civil.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 266 p.
  • 总页数 266
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;建筑科学;无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:40:52

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