首页> 外文学位 >The effects of vibration on the penetration resistance and pore water pressure in sands.
【24h】

The effects of vibration on the penetration resistance and pore water pressure in sands.

机译:振动对砂土的抗渗透性和孔隙水压力的影响。

获取原文
获取原文并翻译 | 示例

摘要

The current approach for using cone penetration test data to estimate soil behavior during seismic loading involves the comparison of the seismic stresses imparted into a soil mass during an earthquake to the penetration resistance measured during an in-situ test. The approach involves an indirect empirical correlation of soil density and other soil related parameters to the behavior of the soil during the loading and does not involve a direct measurement of the dynamic behavior of the soil in-situ. The objective of this research was to develop an approach for evaluating the in-situ behavior of soil during dynamic loading directly through the use of a vibrating piezocone penetrometer.; Cone penetration tests were performed in a large calibration chamber in saturated sand samples prepared at different densities and stress levels. A total of 118 tests were performed as part of the study. The piezocone penetrometer used in the investigation was subjected to a vibratory load during the penetration test. The vibratory units used in the investigations were mounted on top of a 1m section of drill rod that was attached at the lower end to the cone penetrometer. Pneumatic impact, rotary turbine, and counter rotating mass vibrators were used in the investigation. The vibration properties generated by the vibratory unit and imparted into the soil were measured during the penetration test by a series of load cells and accelerometers mounted below the vibrator and above the cone penetrometer, respectively. The tip resistance, sleeve friction and pore water pressure were also measured during the test by load cells and transducers in the cone itself.; The vibration and cone data were compiled and compared to evaluate the effect of the vibration on the penetration resistance and pore water pressure in the soil mass. The results of the testing revealed that the influence of the vibration on the penetration resistance value decreased as the density and the mean effective stress in the soil increased, mainly because the pore water pressure was not significantly elevated throughout the entire zone of influence of the cone penetometer at the elevated stress and density conditions. Ain analysis of the soil response during the testing resulted in the generation of a family of curves that relates the soil response during the vibratory and static penetration to the vertical effective stress and density of the soil. The data used to generate the curves seem to agree with the proposed values estimated through the empirical relationship. An evaluation of the effects of the frequency of vibration was also performed as part of the study. The largest reduction in penetration resistance occurred when the input vibration approximated the natural frequency of the soil deposit, suggesting that resonance conditions existed between the input motion and the soil. An energy-based approach was developed to compare the energy imparted into the soil by the vibrator to the energy capacity of the soil. The input energy introduced into the soil mass prior to the reduction in penetration resistance agrees well with the energy capacity of the soil, especially in tests at the low effective stress level where a high excess pore water pressure was observed.
机译:当前使用圆锥体渗透测试数据估算地震荷载下土壤行为的方法是将地震过程中施加到土壤中的地震应力与现场测试中测得的渗透阻力进行比较。该方法涉及在装载过程中土壤密度和其他与土壤相关的参数与土壤行为的间接经验关联,并且不涉及对土壤动态行为的直接测量。这项研究的目的是开发一种方法,该方法通过使用振动的压电锥度计,直接在动态加载过程中直接评估土壤的原位行为。圆锥体渗透测试是在一个大的校准室中对以不同密度和应力水平制备的饱和砂岩样品进行的。作为研究的一部分,总共进行了118次测试。在渗透测试期间,研究中使用的压电锥形渗透仪承受了振动载荷。研究中使用的振动单元安装在一根钻杆的1m截面的顶部,该钻杆的下端连接到锥孔透度计。在研究中使用了气动冲击,旋转涡轮和反向旋转质量振动器。由振动单元产生并传递到土壤中的振动特性是在渗透测试期间通过分别安装在振动器下方和锥形渗透仪上方的一系列称重传感器和加速度计测量的。在测试过程中,还通过锥体本身中的称重传感器和传感器测量了端头阻力,套筒摩擦力和孔隙水压力。汇总并比较了振动和圆锥数据,以评估振动对土壤质量的渗透阻力和孔隙水压力的影响。测试结果表明,振动对渗透阻力值的影响随着土壤中密度和平均有效应力的增加而减小,这主要是因为在整个圆锥影响区域中,孔隙水压力并未显着升高。渗透计在高应力和高密度条件下。对测试过程中土壤响应的Ain分析得出了一系列曲线,这些曲线将振动和静态渗透过程中的土壤响应与土壤的垂直有效应力和密度相关联。用于生成曲线的数据似乎与通过经验关系估算的建议值相符。作为研究的一部分,还对振动频率的影响进行了评估。当输入振动接近土壤沉积物的固有频率时,穿透阻力的减小最大,这表明在输入运动与土壤之间存在共振条件。人们开发了一种基于能量的方法,将振动器传递给土壤的能量与土壤的能量容量进行比较。在抗渗透性降低之前引入土壤团块中的输入能量与土壤的能量容量非常吻合,特别是在低有效应力水平的试验中,观察到较高的过剩孔隙水压力。

著录项

  • 作者

    Bonita, John Anthony.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Civil.; Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 349 p.
  • 总页数 349
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;土壤学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号