...
首页> 外文期刊>Engineering Geology >Three-dimensional Electrical Resistivity Tomography to control the injection of expanding resins for the treatment and stabilization of foundation soils
【24h】

Three-dimensional Electrical Resistivity Tomography to control the injection of expanding resins for the treatment and stabilization of foundation soils

机译:三维电阻率层析成像技术,用于控制膨胀树脂的注入,以处理和稳定基础土壤

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper we describe how time-lapse three dimensional Electrical Resistivity Tomography (3D ERT) can be advantageously integrated in the standard practice of shallow polyurethane resin injections, to improve the reliability of ground treatment and to reduce its costs. Settlement of buildings has several causes, which are generally triggered by movement of fluids in the subsurface. The goal of the injection of expanding resins is to occupy voids and displace water so that the continuity and stiffness of terrains around and below the settled foundation are re-established. In order to control the effectiveness of the consolidation beneath the building, non-invasive geophysical methods such as Seismics, ERT or GPR can be used. Among these, ultimate 3D ERT developments provide the best solution for this application because of the fast imaging capability, the extreme reliability and repeatability of the measurements and the high correlation of electrical resistivity to soil moisture, which is known to be the most common cause of settlement. Given the often limited accessibility of work sites, a successful practical approach was focused on innovative arrangements of surface electrodes (inside and outside of buildings) and acquisition geometries, combined with appropriate measurements and processing procedures, that enable the effective 3D imaging of the foundation soils, before, during and after the injection treatment. Details on the field procedures, validated by a sensitivity and resolution analysis, are introduced through the description of a case-history in which the pre-injection ERT measurements, combined with structural and geotechnical evidences, allow to investigate the status of foundations and lithological heterogeneities. Time-lapse ERT surveys control soil homogenization and fluid movements and provide a quasi real-time feedback for modifying and modulating the parameters of treatment, which would be very difficult with direct methods. The illustrated case-history has been purposely selected since it represents the most common practice occurring throughout Italy and allows to assess and to discuss the current limitations and the future developments.
机译:在本文中,我们描述了如何将延时3D电阻层析成像(3D ERT)有利地集成到浅聚氨酯树脂注入的标准实践中,以提高地面处理的可靠性并降低其成本。建筑物的沉降有多种原因,通常是由地下流体的流动引起的。注入膨胀树脂的目的是占据空隙并置换水,以便重新建立沉降基础周围和下方的地形的连续性和刚度。为了控制建筑物下方固结的有效性,可以使用地震,ERT或GPR等非侵入性地球物理方法。其中,最终的3D ERT开发提供了最佳的解决方案,因为它具有快速的成像能力,测量的极高可靠性和可重复性以及电阻率与土壤水分的高度相关性,这被认为是造成土壤中水分的最常见原因。沉降。鉴于工作场所的通行性通常很有限,一种成功的实践方法集中于表面电极(建筑物内部和外部)的创新布置和采集几何形状,并结合适当的测量和处理程序,从而能够对基础土壤进行有效的3D成像在注射治疗之前,期间和之后。通过对案例历史的描述,​​介绍了经过敏感性和分辨率分析验证的现场程序的详细信息,在该案例中,注入前的ERT测量与结构和岩土证据相结合,可以研究地基和岩性异质性的状态。 。延时ERT调查可控制土壤均质化和流体运动,并提供准实时反馈来修改和调整处理参数,而直接方法很难做到这一点。图示案例历史是经过精心选择的,因为它代表了整个意大利最常见的做法,可以评估和讨论当前的局限性和未来的发展。

著录项

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