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Design and Evaluation of Two Laboratory Tests for the Nets of a Flexible Anchored Slope Stabilization System

机译:柔性锚固边坡稳定系统网的两个实验室测试的设计和评估

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摘要

This paper evaluates two new tests to characterize cable nets used in slope stabilization; a concentrated load test (CLT) and a distributed load test (DLT). These tests enable engineers to obtain the stress versus displacement graph and the maximum resistance. Both test devices and test methodology have been designed by the Construction Technology Research Group (GITECO) at the University of Cantabria. These two tests have enabled the certification of two different manufacturers of cable nets, Geobrugg and Malla Talud Cantabria (MTC). The results showed that these tests provide representative results of the net resistance. To verify the effectiveness of these new tests, they have been performed with various cable nets, from which homogeneous, logical results have been obtained, which are representative of the real working conditions. When performing the distributed load test, the force was applied to a pyramid of fine gravel sacks that enabled the forces to be distributed throughout the net. With this configuration, the net was deformed, acquiring an elliptical form in the lower free area. In the concentrated load test, the force was applied through a metallic plate of 600 mm diameter that deformed the net locally. The result always showed homogeneous behavior of the different samples tested. This allowed the test to be repeated in the same conditions several times. With the results of both tests an analysis was carried out relating the net grid, the load applied, and the displacement obtained. This enabled the generation of regression functions that provided information about the resistance value and the net displacement according to the chosen grid.
机译:本文评估了两种新的测试方法,以表征用于边坡稳定的电缆网。集中负载测试(CLT)和分布式负载测试(DLT)。这些测试使工程师能够获得应力-位移图和最大电阻。测试设备和测试方法都是由坎塔布里亚大学的建筑技术研究小组(GITECO)设计的。这两项测试使两家不同的电缆网制造商Geobrugg和Malla Talud Cantabria(MTC)获得了认证。结果表明,这些测试提供了净电阻的代表性结果。为了验证这些新测试的有效性,已使用各种电缆网进行了测试,并从中获得了均质的逻辑结果,这些结果代表了实际的工作条件。在执行分布式载荷测试时,将力施加到细砾石麻袋的金字塔上,从而使力可以分布在整个网中。通过这种构造,网变形,在下部自由区域中获得椭圆形。在集中载荷测试中,力通过直径为600 mm的金属板施加,使金属网局部变形。结果始终显示出所测试的不同样品的均相行为。这样就可以在相同条件下将测试重复几次。根据这两个测试的结果,进行了有关净网格,所施加的载荷和获得的位移的分析。这使得能够生成回归函数,该回归函数根据所选的网格提供有关电阻值和净位移的信息。

著录项

  • 来源
    《Geotechnical testing journal》 |2009年第4期|315-324|共10页
  • 作者单位

    Department of Construction, ETSIPCC, University of Cantabria, Avenida de los Castros s. C.P. 39005 Santander, Spain;

    Escuela de Ingenieria en Construccion, Pontificia Universidad Catolica de Valparaiso Chile;

    Department of Construction, ETSIPCC, University of Cantabria, Avenida de los Castros s. C.P. 39005 Santander, Spain;

    Escuela de Ingenieria en Construccion, Catholic University of Maule, Chile;

  • 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

    slope stabilization; cable net; laboratory test; simulation;

    机译:边坡稳定;电缆网实验室测试;模拟;

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