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Numerical Simulation of a Ground Anchor Pullout Test Monitored with Fiber Optic Sensors

机译:用光纤传感器监测地面锚拔试验的数值模拟

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摘要

This paper presents a comprehensive study of the load transfer mechanism of a soil anchor during pullout test. The anchor was monitored with fiber optic sensors installed along the tendon and embedded in the grout, which enabled continuous measurements of strains with a spatial resolution of about 10 mm. The measured strain profile along the tendon indicates that the load is not transferred from the tendon to the grout at the same rate along the fixed length. Crack development was verified by measured peaks along the longitudinal strain profile. The in situ measurements were compared with results from finite-element simulations contributing to the interpretation of the in situ results. The load-displacement curves and strain distributions obtained with the numerical simulations compare well with measurements. The constitutive model selected for the grout is capable of reproducing the crack development and the numerical simulations suggest that debonding occurred during the anchor pullout test.
机译:本文介绍了拔出试验期间土锚的载荷传递机理的综合研究。用沿肌腱安装的光纤传感器监测锚,并嵌入在灌浆中,这使能够连续测量菌株的空间分辨率约为10mm。沿着肌腱的测量应变曲线表明,载荷不会以沿固定长度的相同速率从肌腱转移到灌浆。通过沿纵向应变型材的测量峰来验证裂纹开发。将原位测量与来自有限元模拟的结果进行了比较,有助于解释原位结果。使用数值模拟获得的负载 - 位移曲线和应变分布与测量相比很好地比较。为植物选择的本构模型能够再现裂缝开发,数值模拟表明在锚拔路测试期间发生剥离。

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  • 来源
    《Journal of geotechnical and geoenvironmental engineering》 |2021年第2期|04020163.1-04020163.10|共10页
  • 作者单位

    Institute of Soil Mechanics Foundation Engineering and Computational Geotechnics Graz Univ. of Technology Rechbauerstrasse 12 Graz 8010 Austria;

    Institute of Soil Mechanics Foundation Engineering and Computational Geotechnics Graz Univ. of Technology Rechbauerstrasse 12 Graz 8010 Austria;

    Faculty of Civil and Geodetic Engineering Univ. of Ljubljana Jamova cesta 2 Ljubljana 1000 Slovenia;

    Institute of Engineering Geodesy and Measurement Systems Graz Univ. of Technology Steyrergasse 30 Graz 8010 Austria;

    Keller Grundbau GmbH No. 15 Guglgasse Vienna 1110 Austria;

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