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Behaviour of geosynthetic in anchored geosynthetic-reinforced slopes subjected to seepage

机译:锚定的土工合成的行为受到渗透的锚链坡

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The anchored geosynthetic system (AGS) is a technique to improve the stability of unstable or quasi-stable slopes. In this study, the behaviour of geosynthetic in slopes reinforced with AGS subjected to seepage is investigated. Centrifuge model tests were carried out at 50g centrifuge acceleration on silty sand slopes with an inclination of 614 degrees (2V:1H) and reinforced with AGS. Seepage was generated by gradually raising the water table within the reinforced slope models. By means of a digital image analysis technique, the behaviour of the surface geosynthetic during the seepage was studied and the compressive stresses produced beneath the geosynthetic were determined. Limit equilibrium stability analyses were conducted with the application of AGS loads measured by digital image analyses. The results indicate that the maximum tension mobilised in the geosynthetic during seepage depends on the tension induced in the geosynthetic due to the anchorage prior to introducing seepage. Furthermore, including the compressive stresses produced by the tensioned geosynthetic in the analyses gives a more realistic value for the safety factors.
机译:锚定的地质合成系统(AGS)是一种提高不稳定或准稳定斜坡稳定性的技术。在这项研究中,研究了对经受渗流进行的AGS加强的斜坡中的地质合成的行为。离心机模型测试是在粉状砂岩上的50g离心机加速度进行,倾角为614度(2V:1H)并用AG增强。通过逐渐升高加强斜坡模型中的水桌来产生渗水。通过数字图像分析技术,研究了在渗流期间的表面地质合成的行为,并确定了地质合成下面产生的压缩应力。利用数字图像分析测量的AGS负载的应用进行了极限平衡稳定性分析。结果表明,在渗透期间在地质合成中动员的最大张力取决于引起渗透前由于锚固引起的地质合成中引起的张力。此外,在分析中包括由张紧的地质合成产生的压缩应力给出了安全因素的更现实的价值。

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