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Behaviour of geogrid reinforced soil retaining wall with concrete-rigid facing

机译:土工格栅加筋土工格栅的性能

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摘要

Monitoring was carried out during construction of a cast-in-situ concrete-rigid facing geogrid reinforced soil retaining wall in the Gan (Zhou)-Long (Yan) railway main line of China. The monitoring included the vertical foundation pressure and lateral earth pressure of the reinforced soil wall facing, the tensile strain in the reinforcement and the horizontal deformation of the facing. The vertical foundation pressure of reinforced soil retaining wall is non-linear along the reinforcement length, and the maximum value is at the middle of the reinforcement length, moreover the value reduces gradually at top and bottom. The measured lateral earth pressure within the reinforced soil wall is non-linear along the height and the value is less than the active lateral earth pressure. The distribution of tensile strain in the geogrid reinforcements within the upper portion of the wall is single-peak value, but the distribution of tensile strain in the reinforcements within the lower portion of the wall has double-peak values. The potential failure plane within the upper portion of the wall is similar to "0.3H method", whereas the potential failure plane within portion of the lower wall is closer to the active Rankine earth pressure theory. The position of the maximum lateral displacement of the wall face during construction is within portion of the lower wall, moreover the position of the maximum lateral displacement of the wall face post-construction is within the portion of the top wall. These monitoring results of the behaviour of the wall can be used as a reference for future study and design of geogrid reinforced soil retaining wall systems.
机译:在中国赣(长)-龙(延)铁路干线的现浇混凝土刚性面土工格栅加筋土挡土墙施工过程中进行了监测。监测包括加筋土墙面板的竖向基础压力和侧向土压力,加筋中的拉伸应变以及面板的水平变形。加筋土挡土墙的竖向地基压力沿加筋长度呈非线性关系,最大值在加筋长度的中间,并且该值在顶部和底部逐渐减小。加筋土墙内测得的横向土压力沿高度是非线性的,该值小于有效横向土压力。墙体上部内土工格栅中钢筋的拉伸应变分布为单峰值,墙体下部内土工格栅中的增强筋的拉伸应变分布为双峰值。墙上部的潜在破坏面类似于“ 0.3H方法”,而墙下部的潜在破坏面更接近主动兰金土压力理论。在施工期间壁面的最大横向位移的位置在下壁的一部分内,此外,在施工后壁面的最大横向位移的位置在顶壁的一部分内。墙体行为的这些监测结果可作为土工格栅加筋土挡土墙系统未来研究和设计的参考。

著录项

  • 来源
    《Geotextiles and Geomembranes》 |2009年第5期|350-356|共7页
  • 作者单位

    School of Civil Engineering, Shijiazhuang Railway Institute, No.17 North 2nd-Ring East Road, Shijiazhuang, Hebei Province 050043, China;

    School of Civil Engineering, Shijiazhuang Railway Institute, No.17 North 2nd-Ring East Road, Shijiazhuang, Hebei Province 050043, China;

    School of Civil Engineering, Shijiazhuang Railway Institute, No.17 North 2nd-Ring East Road, Shijiazhuang, Hebei Province 050043, China;

    School of Civil Engineering, Shijiazhuang Railway Institute, No.17 North 2nd-Ring East Road, Shijiazhuang, Hebei Province 050043, China;

  • 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

    concrete-rigid facing; geogrid; reinforcement soil wall; field test;

    机译:刚性混凝土饰面;土工格栅加固土墙;现场试验;

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