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王艳巧, 李一雷, 刘康, 熊旭, 周磊, 张恒, 郑骁唐, 邓长奥. 土工袋排列方式对砂性土质边坡加固影响试验研究[J]. 岩土工程学报, 2020, 42(S2): 208-213. DOI: 10.11779/CJGE2020S2037
引用本文: 王艳巧, 李一雷, 刘康, 熊旭, 周磊, 张恒, 郑骁唐, 邓长奥. 土工袋排列方式对砂性土质边坡加固影响试验研究[J]. 岩土工程学报, 2020, 42(S2): 208-213. DOI: 10.11779/CJGE2020S2037
WANG Yan-qiao, LI Yi-lei, LIU Kang, XIONG Xu, ZHOU Lei, ZHANG Heng, ZHENG Xiao-tang, DENG Chang-ao. Experimental study on influences of inter-layered arrangements of soilbags on reinforcement of sandy soil slopes[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(S2): 208-213. DOI: 10.11779/CJGE2020S2037
Citation: WANG Yan-qiao, LI Yi-lei, LIU Kang, XIONG Xu, ZHOU Lei, ZHANG Heng, ZHENG Xiao-tang, DENG Chang-ao. Experimental study on influences of inter-layered arrangements of soilbags on reinforcement of sandy soil slopes[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(S2): 208-213. DOI: 10.11779/CJGE2020S2037

土工袋排列方式对砂性土质边坡加固影响试验研究

Experimental study on influences of inter-layered arrangements of soilbags on reinforcement of sandy soil slopes

  • 摘要: 土工袋加固边坡效果已在许多工程实际中得到了验证,但对于土工袋排列方式对边坡加固效果的影响尚缺乏系统的试验研究。鉴于此,通过室内物理模型试验,进行5种不同土工袋排列方式加固边坡的加载破坏试验,通过分析坡体破坏形态与破坏压力、土压力水平传递和竖向分布规律、加载过程中坡体水平位移变化趋势,探究土工袋的排列方式对砂性土质边坡的加固效果影响及其规律。研究结果表明:纵横层间交错排列(排列方式1)滑裂面最深、坡体承载力最大,其加固效果最好。此外,边坡加固效果与尾翼埋入坡体量多少和土工袋层间嵌固效果有关,尾翼埋入坡体越多,层内相互约束作用越强,挡墙层间嵌固作用越强,对坡体的变形约束越强,土工袋加固效果就越好。

     

    Abstract: The effectiveness of soilbags on slope reinforcement is verified in many engineering applications. However, there is no systematic experimental study on the influences of the inter-layered arrangements of soilbags on the reinforcement of soil slopes. The laboratory physical model tests on the soil slopes reinforced by soilbags with five different inter-layered arrangements are conducted. The influences of the inter-layered arrangements of soilbags on the reinforcement of soil slopes and their characteristics are investigated by analyzing the failure mode and pressure of slopes, the horizontal transmission and vertical distribution of soil pressures, and the variation tendency of the horizontal displacements during the loading process. The experimental results show that the bearing capacity and the settlement are the largest when the vertically and horizontally inter-layered stagger arrangement of soilbags (Arrangement 1) is applied. Arrangement 1 has the best reinforcement effectiveness among the five different arrangements. In addition, the longer the tail is buried in the slope, the stronger the inter-layered constraint is. The stronger inter-layered constraint causes stronger embedding effectiveness between the soilbag layers, and this effectiveness exhibits stronger deformation constraint, which induces better reinforcement effectiveness.

     

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