土工格室加筋对挡墙填方路基承载性的影响
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1.南昌铁路勘测设计院有限责任公司;2.江西省交通设计研究院有限责任公司;3.华东交通大学 江西省岩土工程基础设施安全与控制重点实验室

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国家自然科学基金资助项目(51868021, 52168047);江西省自然科学基金资助项目(20202BABL204051)


Influence of Geocell on Capacity of Subgrade with Retaining Walls
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    摘要:

    土工格室对一般路基的性能影响显著,但在两侧挡墙高填方填土路基中增加土工格室对路基承载性的提高程度还不明确。通过模型试验,设置无筋和三种不同加筋间距等四种工况,研究土工格室在两侧挡墙路基中的应用效果、不同层间格室和挡土墙的力学特征。试验表明:(1)加筋除了对承载力的影响显著,同时对路基初始模量有较大改善,在达到容许荷载时,其依旧能保持结构自身完整性。(2)筋材所受拉应力与深度呈反比,首层格室所受拉应力和提升速率均远大于其余层。(3)挡土墙受力呈三角形分布,于0.22H处突然增大。综合以上结论总结该结构下效益最大化的加筋方式,为工程中的类似结构提供理论支撑及设计参考。

    Abstract:

    The effect of geocell on the performance of ordinary subgrade is significant, but the degree of improvement of the bearing capacity of subgrade by adding geocell to the high fill subgrade with two side retaining walls is not clear. To explore the application effect of the geocell in this structure and Mechanical characteristics of geocells between different floors and retaining walls, three different reinforcement spacings and one unreinforced operating conditions are set to model test .The results show that: (1)in addition to the significant influence of reinforcement on bearing capacity, it also greatly improves the initial modulus of subgrade. When the allowable load is reached, it can still maintain the integrity of the structure itself. (2)The tensile stress of reinforcement is inversely proportional to the depth. The tensile stress and the lifting rate of the first layer are much greater than those of the other layers. (3) The stress distribution of retaining wall is triangular and increases suddenly at 0.22h. Based on the above conclusions, the reinforcement mode to maximize the benefit under the structure is summarized, which provides theoretical support and design reference for similar structures in the project.

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历史
  • 收稿日期:2022-05-07
  • 最后修改日期:2022-05-30
  • 录用日期:2022-06-14
  • 在线发布日期: 2023-06-21
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