石灰处治软土技术在城市轨道交通工程中的应用与实践

Application and Practice of Lime Treatment Technology for Soft Soil in Urban Rail Transit Engineering

  • 摘要:
    目的 石灰处治法是滨海地区城市轨道交通建设中用于提升软土路基承载能力和长期稳定性的常用方法,但经石灰处治后的软土路基存在压实困难、力学性能变化大等问题。因此,需要研究石灰掺量、含水率、压实度、龄期等关键因素对软土路基力学性能的影响机制,探究经石灰处治后软土路基在碾压及列车荷载下的应力扩散特性。
    方法 以我国东南部某滨海地区城市轨道交通建设项目为案例,对石灰改性软土开展多维度研究。通过正交试验,分析了石灰掺量、含水率、压实度和龄期4个关键因素对软土路基力学性能的影响。采用成分分析、XRD(X射线衍射)、XRF(X射线荧光光谱)与SEM(扫描电子显微镜)微观测试等技术,明确了软土路基的微结构演化机制,研究了石灰处治技术对软土路基力学性能的作用机理。利用土压力盒,记录了现场监测碾压过程中的应力分布情况,分析了改性土体在列车荷载模拟条件下的应力扩散行为。
    结果及结论 石灰处治软土路基在振动碾压两遍后,微观结构重构,路基土体深度10~25 cm范围内形成了高模量“密实层”,从而对压路机的激振力及列车竖向荷载产生明显扩散效应。该效应导致激振力沿土体深度方向衰减速率增加,路基土体深度25 cm以下范围内应力减小,进而出现石灰处治软土路基下层压实度低的现象。

     

    Abstract:
    Objective The lime treatment method is a commonly used approach in urban rail transit construction in coastal areas, aiming to enhance the bearing capacity and long-term stability of soft soil subgrades. However, lime-treated soft soil subgrades present problems such as difficulties in compaction and significant variations in mechanical properties. Therefore, it is necessary to investigate the influencing mechanisms of key factors such as lime content, moisture content, degree of compaction, and curing age on the mechanical properties of soft soil subgrades, and to explore the stress diffusion characteristics of lime-treated soft soil subgrades under rolling compaction and train loads.
    Method Taking a coastal area urban rail transit construction project in southeastern China as a case study, a multi-dimensional investigation of lime-modified soft soil is carried out. Through orthogonal experiments, the effects of four key factors-lime content, moisture content, degree of compaction, and curing age-on the mechanical properties of soft soil subgrades are analyzed. Microstructural testing techniques, including compositional analysis, XRD (X-ray diffraction), XRF (X-ray fluorescence), and SEM (scanning electron microscopy), are employed to clarify the microstructural evolution mechanism of the soft soil subgrade and study the mechanism by which lime treatment affects its mechanical properties. Using earth pressure cells, the stress distribution during field rolling compaction is recorded, and the stress diffusion behavior of the modified soil under simulated train loading conditions is analyzed.
    Result & Conclusion  After two passes of vibratory rolling compaction on the lime-treated soft soil subgrade, its microstructure is reconstructed, forming a high-modulus 'densified layer' at a depth of 10–25 cm in the subgrade soil. This results in a significant diffusion effect on the excitation force of the roller and the vertical load of trains. The effect increases the attenuation rate of the excitation force along the depth of the soil, leading to reduced stress in the subgrade soil below a depth of 25 cm, and consequently resulting in a low-degree compaction for the lower layer of the lime-treated soft-soil subgrade.

     

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