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Performance evaluation of road embankment constructed using lightweight soils on an unimproved soft soil layer

机译:未改良软土层上轻质土路基路堤性能评价

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摘要

This study was conducted to determine the performance of lightweight air-mixed soil (LWS) for expanded road construction for a short-term period without any soft ground improvement. The unconfined compression strength and capillary rise of lightweight soil and the settlement of the soft ground were measured. The unconfined compression strengths of the samples cured at the site for 1 or 5 months all satisfied the required target strength of 500 kPa. However, the homogeneity of construction was not verified because the values of strength depended on the sampling location. In addition, the strength difference between the laboratory and site samples was found to be approximately 19%, and thus, it should be considered for mixing design. The capillary rise was approximately 20 cm for 70 h because of the numerous tiny pores inside the lightweight soil. This phenomenon changes the density of the LWS. The relationship between the settlement time and the settlement of the soft ground underneath the expanded embankment was estimated by using the monitored data and back analysis. The current average consolidation ratio and the final settlement after 120 months were estimated to be approximately 32% and 4.5 cm, respectively. This settlement is much less than the allowable settlement of 10 cm. Consequently, the LWS used in this site was successfully applied to reduce settlement and ensure stability.
机译:进行这项研究是为了确定轻质空气混合土(LWS)在短期内扩展道路施工而没有任何软土地基改善的性能。测量了轻质土的无侧限抗压强度和毛细上升以及软土地基的沉降。在现场固化1或5个月的样品的无限制抗压强度均满足500 kPa的所需目标强度。但是,由于强度值取决于采样位置,因此未验证构造的均质性。另外,发现实验室样品和现场样品之间的强度差约为19%,因此,在进行混合设计时应考虑该强度差。由于轻质土壤内部有许多小孔,因此毛细管上升约70个小时(20厘米)。这种现象改变了LWS的密度。通过监测数据和反演分析,估算了沉降时间与膨胀路堤下面软土地基沉降之间的关系。目前的平均固结率和120个月后的最终沉降估计分别约为32%和4.5厘米。此沉降远小于允许的10厘米沉降。因此,成功使用了该站点中使用的LWS来减少沉降并确保稳定性。

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