李吉,谢雨廷,曾鹏,等. 堤路改造工程差异沉降控制技术实施效果研究[J]. 水利水运工程学报,2023(4):12-21. doi: 10.12170/20221230002
引用本文: 李吉,谢雨廷,曾鹏,等. 堤路改造工程差异沉降控制技术实施效果研究[J]. 水利水运工程学报,2023(4):12-21. doi: 10.12170/20221230002
(LI Ji, XIE Yuting, ZENG Peng, et al. Study on the implementation effect of differential settlement control technology in embankment widening project[J]. Hydro-Science and Engineering, 2023(4): 12-21. (in Chinese)). doi: 10.12170/20221230002
Citation: (LI Ji, XIE Yuting, ZENG Peng, et al. Study on the implementation effect of differential settlement control technology in embankment widening project[J]. Hydro-Science and Engineering, 2023(4): 12-21. (in Chinese)). doi: 10.12170/20221230002

堤路改造工程差异沉降控制技术实施效果研究

Study on the implementation effect of differential settlement control technology in embankment widening project

  • 摘要: 针对堤路改造工程中面临的差异沉降控制等难题,以南京市江北新区滨江堤防道路加宽改造工程为依托,根据堤防下部地质条件与工程建设特点选取典型断面进行数值计算模拟,开展天然堆载、台阶开挖联合土工格栅处理和深层水泥搅拌桩(DCM)处理3种方案的分析对比研究。结合数值计算结果,采用上部结合面处置联合下部地基处理的差异沉降控制技术,对软土地基进行深层水泥搅拌桩处理、在新老堤结合处进行台阶开挖联合土工格栅与锥探灌浆等方式相结合的措施进行加固处理。通过现场监测分析断面沉降、孔隙水压力与水平位移等的发展规律,验证数值模型的合理性,并评估该处理方案在实际堤路改造工程中的差异沉降控制效果。结果表明,采用上部结合面处置联合下部地基处理的试验断面路中与右路肩工后剩余沉降分别为16和20 mm,二者差异沉降均保持在4 mm以下。这验证了该技术对堤路改造工程新老堤协调变形的控制效果,可为后续滨江堤路改造工程差异沉降控制提供借鉴。

     

    Abstract: The construction of the embankment-road widening project experiences challenges, such as differential settlement control. To handle the difficulties, the computational research was conducted to examine the waterfront embankment-road combination project in Jiangbei District, Nanjing. Based on the geological and engineering features, the research was carried out to investigate the three working conditions, known as the natural pile load, step excavation combined with geogrid treatment, and deep cement mixing (DCM) pile treatment. According to the quantitative results, a combination of cement-soil mixing pilecone and probe grouting and geogrid treatment, as well as the step excavation treatment, was used at the stage of the combination of old and new embankments based on data analysis so that the differential settlement could be controlled. The reasonableness of the numerical model was verified by carrying out field monitoring work at the typical section and analyzing the settlement, pore water pressure, and horizontal displacement indexes. Additionally, the actual differential settlement control effect of this design scheme in the embankment-road combination project was evaluated. The results show that the remaining settlement after work in the middle and right shoulders under this design scheme is 16 and 20 mm, respectively, and the differential settlement of the two is below 4 mm. The research indicates that this technique is effective for the coordinated deformation control of the old and new embankments in the project. The approach can guide further treatments of soft soil roadbeds in subsequent riverbank road combination projects.

     

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