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Performance of Cement-Fly Ash-Gravel Pile-Supported High-Speed Railway Embankments over Soft Marine Clay

机译:粉煤灰碎石桩支撑的高速铁路路堤在软质海洋黏土上的性能

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摘要

The Beijing-Tainjin high-speed railway were constructed between two major cities in China. Since part of the railway is over soft marine clay, appropriate ground improvement, cement-fly ash-gravel piles, was selected to improve the soft marine clay to meet technical requirements for the high-speed railway. This article presents the field measurements in the railway embankment project including the load distribution between soils and piles, excess pore pressure, and settlement and lateral displacement. The test results show that the stress concentration to the piles reduced the excess pore pressure effectively. The proportion of the load carried by soils was small, and thus the settlement was significantly reduced. The compression of the rigid piles contributed to less than 21% of the total settlement. The majority of the settlement was contributed by the penetration of the piles and the compression of the soft soil below the pile tips. The average compression thickness below the pile tips was 22 m, which is equivalent to one times the width of the treated area. The measured differential settlement of the embankment was approximately 3 mm.
机译:京津高铁是在中国两个主要城市之间修建的。由于铁路的一部分位于软质海洋黏土上,因此选择了适当的地面改良方法,即使用水泥粉煤灰碎石桩来改善软质海洋黏土,以满足高速铁路的技术要求。本文介绍了铁路路堤工程中的现场测量结果,包括土与桩之间的载荷分布,过大的孔隙压力以及沉降和横向位移。试验结果表明,应力集中有效降低了过大的孔隙压力。土壤所承受的负荷比例很小,因此沉降量大大减少。刚性桩的压缩作用不到总沉降的21%。大部分沉降是由于桩的穿透和桩尖下方软土的压缩所致。桩尖下方的平均压缩厚度为22 m,相当于处理区域宽度的一倍。测得的路堤差异沉降约为3 mm。

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