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Mechanical characteristics plus differential settlement of CFG pile and cement-soil compacted pile about composite foundation under train load

机译:机械特性加上CFG桩和水泥土压实桩的差动沉降关于大型复合地基下的复合地基

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摘要

In recent years, the stability, safety and comfort of trains has received increased attention. The mechanical characteristics and differential settlement of the foundation are the main problems studied in high-speed railway research. The mechanical characteristics and differential settlement of the foundation are greatly affected by the ground treatment. Additionally, the effects of train load and earthquakes have a great impact. The dynamic action of the train will increase the vibration acceleration of the foundation and increase the cumulative deformation, and the earthquake action will affect the stability of the substructure. Earthquakes have an important practical significance for the dynamic analysis of the railway operation stage; therefore, considering the impact of earthquakes on the railway substructure stability has engineering significance. In this paper, finite element model of the CFG (Cement Fly-ash Gravel) pile + cement-soil compacted pile about composite foundation is established, and manual numerical incentive method is selected as the simulation principle. The mechanical characteristics and differential settlement of CFG pile + cement-soil compacted pile about composite foundation under train load are studied. The results show: under the train load, the neutral point of the side friction about CFG pile is located at nearly 7/8 of the pile length; the vertical dynamic stress-time history curves of the cement-soil compacted pile, CFG pile and soil between piles are all regular serrated shape, the vertical dynamic stress of CFG pile changes greatly, but the vertical dynamic stress of cement-soil compacted pile and soil between piles does not change much; the vertical displacement of CFG pile, cement-soil compacted pile and soil between piles change very little.
机译:近年来,列车的稳定性,安全性和舒适性已受到越来越多的关注。机械特性和地基的不均匀沉降是高速铁路的研究研究的主要问题。的机械特性和地基的不均匀沉降由地基处理很大的影响。此外,列车荷载和地震的影响有很大的影响。火车的动力作用会增加基础的振动加速度,提高累积变形,以及地震作用会影响到子结构的稳定性。地震对铁路运行阶段的动态分析的一个重要的现实意义;因此,考虑到地震对铁路下部结构稳定性的影响具有一定的工程意义。在本文中,所述CFG的有限元模型(水泥粉煤灰碎石)桩+水泥土压实桩复合地基被建立,并且手动数值激励方法被选择为模拟原理。的机械特性和CFG桩的不均匀沉降+约列车荷载下复合地基水泥土压实桩进行了研究。结果表明:列车荷载下,约CFG桩侧摩擦的中性点位于近7/8桩长的;水泥土夯实桩,CFG桩土桩之间的垂直动态应力时程曲线是所有正规锯齿形状,CFG桩的垂直动应力变化较大,但水泥土夯实桩的垂直动应力和桩间土并没有太大变化; CFG桩,水泥土挤密桩土桩之间的垂直位移变化很小。

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