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Measurement and Simulation on Consolidation Behaviour of Soft Foundation Improved with Prefabricated Vertical Drains

机译:用预制垂直排水管改善软基的固结行为的测量和仿真

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Prefabricated vertical drains (PVDs) were used in accelerating the consolidation process of a soft soil foundation in the lower reach of the Yangtze river. Field monitoring was carried out during the embankment construction. The settlement, lateral deformation and pore pressure of the soft foundation were collected. The consolidation was also predicted with a coupled mechanical and hydraulic plane strain finite element model. The results indicate that the consolidation process of soft ground followed the loading steps. The PVDs can efficiently reduce the excess pore pressure in the soft ground and shorten the consolidation period. The pore pressure in the PVD reinforced zone is less than 20.0 kPa at the end of the construction in contrast to 52.0 kPa for unimproved foundation. The excellent drainage capacity of PVDs is useful in improving the shear strength of soft ground. Deformation form of the improved foundation is mainly the settlement and the lateral displacement at embankment toe is less than 9.0 cm. Stability analysis shows that the foundation is more stable during the construction with a factor of safety more than 1.20. Research results prove the feasibility of PVD technique in improving the soft ground in the lower reaches of the Yangtze river.
机译:预制垂直漏极(PVDS)用于加速长江下游软土地基的固结过程。在堤防建设期间进行现场监测。收集软粉底的沉降,横向变形和孔隙压力。还通过耦合的机械和液压平面应变有限元模型预测了整合。结果表明软土地面的固结过程遵循装载步骤。 PVD可以有效地降低软接地中的过量孔隙压力并缩短合并期。 PVD增强区中的孔隙压力在施工结束时小于20.0kPa,与52.0kPa的未改良基础相比。 PVDS的优异排水能力可用于改善软土的剪切强度。改进的基础的变形形式主要是剩余的沉降和堤防脚趾的横向位移小于9.0厘米。稳定性分析表明,在施工期间基础更稳定,安全额度超过1.20。研究结果证明了PVD技术在长江下游改善软土地区的可行性。

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