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The Effect of CFG-Pile Caps and Cushion to Stability of Embankment

机译:CFG桩帽和垫子对堤防稳定性的影响

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Subgrade diseases are exposed more and more serious with raising speed of existing railway in wide range. Dynamic numerical simulation had been done to analyze the effect of CFG-pile caps and cushion in composite foundation with CFG-pile in low embankment of Beijing-Shanghai high-speed railway. Distribution rules of dynamic displacement and dynamic stress of the subgrade surface and ground surface on the cross section, attenuation rules of dynamic response and dynamic stress ratio between pile and soil on the vertical section were studied. It shows that the dynamic stress of pile and soil generally attenuates in depth and attenuation of dynamic stress ratio between pile and soil mostly concentrates in the scope of 10m beneath the ground and dynamic stress caused by train load is undertaken by the pile. Moreover the scheme of CFG-pile with no pile caps and rigid cushion scheme is superior to that of pile caps and flexible cushion scheme for enhancing dynamic stability and reducing dynamic displacement and stress in low embankment. It will be instructive to control design and construction for the low embankment in Beijing-Shanghai high-speed railway.
机译:与宽范围内的现有铁路速度升高,越来越严重地暴露了较严重的疾病。已经完成动态数值模拟,以分析CFG桩帽和垫子在京沪高速铁路低路堤中的复合地基中的效果。研究了横截面上路基表面和地面的动态位移和动态应力的分配规则,垂直截面上桩与土壤之间的动态响应和动态应力比的衰减规律。结果表明,桩和土壤的动态应力通常在桩和土壤之间的动态应力比的深度和动态应力比的衰减大多集中在10米下方的地面和火车载荷引起的动态应力的范围。此外,没有桩帽和刚性垫方案的CFG桩方案优于桩帽和柔性垫方案,以提高动态稳定性,降低低路堤动态位移和应力。控制上海高速铁路低堤防设计和建设是有益的。

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