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Torsional Vibration of a Single Pile in Transversely Isotropic Soil Based on Fractional Derivative Viscoelastic Model

机译:基于分数衍生粘弹性模型的横向各向同性土壤中单桩扭转振动

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A single pile in soil is modeled as a vertical circular elastic prismatic bar, and the soil around the pile is regarded as transversely isotropic medium. The relationship between stress and displacement of the soil is described by fractional derivative viscoelastic model. Ignoring the radial and vertical displacement, the torsional vibration equation of the soil is built. It is solved by using the method of separation of variables and the boundary conditions of the soil. The torsional vibration of the single pile is also obtained. The torsional complex stiffness at pile head is investigated in particular. The results indicate that anisotropic parameters and model parameters of the soil have effects on the torsional complex stiffness, and the influence rules are different with the homogeneous soil.
机译:土壤中的单桩被建模为垂直圆形弹性棱柱杆,并且桩周围的土壤被视为横向各向同性培养基。分数衍生粘弹性模型描述了土壤应力和位移之间的关系。忽略径向和垂直位移,构建了土壤的扭转振动方程。通过使用变量的分离方法和土壤的边界条件来解决。还获得了单桩的扭转振动。特别是桩头处的扭转复杂刚度。结果表明,土壤的各向异性参数和模型参数对扭转复杂刚度产生影响,影响规则与均匀土壤不同。

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