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首页> 外文期刊>Bulletin of the Seismological Society of America >Nonlinear dimensional analysis of trapezoidal valleys subjected to vertically propagating SV waves
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Nonlinear dimensional analysis of trapezoidal valleys subjected to vertically propagating SV waves

机译:垂直传播SV波的梯形谷的非线性尺寸分析

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摘要

This paper studies the seismic response of soil basins emphasizing the sensitivity of 2D dynamic response to geometric and material properties. This is accomplished through a formal dimensional analysis accounting for fully inelastic soil response thus augmenting the generalization potential of the results, and providing a novel framework for future research on the subject. It is shown that 2D valley response may be described through the following key dimensionless parameters: (1) the valley shape factor s, expressing the slope inclination; (2) the impedance ratio i, which expresses the stiffness of the soil relative to the bedrock; (3) the wavelength ratio λ _S, which is a function of soil stiffness and seismic excitation frequency; (4) the rigidity ratio v, expressing the stiffness of the soil relative to its strength; and (5) the resistance ratio r, which expresses the degree of soil nonlinearity. The effectiveness of the dimensional formulation is verified through the numerical analysis of equivalent valleys, assuming elastic and nonlinear soil response. Finally, a parametric study is conducted to gain insight on the effects of the introduced dimensionless parameters on the dynamic response of trapezoidal alleys. It is shown that decreasing the valley slope or the wavelength ratio promotes wave reflections within the wedge, thus enhancing the possibility of wave interferences and subsequently leading to 2D aggravation on the valley surface. On the other hand, the geometry-dependent parasitic vertical acceleration increases as the valley slope becomes steeper. As the degree of soil nonlinearity increases, 2D phenomena tend to become localized close to the valley edges.
机译:本文研究了盆地的地震响应,强调了二维动态响应对几何和材料特性的敏感性。这是通过对完全无弹性的土壤响应进行正式的尺寸分析来完成的,从而增加了结果的推广潜力,并为该主题的未来研究提供了新的框架。结果表明,二维谷值响应可以通过以下关键的无量纲参数来描述:(1)谷值形状因子s,表示坡度; (2)阻抗比i,表示土壤相对于基岩的刚度; (3)波长比λ_S,它是土壤刚度和地震激发频率的函数; (4)刚度比v,表示土壤相对于其强度的刚度; (5)电阻比r,表示土壤的非线性程度。假设弹性和非线性土壤响应,通过等效谷的数值分析验证了尺寸公式的有效性。最后,进行了参数研究,以了解引入的无量纲参数对梯形小巷动态响应的影响。结果表明,降低谷底斜率或波长比会促进楔形内的波反射,从而增加波干扰的可能性,并随后导致谷底表面出现二维加重。另一方面,与几何形状有关的寄生垂直加速度随谷底坡度变陡而增加。随着土壤非线性程度的增加,二维现象趋向于变得接近山谷边缘。

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