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Some analytical results on lateral dynamic stiffness for footings supported on hysteretic soil medium

机译:滞回土介质支撑地基横向动力刚度的一些分析结果。

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The nonlinearity of the soil affects soil-structure interaction to a considerable extent. For a reliable and safe analysis of soil interaction effects on the dynamic response of structures, a more realistic and relatively straightforward method incorporating the nonlinear hysteretic nature of the underlying soil-foundation system needs to be developed. The present paper models the soil-foundation system as a single degree of freedom spring-dashpot system with nonlinear hysteresis in form of elasto-perfectly plastic behavior. Analytical results for the lateral dynamic stiffness on footing have been presented. An example study has been carried out in case of circular footings. It is shown how the analytical results can be used to get a preliminary idea of the lateral dynamic stiffness of footings on a soil medium prior to a detailed computational geo-mechanics analysis provided the static nonlinear load-deformation characteristic of the soil medium is known and can be modeled by a hysteretic elasto-plastic behavior. The corresponding results are presented in a graphical form. The results have been computed showing parametric variations with the change in the amplitude and dimensionless frequency of the non-dimensional excitation force. Analytical results are also presented for the asymptotic cases at low and very high values of dimensionless frequency parameter.
机译:土壤的非线性在很大程度上影响土壤与结构的相互作用。为了可靠,安全地分析土壤相互作用对结构动力响应的影响,需要开发一种更现实,更直接的方法,该方法应结合基础土壤-基础系统的非线性滞后特性。本文将土壤基础系统建模为具有弹性滞后塑性行为的非线性滞后的单自由度弹簧-阻尼系统。提出了脚踩侧向动力刚度的分析结果。对于圆形底座,已经进行了示例研究。结果表明,如果已知土壤介质的静态非线性载荷-变形特性,并且在进行详细的地质力学分析之前,如何将分析结果用于初步了解土壤基脚的横向动态刚度。可以通过滞后弹塑性行为来建模。相应的结果以图形形式显示。计算结果表明,参数变化随无量纲激励力的振幅和无量纲频率的变化而变化。还给出了在无量纲频率参数的低值和非常高值处的渐近情况的分析结果。

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