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Development of Winkler model for static and dynamic response of caisson foundations with soil and interface nonlinearities

机译:土壤和界面非线性沉箱基础静态和动态响应的Winkler模型的开发

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As an extension of the elastic multi-spring model developed by the authors in a companion paper [Gerolymos N, Gazetas G. Winkler model for lateral response of rigid caisson foundations in linear soil. Soil Dyn Earthq Eng; 2005 (submitted companion paper).], this paper develops a nonlinear Winkler-spring method for the static, cyclic, and dynamic response of caisson foundations. The nonlinear soil reactions along the circumference and on the base of the caisson are modeled realistically by using suitable couple translational and rotational nonlinear interaction springs and dashpots, which can realistically (even if approximately) model such effects as separation and slippage at the caisson-soil interface, uplift of the caisson base, radiation damping, stiffness and strength degradation with large number of cycles. The method is implemented in a new finite difference time-domain code, NL-CAISSON. An efficient numerical methodology is also developed for calibrating the model parameters using a variety of experimental and analytical data. The necessity for the proposed model arises from the difficulty to predict the large-amplitude dynamic response of caissons up to failure, statically or dynamically. In a subsequent companion paper [Gerolymos N, Gazetas G. Static and dynamic response of massive caisson foundations with soil and interface nonlinearities—validation and results. Soil Dyn Earthq Eng; 2005 (submitted companion paper).], the model is validated against in situ medium-scale static load tests and results of 3D finite element analysis. It is then used to analyse the dynamic response of a laterally loaded caisson considering soil and interface nonlinearities.
机译:作为由作者在伴侣纸上开发的弹性多弹簧模型的延伸[Gerolymos N,Gazetas G. Winkler模型用于线性土壤中刚性沉箱基础的突出响应。土壤土地QENG; 2005年(提交的伴侣纸)。],本文开发了用于沉箱基础的静态,循环和动态响应的非线性Winkler-Spring方法。沿圆周和沉箱底部的非线性土壤反应通过使用合适的夫妇平移和旋转非线性相互作用弹簧和小毛皮和Dashpots进行设计,可以确地(即使大致)模拟沉箱土壤中的分离和滑动的效果界面,张开的沉箱底座,辐射阻尼,刚度和强度降解大量循环。该方法是在新的有限差分时间域代码,NL-caisson中实现的。还开发了一种有效的数值方法,用于使用各种实验和分析数据校准模型参数。所提出的模型的必要性源于难以预测静态或动态地失效的大幅度动态响应。在随后的伴随论文中[Gerolymos N,Gazetas G.具有土壤和界面非线性验证和结果的大规模沉箱基础的静态和动态响应。土壤土地QENG; 2005年(提交的伴侣纸)。],该模型用于验证原位中型静态载荷测试和3D有限元分析结果。然后用于考虑土壤和界面非线性的横向装载的沉箱的动态响应。

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