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Direct finite element method for nonlinear analysis of semi-unbounded dam-water-foundation rock systems

机译:半无界坝 - 水 - 基岩系非线性分析的直接有限元法

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摘要

A direct finite element method is presented for nonlinear earthquake analysis of interacting dam–water–foundation rock systems. The analysis procedure applies viscous damper absorbing boundaries to truncate the semi-unbounded fluid and foundation-rock domains and specifies at these boundaries effective earthquake forces determined from the design ground motion defined at a control point on the free surface. The analysis procedure is validated numerically by computing the frequency response functions and transient response of an idealized dam–water–foundation rock system and comparing with results from the substructure method. Because the analysis procedure is applicable to nonlinear systems, it allows for modeling of concrete cracking, as well as sliding and separation at construction joints, lift joints, and at concrete–rock interfaces. Implementation of the procedure is facilitated by commercial finite element software with nonlinear material models that permit modeling of viscous damper boundaries and specification of effective earthquake forces at these boundaries.
机译:提出了一种直接的有限元方法,用于相互作用的坝-水-地基岩石系统的非线性地震分析。分析程序应用粘性阻尼器吸收边界来截断半无限流体和基础岩石区域,并在这些边界处指定由在自由表面上的控制点定义的设计地面运动确定的有效地震力。通过计算理想坝-水-地基岩石系统的频率响应函数和瞬态响应,并与子结构方法的结果进行比较,可以对分析程序进行数值验证。由于分析程序适用于非线性系统,因此可以对混凝土开裂进行建模,以及在施工缝,提升缝以及混凝土-岩石界面处进行滑动和分离。商业上的有限元软件具有非线性材料模型,可以简化该程序的实施,该模型可以对粘性阻尼器边界进行建模,并在这些边界处指定有效地震力。

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