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Hybrid-Mixed Stress Finite Element Models for the Dynamic Analysis of Reinforced Concrete Frame Structures

机译:钢筋混凝土框架结构动力分析的混合混合应力有限元模型

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This communication presents a hybrid-mixed stress model for the physically non linear dynamic analysis of concrete structures [3]. In this model, both the stress and the displacement fields are approximated in the domain of each element. The displacements along the static boundary are also independently approximated. Orthonormal Legendre polynomials are used as approximation space functions. The use of these functions enables the use of analytical closed form solutions for the computation of all elastic structural operators and leads to the development of very effective p-refinement procedures. To model the concrete physically non linear behaviour it is adopted the damage model introduced by Mazars [18]. To validate and demonstrate the potential of the model, several numerical examples are presented and discussed [2], in which displacement conventional finite elements (CFE) are compared with hybrid-mixed stress models. A mixed formulation is used to develop a higher-order incremental method for time integration. The displacement, the velocity and optionally the acceleration fields are independently approximated using hierarchical orthonormal Legendre polynomial bases [12]. The accuracy and the efficiency of this technique are assessed by comparing the obtained results with those provided by the classical Newmark method [21] in nonlinear dynamic analysis [20].
机译:这种交流为混凝土结构的物理非线性动力分析提供了一种混合混合应力模型[3]。在该模型中,应力场和位移场都在每个单元的域中近似。沿着静态边界的位移也被独立地近似。正交勒让德多项式被用作近似空间函数。这些功能的使用使得可以使用解析闭合形式的解决方案来计算所有弹性结构算子,并导致开发出非常有效的p精炼程序。为了模拟混凝土的物理非线性行为,采用了马扎斯[18]引入的损伤模型。为了验证和证明该模型的潜力,提出并讨论了几个数值示例[2],其中将位移常规有限元(​​CFE)与混合混合应力模型进行了比较。使用混合公式来开发用于时间积分的高阶增量方法。位移,速度和可选的加速度场可以使用正交正交的勒让德多项式基数[12]独立估计。通过将获得的结果与经典的Newmark方法[21]在非线性动力分析[20]中提供的结果进行比较,可以评估该技术的准确性和效率。

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