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Dynamic behaviour of thick plates resting on Winkler foundation with fourth order element

机译:用四阶元素依赖于Winkler基础的厚板的动态行为

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This paper focuses on the study of dynamic analysis of thick plates resting on Winkler foundation. The governing equation is derived from Mindlin's theory. This study is a parametric analysis of the reflections of the thickness / span ratio, the aspect ratio and the boundary conditions on the earthquake excitations are studied. In the analysis, finite element method is used for spatial integration and the Newmark-beta method is used for the time integration. While using finite element method, a new element is used. This element is 17-noded and it's formulation is derived from using higher order displacement shape functions. C++ program is used for the analyses. Graphs are presented to help engineers in the design of thick plates subjected to earthquake excitations. It is concluded that the 17-noded finite element is used in the earthquake analysis of thick plates. It is shown that the changes in the aspect ratio are more effective than the changes in the aspect ratio. The center displacements of the reinforced concrete thick clamped plates for b/a=1, and t/a=0.2, and for b/a=2, and t/a=0.2, reached their absolute maximum values of 0.00244 mm at 3.48 s, and of 0.00444 mm at 3.48 s, respectively.
机译:本文重点研究了依赖于Winkler基金会厚板动态分析的研究。管理方程来自Mindlin的理论。该研究是研究了厚度/跨度比的反射的参数分析,研究了地震激励上的纵横比和边界条件。在分析中,有限元方法用于空间集成,纽马克-Beta方法用于时间集成。在使用有限元方法时,使用新元素。该元素为17-编码,并且它的配方来自使用高阶位移形状功能。 C ++程序用于分析。提出了图形,帮助工程师设计厚板经受地震激励的厚板。得出结论,17点点缀有限元用于厚板的地震分析。结果表明,纵横比的变化比纵横比的变化更有效。用于B / A = 1的钢筋混凝土厚夹板和T / A = 0.2,以及B / A = 2,以及T / A = 0.2的中心位移达到3.48秒的绝对最大值0.00244mm分别为0.0044毫米,3.48秒。

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