首页> 外文期刊>International journal of computational methods >Computationally Efficient and Robust Nonlinear 3D Cyclic Modeling of RC Structures Through a Hybrid Finite Element Model (HYMOD)
【24h】

Computationally Efficient and Robust Nonlinear 3D Cyclic Modeling of RC Structures Through a Hybrid Finite Element Model (HYMOD)

机译:通过混合有限元模型(Hymod)计算rc结构的计算上高效且鲁棒的非线性3D循环建模

获取原文
获取原文并翻译 | 示例
       

摘要

A computationally efficient and robust simulation method is presented in this work, for the cyclic modeling of reinforced concrete (RC) structures. The proposed hybrid modeling (HYMOD) approach alleviates numerical limitations regarding the excessive computational cost during the cyclic analysis and provides a tool for the detailed simulation of the 3D cyclic nonlinear behavior of full-scale RC structures. The simplified HYMOD approach is integrated in this work with a computationally efficient cyclic concrete material model so as to investigate its numerical performance under extreme cyclic loading conditions. The proposed approach adopts a hybrid modeling concept that combines hexahedral and beam-column finite elements (FEs), in which the coupling between them is achieved through the implementation of kinematic constraints. A parametric investigation is performed through the use of the Del Toro Rivera frame joint and two RC frames with a shear wall. The proposed modeling method managed to decrease the computational cost in all numerical tests performed in this work, while it induced additional numerical stability during the cyclic analysis, in which the required number of internal iterations per displacement increment was found to be always smaller compared with the unreduced (hexahedral) model. The HYMOD provides for the first time with the required 3D detailed FE solution tools in order to simulate the nonlinear cyclic response of full-scale RC structures without hindering the numerical accuracy of the derived model nor the need of developing computationally expensive models that practically cannot be solved through the use of standard computer systems.
机译:在这项工作中提出了一种计算上高效且稳健的仿真方法,用于钢筋混凝土(RC)结构的循环建模。所提出的混合建模(Hymod)方法减轻了在循环分析期间有关过度计算成本的数值限制,并提供了用于满量程RC结构的3D循环非线性行为的详细仿真的工具。简化的Hymod方法在这方面与计算上有效的循环混凝土材料模型集成在一起,以便在极端循环负载条件下探讨其数值性能。所提出的方法采用混合建模概念,其结合了六面对角和梁柱有限元(FES),其中通过实施运动约束来实现它们之间的耦合。通过使用Del Toro Rivera框架关节和带有剪切墙的两个RC框架进行参数调查。所提出的建模方法管理在本作工作中执行的所有数值测试中的计算成本,而在循环分析期间诱导额外的数值稳定性,其中发现每个位移增量的所需数量的内部迭代速度总是比较较小未发出的(六型)模型。 Hymod首次提供所需的3D详细的FE解决方案工具,以便模拟满量程RC结构的非线性循环响应,而不会阻碍推导模型的数值准确性,也不需要开发几乎不可能的计算昂贵的模型通过使用标准计算机系统解决。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号