Strength Calculation of the Coupling of the Floor Slab and the Monolithic Reinforced Concrete Frame Column by the Finite Element Method

P. P. Gaidzhurov, V. Volodin
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引用次数: 1

Abstract

   This study aims at developing the concept of fragmentation of the frame to assess the load-bearing capacity of the floors.   As a rule, a frame-rod design scheme is used under the finite elementmodeling of high-rise buildings made of monolithic reinforced concrete. Numerical experiments using volume-rod and volume-plate models of a repeating structural fragment were performed on a test example of a six-span three-storey monolithic reinforced concrete frame. Practical recommendations have been developed for the refined strength calcula-tion of the floors of monolithic reinforced concrete frames of multistorey buildings.   Materials and Methods. Computational experiments were performed using the ANSYS Mechanical software package, in which the finite element method was implemented in the form of a displacement method. A plate-rod ensemble of finite elements was used to simulate the stress-strain state of a monolithic reinforced concrete frame. The refined calculation of the coupling zone of the floor slab and column under static loading was performed using solid, beam, truss and plate elements.   Results. An engineering technique has been developed for numerical analysis of the stress-strain state of the coupling of the floor and the column of the reinforced concrete monolithic frame under static loading. The most accurate result was provided by a finite element model constructed using beam finite elements as reinforcing rods.   Discussion and Conclusions. The developed technique of numerical modeling of the coupling of the floor and the column made it possible to estimate the real strength margin of this node, taking into account the real geometry of reinforcing grids, as well as to clarify the bearing capacity of a monolithic reinforced concrete frame under various loading scenarios.
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楼板与整体钢筋混凝土框架柱耦合强度的有限元计算
本研究旨在发展框架破碎的概念,以评估楼板的承重能力。在整体钢筋混凝土高层建筑有限元建模中,一般采用框架杆设计方案。采用重复结构破片的体积-杆模型和体积-板模型,对六跨三层钢筋混凝土整体框架进行了数值试验。对多层建筑整体钢筋混凝土框架楼板的精细强度计算提出了实用建议。材料与方法。利用ANSYS机械软件进行了计算实验,其中有限元方法以位移法的形式实现。采用板杆组合有限元法模拟钢筋混凝土整体框架的应力-应变状态。采用实体单元、梁单元、桁架单元和板单元对静荷载作用下楼板与柱的耦合区进行了精细化计算。结果。本文提出了一种静力荷载作用下钢筋混凝土整体框架楼板-柱耦合应力-应变状态的数值分析方法。采用梁有限元作为加固杆构建的有限元模型提供了最准确的结果。讨论和结论。楼板和柱耦合的数值模拟技术的发展使得估计该节点的实际强度裕度成为可能,同时考虑到钢筋网格的实际几何形状,以及澄清整体钢筋混凝土框架在各种荷载情景下的承载能力。
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