摘要
为系统研究带边框组合柱剪力墙组合结构的抗震性能,基于分层壳单元与非线性纤维梁单元,在ABAQUS软件中进行用户材料模型子程序二次开发。用分层壳单元模拟剪力墙,纤维梁单元模拟外围组合框架,分别对钢管混凝土组合框架、带钢管混凝土边柱及型钢混凝土边柱的组合剪力墙进行低周往复加载试验数值模拟。计算、试验结果总体吻合较好。在此基础上,对比分析该类组合剪力墙滞回性能、受力特征及破坏特征,数值模拟获得墙板在典型时刻的裂缝分布等与实测结果接近。研究表明,采用分层壳单元与纤维梁单元能较准确、有效模拟带边框柱组合剪力墙体系的滞回性能,亦能较好描述剪力墙裂缝发展情况。该方法可为实现高层建筑钢与混凝土混合结构体系抗震性能有效、准确的数值模拟分析提供参考。
Abstract
The mixed structural system with steel and concrete composite columns and reinforced concrete (RC) shear walls exhibit excellent mechanical behavior. In order to study the seismic performance of the composite structure with RC shear walls and composite frames, the secondary development in ABAQUS was performed to achieve the user materials model using the user subroutine based on the layered shell element and nonlinear fiber beam element. The RC shear walls and composite frames were simulated by layered shell element and fiber beam element, respectively. The numerical simulation was carried out to study the cyclic performance of composite frames with concrete-filled steel tubular(CFST) columns, the mixed structures with CFST columns and steel reinforced concrete (SRC) columns and RC shear walls, respectively. The results obtained from the calculation are in good agreement with those from the experiment. The hysteresis behavior character and failure modes of the composite shear walls were analyzed and compared between test and simulation, and it was shown that the tested typical crack distribution of the walls are similar with the numerical results. The research shows that the layered shell element and fiber beam element can simulate hysteretic behavior of the composite shear walls more accurately and effectively, and it can describe the development of shear crack reasonably. The proposed approach in this paper is reference to simulate the seismic behavior of highrise buildings with steel and concrete mixed structural system effectively and accurately.
关键词
分层壳单元 /
纤维梁单元 /
组合剪力墙 /
组合结构 /
滞回性能 /
数值模拟
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Key words
layered shell element /
fiber beam element /
composite shear wall /
composite structure /
hysteretic behavior /
numerical simulation
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王文达;杨全全;李华伟.
基于分层壳单元与纤维梁单元组合剪力墙滞回性能分析[J]. 振动与冲击, 2014, 33(16): 142-149
WANG Wen-da;YANG Quan-quan;LI Hua-wei.
Hysteresis behavior analysis of the composite shear walls based on layered shell element and fiber beam element[J]. Journal of Vibration and Shock, 2014, 33(16): 142-149
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脚注
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