史庆轩, 张锋. 高层框架-斜交网格结构协同受力性能研究[J]. 工程力学, 2020, 37(2): 44-49. DOI: 10.6052/j.issn.1000-4750.2018.01.0078
引用本文: 史庆轩, 张锋. 高层框架-斜交网格结构协同受力性能研究[J]. 工程力学, 2020, 37(2): 44-49. DOI: 10.6052/j.issn.1000-4750.2018.01.0078
SHI Qing-xuan, ZHANG Feng. STUDY ON COOPERATIVE WORK PERFORMANCE OF HIGH-RISE FRAME-DIAGRID STRUCTURES[J]. Engineering Mechanics, 2020, 37(2): 44-49. DOI: 10.6052/j.issn.1000-4750.2018.01.0078
Citation: SHI Qing-xuan, ZHANG Feng. STUDY ON COOPERATIVE WORK PERFORMANCE OF HIGH-RISE FRAME-DIAGRID STRUCTURES[J]. Engineering Mechanics, 2020, 37(2): 44-49. DOI: 10.6052/j.issn.1000-4750.2018.01.0078

高层框架-斜交网格结构协同受力性能研究

STUDY ON COOPERATIVE WORK PERFORMANCE OF HIGH-RISE FRAME-DIAGRID STRUCTURES

  • 摘要: 高层框架-斜交网格结构是由高层斜交网格结构和框架结构组成的双抗侧力体系。采用理论推导和数值模拟的方法研究了该体系处于弹性和弹塑性状态下楼层水平剪力分配规律。针对高层斜交网格结构和框架结构协同工作变形特点,提出结构体系的弹性平面简化分析模型,进一步推导出结构侧向变形和剪力计算公式,并研究了结构处于弹性阶段时的剪力分配规律;采用非线性静力推覆法对结构体系在弹塑性阶段的变形特性、刚度退化和剪力分配规律进行了研究。结果表明:高层斜交网格结构和框架结构的协同工作性能良好,结构在弹性阶段,结构刚度的特征值及荷载分布对其剪力分配影响较大;结构进入塑性阶段,斜柱刚度退化速率较快,楼层剪力存在重分配现象。

     

    Abstract: The high-rise frame-diagrid structure is a new dual system. It is composed of a high-rise diagrid structure and a frame structure. The horizontal shear-force distributions under elastic and plastic states are studied by theoretical derivation and numerical simulation. According to the characteristics of cooperative deformation of the diagrid structure and the frame structure, a simplified 2D elastic analysis model is proposed. Formulas for calculating the lateral deformation and the shear force of structures are derived. The shear distribution characteristics of the structure in the elastic state are also studied. The non-linear static Pushover method is used to calculate the structural system. The deformation characteristics, stiffness degradation and shear-force distribution in plastic stage are studied. The results show that the high-rise diagrid structure and the frame structure have good cooperative behaviors. In the elastic state, the eigenvalues of structural stiffness and the load distribution have a great influence on the shear-force distribution of the structure. In the plastic state, the stiffness of diagonal columns will degrade and the shear force will be redistributed.

     

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