大跨度装配式脊杆环撑索穹顶预应力分布与结构性能研究

STUDY ON PRESTRESS DISTRIBUTION AND STRUCTURAL PERFORMANCE OF LONG-SPAN ASSEMBLED RIDGE RING CABLE DOME

  • 摘要: 为解决传统索穹顶结构张拉变形大、脊索易松弛及整体刚度低等问题,该文提出一种“刚柔并济”的新型全装配结构体系——大跨度装配式脊杆环撑索穹顶。给出结构体系组成与节点构造,提出结构等效桁架模型,开展了预应力分布理论研究。采用ANSYS有限元软件建立结构数值模型,研究了在满跨与半跨均布荷载作用下结构力学性能,分析了关键参数变化对结构力学性能影响规律。结果表明:新型结构体系具有较高承载能力及抵抗变形能力可实现装配式空间结构的大跨度发展;撑杆高度、初始预应力、结构跨度及矢跨比变化对结构力学性能影响显著,节点刚度及预应力脊杆截面积变化对结构力学性能影响较小;基于等效桁架模型,采用节点平衡法可精确计算结构初始预应力分布。

     

    Abstract: In order to solve the problems of large tensile deformation, easy notochord relaxation and, low stiffness of the traditional cable dome, proposed is a new full-assembly structure with "rigid and flexible" members, prefabricated large-span ridge tube cable dome with annular struts. The structural composition and joint construction were developed, and a structural equivalent truss model for the prestress distribution calculation was presented. The numerical model for the new structure was established by ANSYS finite element software. The structural response under the uniform load of full span and half span, and the influence of various parameters on the mechanical properties are analyzed. The results show that the new structure has higher bearing capacity and anti-deformation, which can achieve the large-span development of prefabricated spatial structures. The changes of strut height, initial prestress, structural span and, rise-span ratio have significant effects on the mechanical properties of the new structure, the influence of joint stiffness and prestressed ridge cross-sectional area on structural mechanical properties can be ignored, and the prestress distribution can be accurately calculated by using the joint balance method through an equivalent truss model.

     

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