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首页> 外文期刊>International journal of structural stability and dynamics >Influence of member geometric imperfection on geometrically nonlinear buckling and seismic performance of suspen-dome structures
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Influence of member geometric imperfection on geometrically nonlinear buckling and seismic performance of suspen-dome structures

机译:构件几何缺陷对悬臂穹顶几何非线性屈曲和抗震性能的影响

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This paper focuses on the effect of member geometric imperfection on nonlinear geometrically buckling and seismic performance of a new style of space steel structure, suspen-dome, which is composed of a reticulated shell and cable-strut system. By supposing the initial curvature of members as half-wave sinusoids, a stiffness equation of imperfect truss elements is derived for the struts, while that of imperfect beam elements is derived for the reticulated shell members. The proposed imperfect elements are implanted into ANSYS finite element program. Three numerical examples are employed to validate the proposed imperfect elements and analysis method. An ellipsoidal suspen-dome of Changzhou gymnasium is taken as an example. The results show that the imperfection value has relatively great influence on the structural stiffness. With the increase of member imperfection, the critical load decreases in a basically linear way. Under different prestress states, the relation curves between the critical load and imperfection are basically parallel. The nonlinear seismic analysis results show that when imperfection is included, the initial state responses are different, namely, the seismic displacement increases while the stress in rods and cables decreases. The proposed imperfection analysis method can be widely used in not only suspen-dome structures, but also other kinds of prestressed space grid structures. In this way, the influence of member imperfection on structural buckling and seismic performance can be estimated.
机译:本文着重研究构件几何缺陷对新型空间钢结构suspen-dome的非线性几何屈曲和抗震性能的影响,该结构由网壳和电缆-支撑系统组成。通过将构件的初始曲率假定为半波正弦曲线,推导出了不完善的桁架单元的刚度方程,而推导出了网状壳构件的不完全梁单元的刚度方程。所提出的不完美元素被植入到ANSYS有限元程序中。通过三个数值例子验证了所提出的不完善要素和分析方法。以常州体育馆的一个椭圆形悬架为例。结果表明,缺陷值对结构刚度影响较大。随着构件缺陷的增加,临界载荷以基本上线性的方式减小。在不同的预应力状态下,临界载荷与缺陷之间的关系曲线基本平行。非线性地震分析结果表明,当包含缺陷时,初始状态响应是不同的,即地震位移增加而杆和缆索中的应力减小。所提出的缺陷分析方法不仅可以广泛应用于悬空穹顶结构,还可以广泛应用于其他类型的预应力空间网格结构。这样,可以估算出构件缺陷对结构屈曲和抗震性能的影响。

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