首页> 外文期刊>Journal of the International Association for Shell and Spatial Structures >DESIGN AND ANALYSIS OF A SELF-SUPPORTING BAMBOO ROOF STRUCTURE WITH FLEXIBLE CONNECTIONS
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DESIGN AND ANALYSIS OF A SELF-SUPPORTING BAMBOO ROOF STRUCTURE WITH FLEXIBLE CONNECTIONS

机译:具有柔性连接的自支撑竹屋顶结构的设计与分析

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The presented study investigates a mobile bamboo roof structure with flexible connections. The developed ultralight structural system built with modular space frames, tensile pantographic grids, textile joints in polyester ropes and biocomposites, is capable of supporting itself. Prefabricated hinged flexible connections (HFC), designed for the structure, allow for a deployable mechanism, free of torsional stresses in the bamboo bars. Nonlinear analysis using the finite element method (FEM) was used to determine the forces in the structure. Static loading patterns for wind loads were investigated and it was determined that the applied forces can be safely resisted by the structural members. A numerical model, physical models and full-scale prototypes were used to investigate the complex mechanical behavior of the bamboo structure. Selected design guidelines are also introduced.
机译:提出的研究调查了具有柔性连接的活动竹屋顶结构。开发的超轻结构系统由模块化的空间框架,拉伸式全景网格,聚酯绳和生物复合材料制成的纺织接缝构成,能够自我支撑。为该结构设计的预制铰接挠性连接件(HFC)允许展开的机制,消除了竹杆中的扭转应力。使用有限元方法(FEM)进行的非线性分析用于确定结构中的力。研究了风荷载的静态荷载模式,确定了结构构件可以安全地抵抗施加的力。使用数值模型,物理模型和大型原型来研究竹结构的复杂力学行为。还介绍了选定的设计准则。

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