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The study of different geometrical parameter effects for single grid layers of space structure on performance level for vertical load of earthquake

机译:空间结构单网格层不同几何参数对地震竖向荷载性能水平的影响研究

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Acceptance and popularity of space structure among architectures and designers is due to reasons such as: great spans covering, magnificent architecture, extremely low weight, the ease of building process, speed in installation, quality of response to earthquake, etc. Considering that usually large population live in space structured buildings, resistance and safety of the structures against destructive factors such as earthquake is very important. In this paper, we examine the effects of different geometrical parameters such as: type and shape of support on performance level of single grid layer of space structures and their performance at different risk stages are examined based on the regulations stated in Iranian Standard for Retrofitting of Existing Buildings. Since there is no acceptance criteria in international codes defined for determination of performance level (among Iranian code) in space structures, these criteria are suggested primarily. Finally performance points and levels of these structures are obtained by illustrating the capacity curves. Nonlinear static analyses (pushover) are carried out on the selected models using SAP and ANSYS software. Performance levels and capacity spectrums are obtained by FEMA and ATC40 bylaw.
机译:空间结构在建筑和设计人员中的接受和普及是由于以下原因:大跨度,宏伟的建筑,极轻的重量,易于建造的过程,安装速度,地震响应质量等。人口居住在空间结构的建筑物中,结构对地震等破坏性因素的抵抗力和安全性非常重要。在本文中,我们研究了不同几何参数的影响,例如:支撑的类型和形状对空间结构单个网格层的性能水平的影响,并根据伊朗改造标准中的规定检查了它们在不同风险阶段的性能。现有建筑物。由于在确定空间结构性能水平的国际法规(伊朗法规中)中没有接受标准,因此主要建议使用这些标准。最后,通过说明容量曲线来获得这些结构的性能点和水平。使用SAP和ANSYS软件对所选模型进行非线性静态分析(推算)。性能水平和容量范围可通过FEMA和ATC40法规获得。

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