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Application of wind moment method on the design of multi-storey unbraced steel frames with partial and full strength connections

机译:风矩方法在多层半支撑全强度无支撑钢框架设计中的应用

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摘要

In the multi-storey unbraced steel frame, the requirements of lateral load resistance are very critical in the design. Shear wall, core wall and bracing system are commonly applied to resist the lateral loads. However in some cases, due to the architectural requirements, the frames have to be designed as unbraced. As a result, the lateral load due to wind needs to be catered by utilizing the stiffness of connections, columns and beams. The application of wind moment method on the design of unbraced frame has becoming popular due its simplicity and straight forward approach. The objective of this paper is to compare the design of unbraced frames between partial and full strength connections with column bending on major axis. The frames were designed to satisfy the ultimate limit state and service limit state based on BS5950-1:2000. The sway-deflection of the frame was limited to hT/450 for partial strength connections and hT/300 for full strength connections, where hT is the total height of the multi-storey frame. The economic aspect was presented base on the total steel weight savings of the unbraced plane frame design using both partial and full strength connections. A parametric study on a series of two bays with two, four, six, and eight storey height were done. It was concluded that the total steel weight saving for frame design with wind moment method using full strength connection was up to 21% less than the frame design using partial strength connections.
机译:在多层无支撑钢框架中,抗侧向载荷的要求在设计中非常关键。剪力墙,岩心墙和支撑系统通常用于抵抗侧向荷载。但是,在某些情况下,由于架构要求,框架必须设计为无支撑的。结果,需要利用连接,柱和梁的刚度来满足因风引起的侧向载荷。由于其简单和直接的方法,风矩方法在无支撑框架设计中的应用已变得流行。本文的目的是比较部分强度连接和全强度连接之间的无支撑框架设计,并在长轴上弯曲圆柱。框架根据BS5950-1:2000设计为满足最终极限状态和服务极限状态。对于部分强度连接,框架的摆幅偏移限制为hT / 450,对于完全强度连接,框架的摆幅偏移限制为hT / 300,其中hT是多层框架的总高度。基于使用部分和全部强度连接的无支撑平面框架设计节省的总钢重量,提出了经济方面的考虑。对一系列两个分别具有两层,四层,六层和八层高度的海湾进行了参数研究。得出的结论是,采用全强度连接的风矩法框架设计节省的钢总重量比采用部分强度连接的框架设计节省了多达21%的重量。

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