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Seismic performance of steel friction connections considering direct-repair costs

机译:考虑直接修复成本,钢摩擦连接的地震性能

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摘要

This study compares seismic losses considering initial construction costs and direct-repair costs for New Zealand steel moment-resisting frame buildings with friction connections and those with extended bolted-end-plate connections. A total of 12 buildings have been designed and analysed considering both connection types, two building heights (4-storey and 12-storey), and three locations around New Zealand (Auckland, Christchurch, and Wellington). It was found that buildings with friction connections required design to a higher design ductility, yet are generally stiffer due to larger beams being required to satisfy higher connection overstrength requirements. This resulted in the frames with friction connections experiencing lower interstorey drifts on most floors but similar peak total floor accelerations, and subsequently incurring lower drift-related seismic repair losses. Frames with friction connections tended to have lower expected net-present-costs within 50years of the building being in service for shorter buildings and/or if located in regions of high seismicity. None of the frames with friction connections in Auckland showed any benefits due to the low seismicity of the region.
机译:本研究比较了考虑初始施工成本和直接维修成本的新西兰钢抗弯框架建筑的地震损失,包括摩擦连接和延伸螺栓端板连接。考虑到两种连接类型、两种建筑高度(4层和12层)以及新西兰周围的三个地点(奥克兰、基督城和惠灵顿),总共设计和分析了12栋建筑。研究发现,具有摩擦连接的建筑物要求设计具有更高的设计延性,但由于需要更大的梁来满足更高的连接超强度要求,因此通常更硬。这导致具有摩擦连接的框架在大多数楼层上经历较低的层间位移,但总楼层加速度峰值相似,随后导致较低的与位移相关的地震修复损失。对于较短的建筑物和/或位于高地震活动区域的建筑物,使用摩擦连接的框架在50年内的预期净现值成本往往较低。由于该地区的低地震活动性,奥克兰的摩擦连接框架均未显示出任何益处。

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