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Contribution of Plasterboard Finishes to Structural Performance of Multi-storey Light Wood Frame Buildings

机译:石膏板的贡献结束于多层轻型木材框架建筑物的结构性能

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The main objective of this paper is to investigate the contribution of plasterboard finishes made of gypsum wall board (GWB) to the structural performance of multi-storey light wood frame building (LWFB) subjected to earthquake load. Four- to six-storey buildings were analysed in this study. Computer software, SAPWood, developed to analyze LWFB subjected to actual earthquake motions was used. Two cases were considered in the analyses. The first one was a reference case where all shear walls are fabricated with wood-based sheathing panels only. The second case was buildings with walls fabricated with wood-based sheathing panels plus GWB. All shear wall hysteretic properties for both cases (with and without GWB) and inter-storey (hold-down) connections were derived from detailed numerical modeling of wall sub-systems available in the SAPWood database. The buildings were subjected to a major earthquake ground motion excitation, and the ground motion was scaled until failure in the components (walls or hold-down connections) or excessive inter-storey drift was reached. Main outputs that were used as comparison between the two cases included natural period, maximum storey shear force and drift, and individual wall responses (force and deformation). Specific attention was paid to how the applied forces are distributed between the different types of wall panels i.e. wood-based and gypsum-based.
机译:本文的主要目的是调查石膏板饰面对石膏壁板(GWB)制成的贡献,以实现遭受地震载荷的多层浅木框架建筑(LWFB)的结构性能。在这项研究中分析了四大到六层建筑。使用计算机软件SAPWOOD,用于分析受到实际地震运动的LWFB。分析中考虑了两种情况。第一个是仅使用木材基护套板制造所有剪力墙的参考情况。第二种案例是建筑物,墙壁与木制的护套板加上GWB制造。所有剪切壁滞圈(带有和不使用GWB)和跨世界间连接(压紧)连接的所有剪力墙滞后性质都是从SAPWOOD数据库中可用的墙体子系统的详细数值建模导出的。将建筑物进行了一个主要的地震地面运动激励,并缩放了地面运动,直到达到了部件(墙壁或保持落下连接)或过度跨越界面漂移。用作两种情况下的比较的主要输出包括自然周期,最大叠层剪力力和漂移,以及各个墙壁响应(力和变形)。对所施力的分布方式是如何在不同类型的墙板中分布的特别关注。基于木材和基于石膏的基础。

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