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Experimental seismic behavior of a five-storey double-midply wood shear wall in a full scale building

机译:五层双层中层木剪力墙在完整建筑中的实验抗震性能

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In July 2009, a full-scale six-storey platform wood frame apartment building was subjected to a series of earthquakes at the world’s largest shake table in Miki, Japan. Two double-midply shear wall stacks were installed in the building from the first storey through to the fifth storey. A continuous anchor tie-down system (ATS) was used to prevent overturning and allow the shear walls to develop their full lateral load capacities. This paper focuses on the behavior of the stacked double-midply shear wall in a full-scale midrise building during a series of triaxial shakes scaled for the city of Los Angeles, California. The stacked midply shear wall achieved a maximum interstorey deformation of 40.4 mm (equivalent to 1.64% drift). The uplift forces measured at the bottom storey of the stacked wall exceeded 760 kN, indicating the need for substantial tie-down systems for this type of wall when utilized in a midrise platform wood frame building.
机译:2009年7月,一栋六层高的平台式木结构公寓楼在日本三木的世界最大摇床上遭受了一系列地震。从第一层到第五层,在建筑物中安装了两个双中层剪力墙堆栈。连续锚固系紧系统(ATS)用于防止倾覆并允许剪力墙发挥其全部侧向承载能力。本文重点研究了在加利福尼亚州洛杉矶市进行的一系列三轴摇动过程中,全尺寸中层建筑中的双层中层剪力墙的行为。堆叠的中层剪力墙实现了最大层间变形40.4毫米(相当于1.64%的漂移)。在叠层墙的底部楼层测得的上拉力超过760 kN,这表明在中层平台木结构建筑中使用这种类型的墙时,需要使用牢固的系紧系统。

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