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Nonlinear Dynamic Analysis of Soft-story Light-frame Wood Buildings

机译:轻型轻木结构房屋的非线性动力分析

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Many older multi-story woodframe buildings in the United States were not designed according to the earthquake engineering principles. Most of these older buildings have a soft first story due to the existence of large garage doors or retail store window openings. These soft-story buildings are prone to large lateral movements (displacements and rotations) and even pancake collapses in the first story during earthquakes. Analyzing the stability and seismic performance of soft-story buildings that undergo large deformations require a geometric nonlinear analysis. This paper presents a new three dimensional (3D) model for nonlinear dynamic analysis of woodframe buildings under large deformations. In the proposed 3D model, the floor and roof diaphragms are modeled using a 3D two-node twelve degrees of freedom (DOF) corotational frame element. In corotational formulation, the orientation of the frame elements is updated in each modeling time step. The use of corotational formulation and 3D frame element allows the numerical model accurately captures the in-plane and out-of-plane motions of the diaphragms under large rotations. Two-node six DOFs (three translations and three rotations) link elements which represent the shear walls and wall studs are used to connect the diaphragms in a 3D space. To reduce the computational demand, shape functions are utilized in the proposed 3D model to eliminate the DOFs of the link elements from dynamic analysis. In other words, the size of the building stiffness matrix for dynamic analysis does not increase as more link elements (shear walls) are added to the structural model. An example application of the proposed 3D model for modeling a three-story building with soft first story is presented.
机译:在美国,许多较旧的多层木结构建筑不是根据地震工程原理设计的。由于存在大型车库门或零售商店的橱窗开口,大多数这些较旧的建筑物的故事比较柔和。这些柔软的建筑物易于发生较大的横向移动(位移和旋转),甚至在地震期间的第一层甚至煎饼塌陷。分析经历大变形的软层建筑物的稳定性和抗震性能需要进行几何非线性分析。本文提出了一种新的三维(3D)模型,用于对大型变形下的木结构建筑物进行非线性动力分析。在提出的3D模型中,使用3D两节点十二自由度(DOF)矫正框架元素对地板和屋顶隔膜进行建模。在比例公式化中,框架元素的方向在每个建模时间步骤中都会更新。使用比例公式和3D框架元素可以使数值模型准确地捕获大旋转情况下隔膜的平面内和平面外运动。代表剪力墙和墙钉的两节点六个自由度(三个平移和三个旋转)链接元素用于在3D空间中连接膜片。为了减少计算需求,在提出的3D模型中利用形状函数从动态分析中消除了链接元素的自由度。换句话说,随着更多的链接元素(剪力墙)被添加到结构模型中,用于动态分析的建筑物刚度矩阵的大小不会增加。提出了所提出的3D模型用于为带有软第一层故事的三层建筑建模的示例应用程序。

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