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State-of-the-Art Review on Damping in Wood-Frame Shear Wall Structures

机译:木框架剪力墙结构阻尼的最新研究

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Wood-frame shear wall structures are commonly used for residential and nonresidential buildings. Extensive research has been performed on these structures to accurately model their behavior due to dynamic loads. Among the various system parameters that affect the response, damping has been identified as a complex energy-dissipation phenomenon that varies from the wood material level to the wood-frame shear wall and diaphragm assembly level to the full structural system level. Connections and nonstructural components and finishes also influence the damping characteristics. Although it is known from physical testing that damping behavior is highly nonlinear and dependent on the amplitude of deformation, it is almost universally represented mathematically with linear viscous models that are amplitude-independent. Given that the viscous damping model is not consistent with observed behavior, it is necessary to develop improved analytical models. A first step in developing such models is to review the available literature on the physical testing of wood-frame shear wall structures and learn how damping is manifested at all levels of the system hierarchy. To this end, a comprehensive review has been completed using literature available over the last several decades. The purpose of this paper is to provide a summary of the review, with the desired result that the paper can serve as a reference for the development of rational damping models and improved procedures for the analysis of wood-frame shear wall structures. (C) 2018 American Society of Civil Engineers.
机译:木结构剪力墙结构通常用于住宅和非住宅建筑。已经对这些结构进行了广泛的研究,以准确地模拟它们在动态载荷作用下的行为。在影响响应的各种系统参数中,阻尼已被确定为一种复杂的能量耗散现象,其变化范围从木材级别到木结构剪力墙,从膜片组件级别到整个结构系统级别。连接和非结构组件以及表面处理也会影响阻尼特性。尽管从物理测试中知道阻尼行为是高度非线性的,并且取决于变形的幅度,但是它几乎可以用与幅度无关的线性粘性模型在数学上通用表示。鉴于粘性阻尼模型与观察到的行为不一致,有必要开发改进的分析模型。开发此类模型的第一步是回顾有关木结构剪力墙结构的物理测试的现有文献,并了解阻尼在系统层次结构的各个级别如何体现。为此,已经使用过去几十年的文献完成了全面的审查。本文的目的是提供综述的摘要,其预期结果可为合理阻尼模型的开发和木结构剪力墙结构分析的改进程序提供参考。 (C)2018美国土木工程师学会。

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