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首页> 外文期刊>Journal of structural engineering >Performance-Based Seismic Design of Midrise Woodframe Buildings
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Performance-Based Seismic Design of Midrise Woodframe Buildings

机译:基于性能的中层木结构建筑抗震设计

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The understanding of, and ability to predict, the seismic behavior of woodframe structures has improved immensely in the last 10 years. Two notable projects occurred in succession, the Consortium of Universities for Research in Earthquake Engineering (CUREE) and California Institute of Technology (Caltech) CUREE-Caltech Woodframe Project, and the Network for Earthquake Engineering Simulation (NEES) NEESWood Project, which provided greater understanding, improved analytical modeling, and advances in force- and performance-based seismic design (PBSD) of woodframe buildings, respectively. The NEESWood project focused on the development of a PBSD philosophy (and procedures) for midrise woodframe buildings and included full-scale system-level validation. To date, the complete design procedure has not been systematically explained, which serves as the impetus for this paper. While the method was shown to be quite viable, some challenges remain, including identifying a format that would facilitate widespread adoption and use by engineers. Thus, this paper examines the progress, current state, and challenges for PBSD of midrise woodframe buildings.
机译:在过去的十年中,对木结构结构的地震行为的理解和预测能力得到了极大的提高。相继发生了两个著名的项目,即地震工程大学联合体(CUREE)和加利福尼亚理工学院(Caltech)CUREE-Caltech木结构项目,以及地震工程仿真网络(NEES)NEESWood项目,这些项目提供了更多的理解,改进的分析模型,以及木结构建筑物基于力和性能的抗震设计(PBSD)的进步。 NEESWood项目专注于为中层木结构建筑开发PBSD原理(和程序),并包括全面的系统级验证。迄今为止,尚未对完整的设计程序进行系统地解释,这是本文的动力。尽管该方法非常可行,但仍然存在一些挑战,包括确定一种格式,以方便工程师广泛采用和使用。因此,本文研究了中层木结构建筑的PBSD的进展,现状和挑战。

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