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Applicability of Nonlinear MDOF Modeling for Design

机译:非线性MDOF建模设计的适用性

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Codes, standards, and guidelines commonly used in the evaluation and rehabilitation of existing buildings recognize and allow various performance-based engineering analysis methods, but much of their focus is on nonlinear static procedures (NSPs). The NSPs codified in those documents are based on single-degree-of-freedom (SDOF) models, which are easy to understand but may not capture adequately the complex behavior of structures with multiple-degree-of-freedom (MDOF) effects. The NEHRP Consultants Joint Venture has completed a project (ATC-76-6, with results published in NIST GCR 10-917-9) to improve the practical application of NSPs and nonlinear response history analysis (NRHA) to structures with MDOF effects. The NIST GCR 10-917-9 project report summarizes both recent MDOF modeling research and current structural analysis practice as specified in codes, standards, and guidelines and as implemented by leading practitioners. The work of the project includes synthesis of available research and performance of new problem-focused studies. The primary studies compare results from NSP and NRHA for both detailed structural archetypes and simplified models. Issues addressed in ancillary studies include examination of demand parameter sensitivity to ground motion selection and scaling methods, direct determination of NSP target displacement, and practical implementation of the nonlinear analysis methods. Based on available past research and on the new studies, the project report provides guidance on selection of simple nonlinear analysis methods appropriate for design, on implementation of nonlinear analysis methods, and on incorporating uncertainty in nonlinear dynamic and nonlinear static analysis. Related to the ATC-76-6 project, this paper provides background, a summary of the work performed, and a summary of key findings and recommendations. Related papers provide more detail of the technical work performed.
机译:常用于现有建筑物的评估和康复的代码,标准和指导方针识别并允许各种基于绩效的工程分析方法,但其大部分焦点是非线性静态程序(NSP)。编码在这些文件中的NSP基于自由度(SDOF)模型,易于理解,但可能无法充分捕获具有多程度自由度(MDOF)效应的结构的复杂性行为。 Nehrp顾问合资企业已完成项目(ATC-76-6,在NIST GCR 10-917-9中发布的结果),以改善NSP和非线性响应历史分析(NRHA)与MDOF效果的结构的实际应用。 NIST的GCR 10-917-9项目报告总结了最近两个多自由度模型的研究和在法规,标准和准则规定和领先的从业人员实施的电流结构分析的做法。该项目的工作包括综合可用的研究和绩效的新问题的研究。主要研究比较NSP和NRHA的结果,适用于详细的结构原型和简化模型。辅助研究中解决的问题包括对地面运动选择和缩放方法的需求参数敏感性,直接测定NSP目标位移,以及非线性分析方法的实际实现。基于可用的过去研究和新研究,项目报告提供了有关选择适用于设计的简单非线性分析方法的指导,并在实施非线性分析方法的实施方面,以及在非线性动态和非线性静态分析中的不确定性。与ATC-76-6项目有关,本文提供了背景,执行的工作摘要,以及关键调查结果和建议的摘要。相关论文提供了更详细的技术工作。

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