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Python-based computational platform to automate seismic design, nonlinear structural model construction and analysis of steel moment resisting frames

机译:基于Python的计算平台自动化地震设计,非线性结构模型构建与钢力矩抵抗框架分析

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摘要

An end-to-end computational platform is presented, which automates seismic design, nonlinear structural model construction, and response simulation (static and dynamic) of steel moment resisting frames. A modular framework is adopted along with the object-oriented programming paradigm to ensure the adaptability of the platform. The seismic design module iteratively generates code-conforming section sizes and detailing for beams, columns, and beam-column connections based on the relevant input design variables including the building configuration (e.g., the number of stories, the number of lateral-force resisting systems, and the building dimensions), loads (e.g., dead and live loads on each floor), and site conditions (mapped spectral acceleration parameters). The nonlinear model construction and analysis module takes the design results as input and produces structural models that capture flexural strength and stiffness deterioration in the frame beam-column elements, and performs pushover and response history analyses. Illustrative examples are presented to demonstrate the reliability, accuracy, and efficiency of the platform, which significantly reduces the time and effort involved in producing iterative structural designs and conducting nonlinear analyses, both of which are necessary for performance-based seismic design. Additionally, the platform can be used to create an extensive database of archetype steel moment frame buildings towards the development of analytics-driven design methods.
机译:提出了端到端的计算平台,其自动化抗震镜框架的地震设计,非线性结构模型结构和响应仿真(静态和动态)。采用模块化框架以及面向对象的编程范例,以确保平台的适应性。地震设计模块迭代地基于包括建筑配置(例如,故事的数量,横向力抵抗系统的数量的相关输入设计变量来生成Code-Comporming截面大小和详细信息,用于光束,列和光束列连接以及建筑物尺寸),负载(例如,在每个楼层上的死亡和活载),以及站点条件(映射光谱加速度参数)。非线性模型构造和分析模块将设计结果作为输入,并产生捕获框架束柱元件中的弯曲强度和刚度劣化的结构模型,并执行推送和响应历史分析。提出了一种平台的可靠性,精度和效率的说明性示例,这显着降低了产生迭代结构设计和进行非线性分析所涉及的时间和努力,这对于基于性能的地震设计来说是必要的。此外,该平台可用于为分析驱动设计方法的开发创建一个广泛的原型钢矩框架建筑数据库。

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