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High-Performance Computer-Aided Optimization of Viscous Dampers for Improving the Seismic Performance of a Tall Steel Building

机译:高性能计算机辅助粘性阻尼器优化,用于提高高钢结构地震性能

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Using fluid viscous dampers (FVDs) has been demonstrated to be an effective method to improve seismic performance of new and existing buildings. In engineering applications, designs of these dampers mainly rely on trial and error, which could be repetitive and labor intensive. To improve this tedious manual process, it is beneficial to explore more formal and automated approaches that rely on recent advances in software applications for nonlinear dynamic analysis, performance-based evaluation, and workflow management and the computational power of high-performance, parallel processing computers. The optimization design procedure follows the framework of Performance Based Earthquake Engineering (PBEE) and uses an automatic tool that incorporates an optimization engine and structural analysis software: Open System for Earthquake Engineering Simulation (OpenSEES). An existing 35-story steel moment frame is selected as a case-study building for verification of this procedure. The goal of the retrofit design of FVDs is to improve the building's seismic behavior that focuses on avoiding collapse under a basic-safety, level-2 earthquake (BSE-2E). The objective of the optimization procedure is to reduce the building's total loss under a BSE-2E event and optimal damper patterns will be proposed. The efficiency of the optimization procedure will be demonstrated and compared with a manual refinement procedure.
机译:已经证明使用流体粘性阻尼器(FVDS)是改善新建和现有建筑物的地震性能的有效方法。在工程应用中,这些阻尼器的设计主要依赖于试验和错误,这可能是重复和劳动密集的。为了提高这一乏味的手动过程,探索更正式和自动化的方法是有益的,依赖于软件应用中的近期进步,基于非线性动态分析,性能的评估和工作流管理以及高性能,并行处理计算机的计算能力。优化设计程序遵循基于性能的地震工程(PBEE)的框架,并使用一种自动工具,该工具包含优化引擎和结构分析软件:用于地震工程模拟的开放系统(Opensees)。选择了现有的35层钢矩框作为案例研究建筑,用于验证此程序。 FVDS改造设计的目标是提高建筑物的地震行为,专注于避免在基本安全水平 - 2级地震(BSE-2E)下的崩溃。优化程序的目的是降低建筑物在BSE-2E事件下的总损失,并提出最佳阻尼模式。将对优化程序的效率进行说明,并与手动细化程序进行比较。

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