Optimization of tuned mass dampers – minimization of potential energy of elastic deformation

IF 4 2区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Advances in Engineering Software Pub Date : 2024-08-20 DOI:10.1016/j.advengsoft.2024.103756
Jan Štěpánek, Jiří Máca
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Abstract

A tuned mass damper (TMD) optimization can be performed under various assumptions and objectives. All the variables of the optimization, such as structural model, performance index and load type affect the optimal parameters of the TMD. This paper presents a new optimization method that implements straightforward performance index and allows taking load spectral characteristics into account. Thanks to the usage of modal coordinates, the method allows fast numerical optimization of TMD attached to large or complicated structures with numerous degrees of freedom. One of the complicated tasks while optimizing TMD is the choice of a performance index. In this paper, the mean value of potential energy stored in the elastic deformation of a structure under periodic load serves as a performance index, which leads to a low numerical complexity task if the optimization is performed in the frequency domain. The new method also allows a simple inclusion of load spectral characteristics and permits TMD optimization for any loading spectral range. When applied to a structure with a single degree of freedom, this method leads to H2 optimization in the case of white noise excitation. However, it is applicable to multiple degrees of freedom structures with single or multiple TMDs and any given load. The paper also presents several examples of numerical optimization of the TMD attached to both single and multiple degrees of freedom structures under various loads, including white noise excitation, pedestrian load, and earthquake strong motion.

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调谐质量阻尼器的优化--弹性变形势能最小化
调谐质量阻尼器(TMD)的优化可以在各种假设和目标下进行。结构模型、性能指标和载荷类型等所有优化变量都会影响 TMD 的最优参数。本文介绍了一种新的优化方法,该方法采用直接的性能指标,并允许将负载频谱特征考虑在内。由于使用了模态坐标,该方法可以对连接到具有多个自由度的大型或复杂结构上的 TMD 进行快速数值优化。优化 TMD 的复杂任务之一是选择性能指标。本文将周期性载荷下结构弹性变形中存储的势能平均值作为性能指标,如果在频域中进行优化,则数值复杂度较低。新方法还允许简单地加入载荷频谱特征,并允许在任何载荷频谱范围内进行 TMD 优化。当应用于具有单自由度的结构时,该方法可在白噪声激励情况下实现 H2 优化。不过,它也适用于具有单个或多个 TMD 的多自由度结构和任何给定载荷。本文还介绍了在各种荷载(包括白噪声激励、行人荷载和地震强烈运动)下对单自由度和多自由度结构所附 TMD 进行数值优化的几个示例。
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来源期刊
Advances in Engineering Software
Advances in Engineering Software 工程技术-计算机:跨学科应用
CiteScore
7.70
自引率
4.20%
发文量
169
审稿时长
37 days
期刊介绍: The objective of this journal is to communicate recent and projected advances in computer-based engineering techniques. The fields covered include mechanical, aerospace, civil and environmental engineering, with an emphasis on research and development leading to practical problem-solving. The scope of the journal includes: • Innovative computational strategies and numerical algorithms for large-scale engineering problems • Analysis and simulation techniques and systems • Model and mesh generation • Control of the accuracy, stability and efficiency of computational process • Exploitation of new computing environments (eg distributed hetergeneous and collaborative computing) • Advanced visualization techniques, virtual environments and prototyping • Applications of AI, knowledge-based systems, computational intelligence, including fuzzy logic, neural networks and evolutionary computations • Application of object-oriented technology to engineering problems • Intelligent human computer interfaces • Design automation, multidisciplinary design and optimization • CAD, CAE and integrated process and product development systems • Quality and reliability.
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