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Dynamic response of beams with passive tuned mass dampers.

机译:带有被动调谐质量阻尼器的梁的动态响应。

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摘要

Passive tuned mass damper (TMD) is a stand-alone vibrating system attached to a primary structure and designed to reduce vibration of the structure at selected frequency. This study focuses on the application of single or multiple TMDs on Euler-Bernoulli beams and examines their effectiveness based on free and forced vibration characteristics of the beams, i.e., the primary structures. There is a gap in the existing literature in terms of free and forced vibration analysis of beams carrying any number of concentrated elements. There are methods developed for the free vibration analysis but they are not practical due to the complex mathematical expressions. Numerical assembly method (Wu and Chou, 1999) is used to determine free vibration characteristics of beams in order to get over the drawbacks of other approaches in the literature and forced vibration response is obtained based on modal analysis approach and orthogonality condition.;The free-vibration formulations for uniform, non-uniform single-span and multi-span continuous beams carrying any number of elastically mounted masses are derived for various boundary conditions. Numerical solutions for dynamic responses of these beams subjected to impulsive, harmonic, moving and moving pulsating loads are presented. A numerical eigenvalue solution is used to obtain the modal properties of the entire beam at its fundamental and lower normal modes. The modal analysis approach allows calculatin displacement, velocity, acceleration and jerk responses at any point on the beam. The resultant dynamic responses of beams with and without TMDs are compared with each other in order to observe the performance of TMDs.;Numerical examples are given to confirm the validity and efficiency of the proposed method. Natural frequencies and mode shapes of several structures studied in literature are calculated and compared with those in existing literature to verify the accuracy of the developed algorithm. The illustrative forcing functions are considered as human-induced dynamic loads for uniform single and multiple span beams. The results demonstrate that passive TMDs are efficient in reducing the dynamic responses of beams subjected to harmonic excitations. However, passive TMDs do not show the same level of performance under non-harmonic loads. Additionally, wind load analysis is performed for a sample high mast lighting tower (HMLT) represented as a cantilever non-uniform beam in this study and the efficiency of attached TMD is analyzed. Experimental wind velocity data is used to generate the wind induced dynamic load on the HMLT. Results indicate that properly tuned passive TMDs may be an option to reduce dynamic response in wind-excited HMLTs.
机译:被动调谐质量阻尼器(TMD)是连接到主结构的独立振动系统,旨在减少结构在选定频率下的振动。这项研究的重点是在Euler-Bernoulli梁上应用单个或多个TMD,并根据梁的自由振动和强迫振动特性(即主要结构)检查其有效性。在对承载任意数量的集中元素的梁进行自由振动和强迫振动分析方面,现有文献中存在差距。已经开发出了用于自由振动分析的方法,但是由于复杂的数学表达式,它们不实用。为了克服文献中其他方法的弊端,采用数值组装方法(Wu and Chou,1999)来确定梁的自由振动特性,并基于模态分析方法和正交性条件获得了强迫振动响应。对于各种边界条件,得出了承载任意数量弹性安装质量的均匀,不均匀单跨和多跨连续梁的振动公式。提出了这些梁在脉冲,谐波,运动和运动脉动载荷下的动力响应的数值解。使用数值特征值解来获得整个光束在其基本和较低法向模态下的模态特性。模态分析方法允许在梁的任何点上钙钙蛋白位移,速度,加速度和加加速度响应。对比了带和不带TMD的梁的动态响应,以观察TMD的性能。给出了算例,验证了所提方法的有效性和有效性。计算了文献中研究的几种结构的固有频率和振型,并与现有文献进行了比较,以验证所开发算法的准确性。说明性的强迫函数被认为是人为引起的均匀的单个和多个跨度梁的动态载荷。结果表明,无源TMD可有效降低受到谐波激励的光束的动态响应。但是,在非谐波负载下,无源TMD的性能不相同。此外,在本研究中,对表示为悬臂不均匀光束的示例高桅杆照明塔(HMLT)进行风荷载分析,并分析了附着的TMD的效率。实验风速数据用于在HMLT上生成风感动载荷。结果表明,适当调谐的无源TMD可能是降低风激励HMLT中动态响应的一种选择。

著录项

  • 作者

    Ozkan, Mustafa Kemal.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Civil.
  • 学位 M.S.C.E.
  • 年度 2010
  • 页码 277 p.
  • 总页数 277
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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