首页> 外文期刊>Journal of Engineering Mechanics >Effect of the Number of Cross-Tie Lines on the In-Plane Stiffness and Modal Behavior Classification of Orthogonal Cable Networks with Multiple Lines of Transverse Flexible Cross-Ties
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Effect of the Number of Cross-Tie Lines on the In-Plane Stiffness and Modal Behavior Classification of Orthogonal Cable Networks with Multiple Lines of Transverse Flexible Cross-Ties

机译:交叉扎带数量对多行横向柔性扎带正交电缆网络的面内刚度和模态行为分类的影响

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Using cross-ties to connect a vulnerable cable with its neighbor(s) and forming a cable network is a common countermeasure to suppress bridge stay cable vibrations. An effective design of cross-tie solution should provide an optimum combination of cross-tie installation location, stiffness, and number of cross-tie lines to maximize the network in-plane frequency and structural damping while minimizing the number of excited local modes. However, the mechanics associated with cable networks is not as simple as their geometrical appearance. In particular, the addition of an extra line of cross-ties to an existing cable network would considerably increase the complexity of its structural behavior. While the effects of cross-tie position and stiffness on network response have been investigated in some existing studies, that associated with the number of cross-tie lines is scarce. For better understanding of how the dynamic behavior of a group of cables would be influenced when interconnected by different number of cross-tie lines, the current study proposes an analytical model of cable networks consisting of two parallel main cables interconnected by multiple lines of flexible transverse cross-ties. A new parameter, the degree of mode localization (DML), is introduced to quantitatively evaluate the global nature of a network mode. The in-plane modal responses of two cables when interconnected respectively by one, two, and three lines of cross-ties are analyzed and compared. A parametric study is conducted to assess the impact of various system properties on the in-plane frequency and local mode excitation of networks containing different number of cross-tie lines.
机译:使用交叉扎带将易损电缆与其相邻电缆连接并形成电缆网络是抑制桥撑电缆振动的常见对策。有效的交叉扎带解决方案设计应提供交叉扎带安装位置,刚度和交叉扎带线数量的最佳组合,以最大化网络平面内频率和结构阻尼,同时最小化受激局部模式的数量。但是,与电缆网络相关的机制并不像其几何外观那么简单。特别是,在现有的电缆网络上增加一条交叉线会大大增加其结构行为的复杂性。尽管在一些现有研究中已经研究了交叉结位置和刚度对网络响应的影响,但与交叉结线数量相关的影响却很少。为了更好地了解当通过不同数量的交叉扎带线互连时,一组电缆的动态行为将受到怎样的影响,本研究提出了一种电缆网络的分析模型,该模型由两条平行的主电缆组成,这些电缆由多条柔性横向电缆互连交叉关系。引入了一个新参数,即模式本地化程度(DML),以定量评估网络模式的全局性质。分析并比较了分别由一,二和三根交叉线互连的两条电缆的平面内模态响应。进行了参数研究,以评估各种系统特性对包含不同数量的交叉连接线的网络的面内频率和局部模式激励的影响。

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