【24h】

Effects of Frequency Ratio on the Aerodynamic and Dynamic Properties of Bridge Decks

机译:频率比对桥梁甲板空气动力特性的影响

获取原文
获取原文并翻译 | 示例

摘要

A series of wind tunnel sectional model dynamic tests were conducted to examine the effects of torsional-to-vertical natural frequency ratio on the aerodynamic and dynamic properties of bridge decks. The natural frequency ratios tested were around 2.2:1 and 1.2:1 respectively, with the fundamental vertical natural frequency held constant for all the tests. Two 2.9 m long sectional bridge models, one simulating the cross-section of a twin-deck bridge with a gap-width to total chord ratio of about 16% and the other with zero gap-width to approximate a thin plate, were tested to determine whether the effects of frequency ratio are similar for bridge decks with different cross-section shapes. The results of wind tunnel tests suggest that for the model with zero gap-width, the flutter derivatives are relatively independent of the torsional-to-vertical frequency ratio for a relatively large range of reduced wind velocities. However, for the model with a relative large gap-width (around 16%), the flutter derivatives are evidently dependent on the frequency ratio for most of the tested reduced velocities. A comparison of the modal damping ratios also suggests that the torsional damping ratio is much more sensitive to the frequency ratio, especially for the model with a 16% gap-width. The results of this investigation show that the torsional-to-vertical natural frequency ratio is an important structural parameter, which can significantly affect wind-structure interaction.
机译:进行了一系列风洞截面模型动态测试,以检验扭转与垂直固有频率之比对桥面板的空气动力和动力特性的影响。测试的固有频率比分别约为2.2:1和1.2:1,所有测试的基本垂直固有频率均保持恒定。测试了两个2.9 m长的截面桥模型,一个模型模拟了间隙宽度与总弦比约为16%的双桥桥梁的横截面,另一个模型模拟了间隙宽度为零的近似薄板的情况。确定对于不同横截面形状的桥面板,频率比的影响是否相似。风洞试验的结果表明,对于间隙宽度为零的模型,对于较大范围的风速降低,颤振导数相对独立于扭转与垂直频率之比。但是,对于具有相对较大的间隙宽度(大约16%)的模型,对于大多数测试的降低的速度,颤动导数显然取决于频率比。模态阻尼比的比较还表明,扭转阻尼比对频率比更加敏感,尤其是对于间隙宽度为16%的模型。研究结果表明,扭转与垂直固有频率之比是重要的结构参数,可显着影响风-固相互作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号