首页> 外文会议>Wind engineering for natural hazards: modeling, simulation, and mitigation of windstory impact on critical infrastructure >Bottom Plate Slope Effects on Aerodynamic Behaviour of Hexagonal Cross-Section Bridge Deck
【24h】

Bottom Plate Slope Effects on Aerodynamic Behaviour of Hexagonal Cross-Section Bridge Deck

机译:底板斜率对六角形断面桥面板气动性能的影响

获取原文
获取原文并翻译 | 示例

摘要

Long span bridges exhibit various aeroelastic phenomena. The shape of the deck plays an important role to govern the aerodynamic stability against these aeroelastic phenomena. A pentagonal shaped bridge deck has an improved aerodynamic behavior and thus, this has been applied for a number of practical bridges. The advantage of using this type of deck is that this doesn't require additional devices like fairings. Flow on the top deck is controlled by placing a curb on the top deck each side, which is known as Separation Interference Method (SIM), where flow on the bottom deck is controlled by the bottom plate web slope. In the previous researches, detailed investigations have already been carried out on this kind of deck shape, which show their efficiency against aerodynamic instability of the bridge. Recently, a number of constructed bridges have been shaped as hexagon deck instead of pentagon deck. However, the aerodynamic behavior of the hexagonal shaped bridge decks is not well known. In the current study, we carried out a detailed numerical investigation on the bottom plate web slope effect on flow behavior of a hexagonal bridge deck and the results were compared with a pentagonal bridge deck case. Along with the bottom plate web slope, the width of the bottom horizontal flange plate and the side ratio were also altered to observe their influence on the aerodynamic behavior. A two-dimensional finite volume code with RANS turbulence model is utilized in the present study.The result revealed that the optimum bottom plate web slope shifts to larger slope when the bridge deck is shaped as hexagon instead of pentagon.
机译:大跨度桥梁表现出各种气动弹性现象。甲板的形状在控制气动稳定性以抵抗这些气动弹性现象方面起着重要作用。五边形的桥面具有改善的空气动力学性能,因此,这已被应用于许多实用的桥梁。使用这种类型的甲板的优势在于,它不需要整流罩等其他设备。顶部甲板上的流量是通过在每一侧的顶部甲板上放置路缘石来控制的,这称为分离干扰法(SIM),其中底部甲板上的流量由底板腹板斜率控制。在先前的研究中,已经对这种桥面形状进行了详细的研究,显示了它们对桥梁的空气动力学不稳定的有效性。近来,许多已建造的桥梁被成形为六角形甲板而不是五边形甲板。然而,六角形桥面板的空气动力学行为不是众所周知的。在当前的研究中,我们对底板腹板斜率对六边形桥面板的流动行为的影响进行了详细的数值研究,并将结果与​​五边形桥面板的情况进行了比较。随着底板腹板的倾斜,还改变了底部水平翼缘板的宽度和边长比,以观察它们对空气动力性能的影响。本研究采用二维有限体积编码和RANS湍流模型,结果表明,当桥面为六边形而不是五边形时,最佳底板腹板坡度会向较大的坡度转移。

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