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Aero-structural Optimization of Streamlined Twin-Box Deck Bridges with Short Gap Considering Flutter

机译:微隙考虑颤动的短隙流线型双箱甲板桥的航空结构优化

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摘要

Shape and size design of twin-box decks involves managing a number of highly sensitive deck features, including aerodynamic, stiffness, and mass properties, which leads to important and complex changes in the aeroelastic and structural performance of the bridge. This design problem is addressed in this study by recasting it as an aero-structural optimization problem. A generic short gap twin-box bridge is optimized considering 164 shape and size design variables and 2,753 design constraints. The proposed methodology obtains sustainable and economical optimum designs by minimizing the required amount of material to build the bridge, while meeting the performance and safety requirements in the structural and flutter design constraints. Furthermore, parametric studies provide very valuable information to better understand the role of different design variables on flutter. It has been found that the gap size plays an important role in managing the flutter requirements in the design process. (C) 2021 American Society of Civil Engineers.
机译:双箱甲板的形状和尺寸设计涉及管理许多高灵敏度的甲板特征,包括空气动力学,刚度和质量特性,这导致桥梁的气动弹性和结构性能的重要性和复杂的变化。通过将其作为一个航空结构优化问题重新定位,在本研究中解决了该设计问题。考虑到164个形状和尺寸设计变量和2,753个设计约束,优化了一般的短隙双箱桥。所提出的方法通过最大限度地减少建造桥梁所需的材料,同时满足结构和颤动设计约束的性能和安全要求,获得可持续和经济的最佳设计。此外,参数研究提供了非常有价值的信息,以更好地了解不同设计变量对颤动的作用。已经发现,差距大小在管理设计过程中的颤动要求方面发挥着重要作用。 (c)2021年美国土木工程师协会。

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  • 来源
    《Journal of bridge engineering》 |2021年第6期|04021028.1-04021028.19|共19页
  • 作者单位

    Univ Notre Dame Dept Civil & Environm Engn & Earth Sci NatHaz Modeling Lab Notre Dame IN 46556 USA|Univ A Coruna Sch Civil Engn Struct Mech Grp La Coruna 15071 Spain;

    Univ A Coruna Sch Civil Engn Struct Mech Grp La Coruna 15071 Spain;

    Univ A Coruna Sch Civil Engn Struct Mech Grp La Coruna 15071 Spain;

    Univ A Coruna Sch Civil Engn Struct Mech Grp La Coruna 15071 Spain;

    Univ A Coruna Sch Civil Engn Struct Mech Grp La Coruna 15071 Spain;

    Univ Notre Dame Dept Civil & Environm Engn & Earth Sci NatHaz Modeling Lab Notre Dame IN 46556 USA;

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