张力腿基础设计参数对大跨度浮式悬索桥行车动力响应的影响研究
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1.西南交通大学桥梁智能与绿色建造全国重点实验室;2.南昌市城市规划设计研究总院集团有限公司

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基金项目:

国家自然科学基金(52222804; 52221002)


Parameter Analysis Study of a Long-Span Floating Suspension Bridge’s Tension Leg Platform under Vehicle Loading
Author:
Affiliation:

1.State Key Laboratory of Bridge Intelligent and Green Construction;2.Nanchang Urban Planning and Design Research Institute Group Co., Ltd.

Fund Project:

National Natural Science Foundation of China (No. 52222804; 52221002)

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    摘要:

    以张力腿平台为基础的大跨度浮式悬索桥建设方案在高水深、软土质的环境中具有较高的应用前景,由于其基础刚度较弱的原因,行车荷载可能会引发桥梁的剧烈振动,可以通过张力腿基础设计参数的调整削弱其影响,但目前对行车荷载作用下该种新型大跨度浮式桥梁的研究较少,此类方案可行性与适用性亟需得到验证,本文通过在有限元软件中计算行车荷载作用下的大跨度浮式悬索桥模型响应并改变基础浮箱淹没深度、拉索倾角的参数,采用模态分析等方法研究了张力腿基础设计参数变化在行车荷载作用下对结构响应的影响,研究表明:大跨度浮式悬索桥的淹没深度、拉索倾角的参数调整主要改变方案的前两阶振型,且对横向的响应影响较大,加大浮式基础的淹没深度、增加倾斜布置的张力腿拉索均可有效减小其在行车荷载作用下的振动,其中对拉索倾角的修改在何种角度可以使行车荷载作用下的浮桥响应达到最小,则需要通过具体分析得出,因此在设计阶段对相关张力腿基础设计参数需尽可能详尽考虑以增加整个浮桥方案在行车荷载作用下的应用可行性与适用性。

    Abstract:

    Construction schemes for long-span floating suspension bridges based on tension leg platforms have high application prospects in high water depth and soft soil environments. Due to their weak foundation stiffness, vehicle loads may induce significant vibrations in bridges. This phenomenon can be mitigated by adjusting the parameters of the tension leg platform. However, there is limited research on this novel long-span floating bridge under vehicle loads. However, the feasibility and applicability of such schemes need validation. This paper utilized finite element software to compute the response of a floating suspension bridge model under the vehicle load. The effect of changes in the submerged depth and cable inclination angle on the response were investigated using methods such as modal analysis. The study revealed that adjusting the parameters of the submerged depth and cable inclination angle primarily alters the first two vibrational modes, significantly affecting lateral responses. Increasing the submerged depth of the platform and adding inclined tension leg cables effectively reduce the vibrations under the vehicle load. Additionally, the optimal modification of the cable inclination angle requires specific analysis. Therefore, during the design phase, relevant tension leg platform design parameters are crucial for finding the most suitable configuration, which can enhance the overall feasibility and applicability of floating bridges under the vehicle load.

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  • 收稿日期:2024-01-28
  • 最后修改日期:2024-03-04
  • 录用日期:2024-03-23
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