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安装过程中风吸力对大跨加劲钢桁桥的影响
摘    要:在大跨钢桁桥的安装过程中,为缩短工期,桥面板和钢桁梁常同时施工,这将导致风吸力对桥面板产生影响,从而影响安装过程中含大跨悬臂梁的加劲钢桁桥的抗风性能,因为风吸力与自重共同作用会增大结构响应。然而,现有规范和研究都没有考虑这种影响,故需研究风吸力对安装过程中加劲钢桁桥的抗风静力性能的影响。以世界最长的拱加劲钢桁桥为模型,进行2个风洞试验:高频底座天平试验和同步多点压力传感系统试验。基于试验结果,建立2个净压力系数以确定风吸力。通过确定安装过程中风吸力对桥梁的影响,建立了考虑风吸力的有限元模型。

关 键 词:风吸力  风洞试验  钢桁桥  安装  净压力系数

Wind Suction Effect on Long-Span Stiffened Steel Truss Bridges During Erection
Abstract:During the erection of long-span steel truss bridges, the bridge decks and the steel truss girders are commonly constructed simultaneously in order to shorten the construction period, leading to wind suction effect on the decks when wind strikes. This effect may have a remarkable influence on the wind-resistant behavior of stiffened steel truss bridges which hold long-span cantilevers during erection, as wind suction can act together with the gravity load to increase the structural response. However, neither current codes nor studies have taken this effect into account. This paper is intended to investigate the wind suction effect and its influence on the static wind-resistant behavior of stiffened steel truss bridges during construction. Two wind tunnel tests, including a high-frequency base balance (H-FBB) test and a synchronous multi-pressure sensing system (SM-PSS) test, were carried out with the world’s longest arch-stiffened steel truss bridge as a model. On the basis of the experimental results, two net pressure coefficients which could be used to determine the wind suction are proposed. A finite element analysis considering the wind suction effect is also performed, through which the wind suction influence on the model bridge during erection is obtained.
Keywords:Wind suction  Wind tunnel test  Steel truss bridge  Erection  Net pressure coefficient
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