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Structural Response of Skew-Curved Concrete Box-Girder Bridges under Eccentric Vehicular Loading

机译:偏心车辆荷载作用下斜交混凝土箱梁桥的结构响应

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Concrete box-girders are widely used for modern highway bridges and large urban interchanges. Bridges with ends skewed or horizontally curved girders are becoming more popular now-a-days to incorporate heavy traffic within a very limited space available. Certain geographical situation even demand skew supports in addition to the curved layout of the bridge and results in complex skew-curve geometry of the deck. All the more complexity of such cases increases under eccentric traffic load due to which additional torsion and warping is induced in the bridge. Present study focuses on predicting the bending moment and deflection response of a single cell box-girder bridge for each unique skew/curve/skew-curve combination via 3D finite element analysis using CsiBridge. For the curved and skew-curved bridges the central curvature angle has been varied from 0° to 48° at an interval of 12° while for the skewed and skew-curved bridges the skew angle is swept from 0° to 50° at an interval of 10° in order to investigate the effect of curvature, skewness and skew-curve on flexural and deflection response of box-girder bridge. For these unique simply supported concrete box girder bridges, bending moment and vertical deflection of bridge girder for dead load as well as for IRC Class 70R Tracked wheel load cases are monitored via large parametric study. Results indicate that with increasing skew angle, magnitude of girder deflection and bending moment in general decreases for outer web and inner web. While for heavily curved bridges outer girder response becomes severe, combining the effect of skewness and curvature, it is observed that for highly curved bridges it is better to have skewed abutment to significantly reduce the overall deflection and bending moment response.
机译:混凝土箱梁被广泛用于现代公路桥梁和大型城市立交桥。如今,末端倾斜或水平弯曲的大梁的桥梁正变得越来越流行,以在有限的可用空间内合并繁重的交通。某些地理环境甚至需要桥梁的弯曲布局,甚至需要倾斜支撑,并且会导致桥面的复杂倾斜曲线几何形状。在偏心的交通负荷下,这种情况的所有复杂性都会增加,这会导致桥中产生额外的扭转和翘曲。目前的研究重点是通过使用CsiBridge的3D有限元分析,针对每个独特的偏斜/曲线/偏斜曲线组合预测单个单元箱梁桥的弯矩和挠度响应。对于弯曲和倾斜弯曲的桥,中心曲率角以12°的间隔从0°更改为48°,而对于倾斜和倾斜弯曲的桥,则以一定间隔从0°扫至50°的倾斜角为了研究曲率,偏斜度和偏斜曲线对箱梁桥的挠曲和挠度响应的影响,将其设为10°。对于这些独特的简单支撑的混凝土箱梁桥,通过大参数研究可监视自重以及IRC 70R级IRC桥梁的弯矩和竖向挠度。结果表明,随着偏斜角的增加,外腹板和内腹板的梁挠度和弯矩通常会减小。虽然对于弯曲较大的桥梁,外梁的响应变得很严重,结合了偏斜和曲率的影响,但可以观察到,对于弯曲较大的桥梁,最好采用倾斜的桥台,以显着降低整体挠度和弯矩响应。

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