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Computation of design forces and deflection in skew-curved box-girder bridges

机译:歪斜箱梁桥梁设计力与偏转的计算

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The analysis of simply supported single-cell skew-curved reinforced concrete (RC) box-girder bridges is carried out using a finite element based CsiBridge software. The behaviour of skew-curved box-girder bridges can not be anticipated simply by superimposing the individual effects of skewness and curvature, so it becomes important to examine the behaviour of such bridges considering the combined effects of skewness and curvature. A comprehensive parametric study is performed wherein the combined influence of the skew and curve angles is considered to determine the maximum bending moment, maximum shear force, maximum torsional moment and maximum vertical deflection of the bridge girders. The skew angle is varied from 0 degrees to 60 degrees at an interval of 10 degrees, and the curve angle is varied from 0 degrees to 60 degrees at an interval of 12 degrees. The scantly available literature on such bridges focuses mainly on the analysis of skew-curved bridges under dead and point loads. But, the effects of actual loadings may be different, thus, it is considered in the present study. It is found that the performance of these bridges having more curvature can be improved by introducing the skewness. Finally, several equations are deduced in the non-dimensional form for estimating the forces and deflection in the girders of simply supported skew-curved RC box-girder bridges, based upon the results of the straight one. The developed equations may be helpful to the designers in proportioning, analysing, and designing such bridges, as the correlation coefficient is about 0.99.
机译:简单地支持的单电池歪斜钢筋混凝土(RC)箱梁桥的分析是使用基于有限元的CSibridge软件进行的。不能仅仅通过叠加偏斜和曲率的个性效果来预测歪斜弯曲箱梁桥的行为,因此考虑到偏斜和曲率的综合影响,探讨这些桥的行为变得重要。执行综合参数研究,其中认为偏斜和曲线角的组合影响被认为是确定桥梁梁的最大弯矩,最大剪切力,最大扭转力矩和最大垂直偏转。倾斜角度在10度的间隔中从0度到60度变化,并且曲线角在12度的间隔以0度到60度变化。在这些桥梁上的可行的文献主要集中在死亡和点负荷下的歪斜桥的分析。但是,实际载荷的影响可能是不同的,因此,在本研究中考虑。发现可以通过引入偏斜性来改善具有更多曲率的这些桥的性能。最后,基于直线的结果,以用于估计简单地支撑的歪斜RC箱梁桥的梁中的力和偏转的非尺寸形式。由于相关系数约为0.99,所开发的等式可以对设计者有所帮助地对设计者有所帮助。

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