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Flexural response of skew-curved concrete box-girder bridges

机译:斜弯混凝土箱梁桥的挠曲响应

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The flexural response of the box-girder bridges, having curvature and skewness together referred as skew-curved bridges, cannot be predicted by simply superimposing the individual effect of skewness and curvature due to the coupling of these effects. Moreover, the complexity of such thin-walled box-girder bridges increases under eccentric vehicular loads causing additional torsional and warping stresses in the box-sections. The present study focuses on predicting the flexural response of simply supported single cell skew-curved concrete box-girder bridges. In order to investigate the effect of curvature and skewness, the central curvature angle has been varied from 0 degrees to 48 degrees at an interval of 12 degrees while the skew angle is swept from 0 degrees to 50 degrees at an interval of 10 degrees. Three-dimensional analysis models of the bridges are created using CSiBridge and a finite element analysis has been carried out for gravity loads and Indian Road Congress (IRC) specified Class 70R tracked vehicular Live Load (LL) plying at a minimum specified clearance from the kerb. The parametric study results indicate that the flexural response of the inner girder (web) becomes more pronounced in case of skew-curved bridges. In general, it has been observed that presence of skewness in highly curved bridges significantly improves the flexural response of the bridge. Furthermore, the critical position of LL producing the absolute maximum longitudinal moment as well as the location of the critical section for moment has been found significantly affected by skewness and curvature. These critical positions have been presented in the framework of newly developed 'skew-curve' coordinate system for systematic representation.
机译:具有曲率和偏斜度的箱梁桥的挠曲响应,统称为“歪斜弯曲”桥,由于这些效应的耦合而无法通过简单地叠加偏斜度和曲率的各个效应来预测。此外,在偏心的车辆载荷下,这种薄壁箱梁桥的复杂性增加,从而在箱形截面中产生附加的扭转和翘曲应力。本研究的重点是预测简单支撑的单单元斜弯曲混凝土箱梁桥的挠曲响应。为了研究曲率和偏度的影响,中心曲率角以12度的间隔从0度更改为48度,而倾斜角以10度的间隔从0度更改为50度。使用CSiBridge创建桥梁的三维分析模型,并对重力载荷进行了有限元分析,印度道路国会(IRC)指定的70R级跟踪的车辆活载(LL)的活动距离最小为路缘规定的距离。参数研究结果表明,在斜弯桥的情况下,内梁(腹板)的弯曲响应会更加明显。通常,已经观察到高度弯曲的桥中偏斜的存在显着改善了桥的挠曲响应。此外,已经发现产生绝对最大纵向力矩的LL的临界位置以及力矩的临界部分的位置受到偏斜和曲率的显着影响。这些关键位置已经在新开发的用于系统表示的“斜曲线”坐标系的框架中提出。

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