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Impact Factors of Simply Supported Prestressed Concrete Girder Bridges due to Vehicle Braking

机译:车辆制动引起的简支预应力混凝土梁桥的影响因素

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Much research has been conducted to study the dynamic impact of simply supported bridges due to vehicles moving at constant speeds, whereas only a few studies have focused on the impact due to vehicles changing speed on bridges. Previous numerical studies have shown that the impact factors due to vehicle braking may exceed those prescribed in the bridge design codes. However, most researchers adopted simple vehicle and bridge models that were not able to consider the spatial effect of real bridges and may have overestimated the actual impact factors due to vehicle braking. In this study, a three-dimensional vehicle-bridge coupled model was developed to study the dynamic impact factors of simply supported prestressed concrete girder bridges due to vehicle braking. Impact factors for different bridge responses were studied, including deflection, bending moment, and shear. The results showed that the impact factors due to vehicle braking could be notably larger than those due to the vehicles moving at constant speeds and could exceed the impact factor specified in the AASHTO bridge design code. (C) 2015 American Society of Civil Engineers.
机译:已经进行了很多研究来研究由于车辆以恒定速度行驶而引起的简单支撑桥梁的动力影响,而只有很少的研究集中于因车辆改变速度而对桥梁造成的影响。先前的数值研究表明,由于车辆制动引起的影响因素可能会超过桥梁设计规范中规定的影响因素。但是,大多数研究人员采用了简单的车辆和桥梁模型,这些模型无法考虑实际桥梁的空间影响,并且可能因车辆制动而高估了实际影响因素。在这项研究中,建立了三维车桥耦合模型,以研究由于车辆制动引起的简支预应力混凝土箱梁桥的动力影响因素。研究了不同桥梁响应的影响因素,包括挠度,弯矩和剪切力。结果表明,车辆制动引起的影响因子可能明显大于车辆以恒定速度行驶时产生的影响因子,并且可能超过AASHTO桥梁设计规范中指定的影响因子。 (C)2015年美国土木工程师学会。

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