等轴距长重型车辆在短跨公路桥梁上的动力冲击

IF 0.6 4区 工程技术 Q4 ENGINEERING, CIVIL Baltic Journal of Road and Bridge Engineering Pub Date : 2018-03-27 DOI:10.3846/BJRBE.2018.382
O. Mohammed, Arturo González, D. Cantero
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引用次数: 8

摘要

重量超过标准的超大型卡车在通过特定路线的桥梁之前需要获得许可。为了安全起见,通常会雇用护送人员来保持车辆之间的距离,并确保桥梁的负荷保持在允许的最大限度以下。考虑到这些大型车辆的速度相当慢,而且当车辆质量较大时,振动幅度通常会下降,因此预计桥梁响应会有轻微的动力放大。然而,其中一些大型卡车有一个独特的特点,即“多个等间距轴”,这在普通车辆中是不常见的。以等间隔施加轴力可以在相当程度上激励桥梁,即使在低速下也是如此。这些“临界”低速是根据卡车的轴距和桥梁的主振动频率先验估计出来的。本文论证了当“临界”速度不可避免时,在给予长重型车辆许可之前,必须在静态计算中加入相对较高的动态余量。
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Dynamic impact of heavy long vehicles with equally spaced axles on short-span highway bridges
Extremely large trucks with a weight exceeding the standard require a permit before they are allowed to cross the bridges of a specific route. For the purpose of safety, an escort is often employed to maintain a distance between vehicles and to ensure that the bridge load remain below the allowed maximum. Given that the speed of these large vehicles is quite slow and that the amplitude of vibrations normally declines when the vehicle mass is large, a minor dynamic amplification of the bridge response is expected. However, some of these large trucks have a unique feature characterized by “multiple equally-spaced axles”, something that is uncommon in normal vehicle. The application of axle forces at equal intervals can dynamically excite bridges to a considerable extent, even at low speeds. These “critical” low speeds are estimated a priori from the axle spacing of the truck and the main frequency of vibration of the bridge. This paper demonstrates that when the “critical” speed is unavoidable, a relatively high dynamic allowance must be added to static calculations before granting a permit to a long heavy vehicle.
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来源期刊
Baltic Journal of Road and Bridge Engineering
Baltic Journal of Road and Bridge Engineering 工程技术-工程:土木
CiteScore
2.10
自引率
9.10%
发文量
25
审稿时长
>12 weeks
期刊介绍: THE JOURNAL IS DESIGNED FOR PUBLISHING PAPERS CONCERNING THE FOLLOWING AREAS OF RESEARCH: road and bridge research and design, road construction materials and technologies, bridge construction materials and technologies, road and bridge repair, road and bridge maintenance, traffic safety, road and bridge information technologies, environmental issues, road climatology, low-volume roads, normative documentation, quality management and assurance, road infrastructure and its assessment, asset management, road and bridge construction financing, specialist pre-service and in-service training;
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