单车和多车作用下钢筋混凝土T梁桥表面粗糙度影响的模拟

Q2 Physics and Astronomy Advances in Acoustics and Vibration Pub Date : 2016-01-01 DOI:10.1155/2016/3594148
R. Kalyankar, N. Uddin
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引用次数: 5

摘要

本研究将车桥相互作用有限元建模空间系统应用于钢筋混凝土美国梁桥,以获得表面粗糙度的影响。以不同表面粗糙度的钢筋混凝土T梁桥为研究对象,研究了单车和多车在不同表面粗糙度条件下的作用。研究了六种不同表面粗糙度剖面(非常好、良好、可测量、平均、差和非常差)对车辆-桥梁相互作用的影响。得到了T梁桥单车和多车在不同表面粗糙度下的动态放大系数(DAF)值,以及重型车辆轴距的变化。观察到,当桥梁具有非常好、良好、测量和平均表面粗糙度时,观察到桥梁上的单个车辆的DAF值在AASHTO规定的可接受范围内。然而,对于有多个车辆的桥梁,只有非常好的表面粗糙度剖面显示DAF和车辆轴距在可接受的范围内。从目前的研究中可以看出,该空间系统在预测不同路面粗糙度条件下桥梁的行为方面表现出可靠的响应,并且在车辆轴检测方面也很可靠,因此,它有可能用于现实模拟。
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Simulating the Effects of Surface Roughness on Reinforced Concrete T Beam Bridge under Single and Multiple Vehicles
This research focuses on the application of the spatial system of finite element modeling for the vehicle-bridge interaction on reinforced concrete US Girder Bridge in order to obtain the effect of surface roughness. Single vehicle and multiple vehicles on reinforced concrete T beam bridge were studied with variable surface roughness profiles. The effects of six different surface roughness profiles (very good, good, measured, average, poor, and very poor) were investigated for vehicle-bridge interaction. The values of the Dynamic Amplification Factor (DAF) were obtained for single and multiple vehicles on T Beam Bridge for different surface roughness profiles, along with the distances between the axles of heavy vehicle. It was observed that when the bridge has very good, good, measured, and average surface roughness, the DAF values for the single vehicle over the bridge were observed to be within acceptable limits specified by AASHTO. However, for the bridge with multiple vehicles only very good and measured surface roughness profiles showed a DAF and vehicle axle distances within the acceptable limits. From the current studies, it was observed that the spatial system showed reliable responses for predicting the behavior of the bridge under variable road surface roughness conditions and was reliable in vehicle axle detection, and therefore, it has a potential to be use for realistic simulations.
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期刊介绍: The aim of Advances in Acoustics and Vibration is to act as a platform for dissemination of innovative and original research and development work in the area of acoustics and vibration. The target audience of the journal comprises both researchers and practitioners. Articles with innovative works of theoretical and/or experimental nature with research and/or application focus can be considered for publication in the journal. Articles submitted for publication in Advances in Acoustics and Vibration must neither have been published previously nor be under consideration elsewhere. Subject areas include (but are not limited to): Active, semi-active, passive and combined active-passive noise and vibration control Acoustic signal processing Aero-acoustics and aviation noise Architectural acoustics Audio acoustics, mechanisms of human hearing, musical acoustics Community and environmental acoustics and vibration Computational acoustics, numerical techniques Condition monitoring, health diagnostics, vibration testing, non-destructive testing Human response to sound and vibration, Occupational noise exposure and control Industrial, machinery, transportation noise and vibration Low, mid, and high frequency noise and vibration Materials for noise and vibration control Measurement and actuation techniques, sensors, actuators Modal analysis, statistical energy analysis, wavelet analysis, inverse methods Non-linear acoustics and vibration Sound and vibration sources, source localisation, sound propagation Underwater and ship acoustics Vibro-acoustics and shock.
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