箱梁
图像扭曲
结构工程
失真(音乐)
横截面
流离失所(心理学)
频域
工程类
自由度(物理和化学)
甲板
梁(结构)
大梁
数学
计算机科学
数学分析
物理
量子力学
心理治疗师
人工智能
电子工程
放大器
CMOS芯片
心理学
作者
K. Nallasivam,Sudip Talukdar,Anjan Dutta
标识
DOI:10.12989/sem.2008.28.4.387
摘要
The fatigue damage accumulation rates of horizontally curved thin walled box-girder bridge have been estimated from vehicle-induced dynamic stress history using rain flow cycle counting method in the time domain approach. The curved box-girder bridge has been numerically modeled using computationally efficient thin walled box-beam finite elements, which take into account the important structural actions like torsional warping, distortion and distortional warping in addition to the conventional displacement and rotational degrees of freedom. Vehicle model includes heave-pitch-roll degrees of freedom with longitudinal and transverse input to the wheels. The bridge deck unevenness, which is taken as inputs to the vehicle wheels, has been assumed to be a realization of homogeneous random process specified by a power spectral density (PSD) function. The linear damage accumulation theory has been applied to calculate fatigue life. The fatigue life estimated by cycle counting method in time domain has been compared with those found by estimating the PSD of response in frequency domain. The frequency domain method uses an analytical expression involving spectral moment characteristics of stress process. The effects of some of the important parameters on fatigue life of the curved box bridge have been studied.
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