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The benchmark of a simply supported beam with damage and bending fuzzy stiffness consideration is established to be utilized for damage detection. The explicit expression describing the Rotational Angle Influence Lines (RAIL) of the arbitrary section in the benchmark is presented as the nonlinear relation between the moving load and the RAIL appeared, when the moving load is located on the damage area. The damage detection method is derived based on the Difference of the RAIL Curvature (DRAIL-C) prior to and following arbitrarily section damage in a simply supported beam with bending fuzzy stiffness consideration. The results demonstrate that the damage position can be located by the DRAIL-C graph and the damage extent can be calculated by the DRAIL-C curve peak. The simply supported box girder as a one-dimensional model and the simply supported truss bridge as a three-dimensional model with the bending fuzzy stiffness are simulated for the validity of the proposed method to be verified. The measuring point position and noise intensity effects are discussed in the simply supported box girder example. This paper provides a new consideration and technique for the damage detection of a simply supported bridge with bending fuzzy stiffness consideration. 相似文献
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以兰州市某3跨连续下承式钢管混凝土系杆拱桥为例,选用经过幅值调整的天津波、Taft波和EL-Centro地震波3种加速度时程曲线,对拱桥空间有限元模型进行一致激励、行波激励下的地震时程响应分析.研究了激励输入模式、不同地震波、波速、非线性、波的输入方向等因素对地震响应的影响规律.结果表明:在地震激励下,边跨的关键点也可能成为大跨连续拱桥的控制点,在工程设计中应引起重视.在不同地震激励模式作用下地震响应差别很大,尤其是行波效应可以改善固定墩受力,因此考虑三维地震、行波激励更为合理. 相似文献
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