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An identification method for short hanger tension of arch bridges

机译:拱桥短吊架张力的识别方法

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The hanger tension is crucial in arch bridges and the fundamental frequencies of short hangers are significantly affected by the flexural rigidity. In order to measure the hanger tension considering the flexural rigidity, the Additional Mass Method (AMM) is proposed in this paper. The tension and flexural rigidity can be calculated by the measured frequencies without and with the additional mass. The difficult inverse calculation among the frequency, tension and stiffness is solved by the genetic algorithm (GA). The proposed method is verified against a numerical example and an experimental bridge, and meanwhile its feasibility in simultaneously identifying hanger tension and flexural rigidity is proved.
机译:吊架张力在拱桥中至关重要,短衣架的基本频率受到弯曲刚性的显着影响。为了测量考虑弯曲刚度的吊架张力,本文提出了附加的质量方法(AMM)。张力和弯曲刚度可以通过测量的频率计算,没有额外的质量。遗传算法(GA)解决了频率,张力和刚度之间的难度逆计算。该提出的方法针对数值示例和实验桥验证,并且同时证明了其同时识别吊架张力和弯曲刚度的可行性。

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