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Vehicle axle loads identification using finite element method

机译:车轴载荷的有限元识别

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Existing methods on moving force identification are usually based on modal decomposition and are subject to modal truncation error in the dynamic responses. A new moving load identification method is presented basing on finite element method and condensation technique. The measured displacements are formulated as the shape functions of the finite elements of the structure which is modeled as a straight beam. The measured responses can be limited to a small number of master degrees-of-freedom of the structural system. Numerical simulations and experimental results demonstrate the efficiency and accuracy of the method to identify a system of general moving loads or interaction forces between the vehicle and the bridge deck. The number of master degrees-of-freedom of the system should be selected smaller than or equal to the number of measured points, and the identified results are relatively not sensitive to the sampling frequency, velocity of vehicle, measurement noise level and road surface roughness when a minimum of eight beam-column finite elements are used to model the bridge with measured information from three measuring points.
机译:现有的移动力识别方法通常基于模态分解,并且在动态响应中会出现模态截断误差。基于有限元法和凝结技术,提出了一种新的运动载荷识别方法。测得的位移被公式化为结构的有限元的形状函数,该结构被建模为直梁。测得的响应可以限制在结构系统的少量主自由度上。数值模拟和实验结果证明了该方法的有效性和准确性,该方法可识别车辆和桥面之间的一般运动载荷或相互作用力系统。系统的主自由度的数量应选择为小于或等于测量点的数量,并且识别出的结果对采样频率,车辆速度,测量噪声水平和路面粗糙度相对不敏感当至少使用八个梁柱有限元对三个测量点的测量信息进行桥梁建模时。

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