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Coupled Bending-Torsional Vibration of a Cracked Hollow Beam Model in Water and Identification of Cracking

机译:裂纹空心梁模型的弯扭扭振耦合及裂纹识别

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摘要

The coupled flexural-torsional vibration equations of a floating beam model, considering added fluid masses, are developed. The beam has varying bending stiffness, varying torsional stiffness and varying mass distribution; frequencies and mode shapes are calculated using Galerkin's method. Stiffness for the cracked beam (backbone) has been calculated using an energy procedure. Experimental values have been compared with the results of theoretical predictions and the agreement between the two found to be good. The frequency contour method has been used to identify the crack.
机译:考虑到增加的流体质量,建立了浮梁模型的耦合弯曲扭转振动方程。梁具有变化的弯曲刚度,变化的扭转刚度和变化的质量分布。频率和模态形状使用Galerkin方法计算。已使用能量程序计算了裂纹梁(主干)的刚度。实验值已经与理论预测的结果进行了比较,两者之间的一致性很好。频率轮廓法已被用于识别裂纹。

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