一种基于小波方法的压力容器损伤检测有限元算法

N. Haghshenas, A. G. Arani, A. Javanbakht, M. Karimi
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摘要

本文提出了一种适用于压力容器裂纹检测的算法。通过时间和位置近似,得到了船体的运动方程,并将其简化到小波空间中。裂缝的位置随机分布在结构的不同区域,覆盖了压力容器的整个几何形状。此外,压力容器垂直安装,其四个支腿的底部各有一个固定端。然后,利用Daubechies小波族将结果转移到小波空间。通过对完好容器和破损容器位移结果的对比,可以看出,通过小波输出图的变化,可以准确地检测出裂纹的位置。基于小波的有限元方法是一种适用于压力容器裂纹和其他不连续结构的无损检测方法,也是一种强大的数值工具。该研究结果可用于海洋和航空航天工业以及发电站。
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A Novel Finite-Element-Based Algorithm for Damage Detection in the Pressure Vessels Using the Wavelet Approach
In this investigation a suitable algorithm for the detection of cracks in the pressure vessels is presented. The equations of motion for the vessel are obtained and transferred into the wavelet space in a simplified form resulted from time and position approximations. The locations of cracks are randomly distributed in different regions of the structure to cover the whole geometry of the pressure vessel. Furthermore, the pressure vessel is installed vertically with a fixed end at the bottom of each of its four leg supports. Then, the results are transferred to the wavelet space using Daubechies wavelet families. From the comparison of the displacement results associated with the intact and damaged vessels, it can be clearly seen that the crack location can be accurately detected noting the alteration in the wavelet output diagrams .The results of the crack detection show that with the proper selection of the wavelet type, the wavelet based finite element method is a suitable and nondestructive method as well as a powerful numerical tool for the detection of cracks and other discontinuities in the pressure vessels. The results of this investigation can be used in the marine and aerospace industries as well as power stations.
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