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Structural health monitoring of marine structures by using inverse finite element method

机译:用逆有限元法监测海洋结构的结构健康

摘要

A new state-of-the art methodology named as inverse Finite Element Method (iFEM) is adopted to solve the inverse problem of real-time reconstruction of full-field structural displacements, strains, and stresses. iFEM has shown to be precise, robust, and fast enough to reconstruct the three dimensional displacement field of structures in real-time by utilizing surface strain measurements obtained from strain sensors embedded on the structure. The numerical implementation of the iFEM methodology is done by considering four-node inverse quadrilateral shell element. Two demonstration cases are presented including a quadrilateral plate subjected to bending force and a stiffened plate under bending loading. Finally, the effect of sensor locations, number of sensors and the discretization of the geometry are examined on solution accuracy.
机译:为了解决全场结构位移,应变和应力的实时重建的逆问题,采用了一种称为“逆有限元法”(iFEM)的最新技术。通过利用从嵌入在结构上的应变传感器获得的表面应变测量结果,iFEM已显示出足够精确,强大且快速的结构,可以实时重建结构的三维位移场。通过考虑四节点反四边形壳单元来完成iFEM方法的数值实现。展示了两个演示案例,包括承受弯曲力的四边形板和承受弯曲载荷的加劲板。最后,检查了传感器位置,传感器数量和几何离散度对求解精度的影响。

著录项

  • 作者

    Kefal A.; Oterkus E.;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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