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Structural Health Monitoring of marine structures by using inverse Finite Element Method

机译:逆有限元法用船舶结构的结构健康监测

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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:采用一种新的最先进的方法,以逆有限元方法(IFEM)用于解决全场结构位移,株和应力的实时重建的逆问题。 IFEM已经证明通过利用嵌入结构上的应变传感器获得的表面应变测量来实时地重建结构的精确,稳健,并且足够快地重建结构的三维位移场。通过考虑四节点逆四边形shell元素来完成IFEM方法的数值实现。提出了两种演示案例,包括在弯曲负载下进行弯曲力和硬化板的四边形板。最后,在溶液精度上检查传感器位置,传感器数量和几何形状的离散化的影响。

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