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Displacement and stress monitoring of a Panamax containership using inverse finite element method

机译:巴拿马型集装箱船的位移和应力监测,采用有限元逆方法

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摘要

The inverse Finite Element Method (iFEM) is a revolutionary methodology for real - time reconstruction of full-field structural displacements and stresses in plate and shell structures that are instrumented by strain sensors. This inverse problem is essential for structural health monitoring systems and commonly referred as ‘displacement and stress monitoring’ or ‘shape-and stress-sensing’. In this study, displacement and stress monitoring of a Panamax containership is performed based on the iFEM methodology. A simple, efficient, and practically useful four-node quadrilateral inverse-shell element, iQS4, is used for the numerical implementation of the iFEM algorithm. Hydrodynamic analysis of the containership is performed for beam sea waves in order to calculate v ertical and horizontal wave bending moments, and torsional wave moments acting on parallel mid-body of the containership. Several direct FEM analyses of the parallel mid-body are performed using the hydrodynamic wave bending and torsion moments. Then, experimentally measured strains are simulated by strains obtained from high-fidelity finite element solutions. After that, three different iFEM case studies of the parallel mid-body are performed utilizing the simulated sensor strains. Finally, the effect of sensor locations and number of sensors are assessed with respect to the solution accuracy.
机译:逆有限元法(iFEM)是一种革命性的方法,用于实时重建由应变传感器测量的板壳结构中的全场结构位移和应力。反问题对于结构健康监测系统至关重要,通常被称为“位移​​和应力监测”或“形状和应力感应”。在这项研究中,基于iFEM方法对巴拿马型集装箱船的位移和应力进行了监测。一个简单,有效且实用的四节点四边形反壳单元iQS4用于iFEM算法的数值实现。对梁式海浪进行了集装箱船的水动力分析,以便计算垂直和水平波浪弯矩以及作用在集装箱船平行中体上的扭转波矩。使用流体动力波的弯曲和扭转力矩对平行中体进行了几种直接的有限元分析。然后,通过从高保真有限元解获得的应变来模拟实验测量的应变。之后,利用模拟传感器应变对平行中体进行了三个不同的iFEM案例研究。最后,根据解决方案的准确性评估传感器位置和传感器数量的影响。

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  • 作者

    Kefal Adnan; Oterkus Erkan;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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