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Numerical evaluation for vibration-based damage detection in wind turbine tower structure

机译:风力涡轮机塔架结构中基于振动的损伤检测的数值评估

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摘要

In this study, the feasibility of vibration-based damage detection methods for the wind turbine tower (WTT) structure is evaluated. First, a frequency-based damage detection (FBDD) is outlined. A damage-localization algorithm is visited to locate damage from changes in natural frequencies. Second, a mode-shape-based damage detection (MBDD) method is outlined. A damage index algorithm is utilized to localize damage from estimating changes in modal strain energies. Third, a finite element (FE) model based on a real WTT is established by using commercial software, Midas FEA. Several damage scenarios are numerically simulated in the FE model of the WTT. Finally, both FBDD and MBDD methods are employed to identify the damage scenarios simulated in the WTT. Damage regions are chosen close to the bolt connection of WTT segments; from there, the stiffness of damage elements are reduced.
机译:在这项研究中,评估了基于振动的风力涡轮机塔(WTT)结构损伤检测方法的可行性。首先,概述了基于频率的损坏检测(FBDD)。访问损伤定位算法以定位自然频率变化引起的损伤。其次,概述了基于模式形状的损坏检测(MBDD)方法。损伤指数算法用于根据模态应变能的变化来确定损伤的位置。第三,使用商业软件Midas FEA建立基于真实WTT的有限元(FE)模型。在WTT的有限元模型中,通过数值模拟了几种损坏情况。最后,FBDD和MBDD方法都被用来识别WTT中模拟的破坏情景。选择的损坏区域应靠近WTT段的螺栓连接;从那里,损坏元件的刚度降低。

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