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Lightning strike thermal damage model for glass fiber reinforced polymer matrix composites and its application to wind turbine blades

机译:玻璃纤维增​​强聚合物基复合材料的雷击热损伤模型及其在风力发电机叶片中的应用

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A physics-based model describing the thermal interaction between a lightning channel and a composite structure has been developed. The model includes: (i) spatial and temporal evolution of the lightning channel as a function of the electric current waveform; (ii) temporary and spatially non-uniform heat flux generated at the composite structure, where the heat flux is an explicit function of the electric current waveform and the instant lightning channel radius; (iii) nonlinear transient heat transfer problem formulation for layered anisotropic composites that accounts for temperature-dependent material properties, a moving boundary of the expanding lightning channel, and phase transition moving boundary associated with instantaneous material removal due to sublimation. The model is applied for evaluation of thermal damage of the tip glass fiber reinforced polymer matrix composite panel of the Sandia 100-meter All-glass Baseline Wind Turbine Blade (SNL 100-00) subjected to lightning strike. (C) 2015 Elsevier Ltd. All rights reserved.
机译:一个基于物理的模型描述了闪电通道和复合结构之间的热相互作用。该模型包括:(i)闪电通道的时空演变与电流波形的关系; (ii)在复合结构上产生的暂时的和空间上不均匀的热通量,其中该热通量是电流波形和瞬时雷电通道半径的明确函数; (iii)层状各向异性复合材料的非线性瞬态传热问题公式,该公式考虑了随温度变化的材料特性,不断扩大的雷电通道的运动边界以及与因升华而导致的瞬时材料去除相关的相变运动边界。该模型用于评估遭受雷击的Sandia 100米全玻璃基线风力涡轮机叶片(SNL 100-00)的尖端玻璃纤维增​​强聚合物基复合板的热损伤。 (C)2015 Elsevier Ltd.保留所有权利。

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