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Sequential estimation of the generated curing heat of composite materials by data assimilation: A numerical study

机译:数据同化中复合材料固化热的顺序估计:数值研究

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摘要

The models and parameters related to the generated curing heat in the molding simulation of composite materials are dependent on the type of resin used and the experimental conditions. Therefore, in this study, we estimated the generated curing heat that changes with time by a data assimilation method, which combines the observation values with simulation values, so that the heat curing simulation of carbon fiber reinforced polymers (CFRPs) becomes closer to the experimental conditions. In the data assimilation method, the temperature distribution on the surface of the composite material was used as an observation value, and the generated curing heat was estimated using an ensemble Kalman filter. By optimizing the data assimilation parameters in advance using the response surface method and estimating the generated curing heat by numerical experiments, the generated curing heat could be estimated with an accuracy represented by the time mean error of less than 6%.
机译:与复合材料模拟模拟中产生的固化热量相关的模型和参数取决于所用树脂的类型和实验条件。因此,在本研究中,我们估计了通过数据同化方法随时间变化的产生的固化热量,这将观察值与模拟值相结合,因此碳纤维增强聚合物(CFRP)的热固化模拟变得更接近实验使适应。在数据同化方法中,将复合材料表面上的温度分布用作观察值,使用集合卡尔曼滤波器估计产生的固化热量。通过使用响应表面方法预先优化数据同化参数并通过数值实验估计产生的固化热量,可以通过小于6%的时间表示的时间表示的精度来估计产生的固化热量。

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