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Reconstruction of time-dependent boundary heat flux by a BEM-based inverse algorithm

机译:基于BEM的逆算法重建时变边界热通量

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The objective of this study is to reconstruct an unknown time-dependent heat flux distribution at a surface whose temperature history is provided by a broad-band thermochromic liquid crystal (TLC) thermographic technique. The information given for this inverse problem is the surface temperature history. Although this is not an inverse problem, it is solved as such in order to filter the errors in input temperatures which are reflected in errors in heat fluxes. We minimize a quadratic functional which measures the sum of the squares of the deviation of estimated (computed) temperatures relative to measured temperatures provided by the TLC thermography. The objective function is minimized using the Levenberg-Marquardt method, and we develop an explicit scheme to compute the required sensitivity coefficients. The unknown flux is allowed to vary in space and time. Results are presented for a simulation in which a spatially varying and time-dependent flux is reconstructed over an airfoil.
机译:这项研究的目的是在一个表面上重建未知的随时间变化的热通量分布,该表面的温度历史由宽带热致变色液晶(TLC)热成像技术提供。针对该反问题给出的信息是表面温度历史记录。尽管这不是反问题,但为了解决输入温度中的误差而解决了这一问题,该误差反映在热通量误差中。我们最小化一个二次函数,该二次函数测量的是估计(计算)温度相对于TLC热像仪提供的测量温度偏差的平方和。使用Levenberg-Marquardt方法将目标函数最小化,并且我们开发了一个显式方案来计算所需的灵敏度系数。未知通量被允许在空间和时间上变化。给出了仿真结果,其中在翼型上重建了空间变化且随时间变化的通量。

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