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Reconstruction of an orthotropic thermal conductivity from non-local heat flux measurements

机译:从非局部热通量测量重建正交导热性

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摘要

Raw materials are anisotropic and heterogeneous in nature, and recovering their conductivity is of utmost importance to the oil, aerospace and medical industries concerned with the identification of soils, reinforced fibre composites and organs. Due to the ill-posedness of the anisotropic inverse conductivity problem certain simplifications are required to make the model tracktable. Herein, we consider such a model reduction in which the conductivity tensor is orthotropic with the main diagonal components independent of one space variable. Then, the conductivity components can be taken outside the divergence operator and the inverse problem requires reconstructing one or two components of the orthotropic conductivity tensor of a two-dimensional rectangular conductor using initial and Dirichlet boundary conditions, as well as non-local heat flux over-specifications on two adjacent sides of the boundary. We prove the unique solvability of this inverse coefficient problem. Afterwards, numerical results indicate that accurate and stable solutions are obtained.
机译:原料本质上是各向异性和异质的,并且对涉及鉴定土壤,增强纤维复合材料和器官的石油,航空航天和医疗产业来说,恢复其电导率至关重要。由于各向异性逆导电性的不良呈现问题,需要某些简化来使模型跟踪。这里,我们考虑这种模型减少,其中导电张量是正向逆转录,与一个空间变量无关。然后,可以在发散操作者之外进行电导率分量,并且逆问题需要使用初始和小芯片边界条件重建二维矩形导体的正交导电张量的一个或两个分量,以及非局部热通量结束 - 边界两个相邻侧面。我们证明了这种逆系数问题的独特可解性。然后,数值结果表明获得了准确和稳定的解决方案。

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