首页> 外文期刊>International Journal of Heat and Mass Transfer >Transverse eigenproblem of steady-state heat conduction for multi-dimensional two-layered slabs with automatic computation of eigenvalues
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Transverse eigenproblem of steady-state heat conduction for multi-dimensional two-layered slabs with automatic computation of eigenvalues

机译:具有特征值自动计算的多维两层平板稳态导热横向问题

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The paper analyses the transverse eigenvalue problem of nonconventional Sturm-Liouville type associated to the steady-state heat conduction in 3-D two-component slabs with imperfect thermal contact. In particular, it describes how the physical insight deriving from the transverse direction of six suitable 'homogeneous parallelepipeds' inherent to the considered two-layered parallelepiped is capable of providing useful and reasonably accurate information about the best bracketing bounds (lower and upper) for the roots (eigenvalues) of the transverse eigencondition. This information, in fact, enables one to establish starting points (initial guesses) for a root-finding iteration (e.g., Muellers method) so that convergence of the iteration may absolutely be guaranteed. Representative test examples are computed to illustrate the accuracy, reliability, and efficien6y of the proposed fully automated solution algorithm.
机译:本文分析了非常规Sturm-Liouville型与不完全热接触的3-D两组分平板稳态热传导相关的横向特征值问题。特别是,它描述了从所考虑的两层平行六面体固有的六个合适的“均质平行六面体”的横向方向获得的物理洞察力如何能够提供有关最佳包围边界(上下限)的有用且合理准确的信息。横向特征条件的根(特征值)。实际上,这一信息使人们能够为寻根迭代(例如,Muellers方法)建立起点(初始猜测),从而可以绝对保证迭代的收敛。计算了代表性的测试示例,以说明所提出的全自动解决方案算法的准确性,可靠性和效率。

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