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An Exact Solution to Steady Heat Conduction in a Two-Dimensional Annulus on a One-Dimensional Fin: Application to Frosted Heat Exchangers With Round Tubes

机译:一维翅片上二维环空中稳态导热的精确解:在圆管磨砂热交换器中的应用

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摘要

The fin efficiency of a high-thermal-conductivity substrate coated with a low-thermal-conductivity layer is considered, and an analytical solution is presented and compared to alternative approaches for calculating fin efficiency. This model is appropriate for frost formation on a round-tube-and-fin metallic heat exchanger, and the problem can be cast as conduction in a composite two-dimensional circular cylinder on a one-dimensional radial fin. The analytical solution gives rise to an eigenvalue problem with an unusual orthogonality condition. A one-term approximation to this new analytical solution provides fin efficiency calculations of engineering accuracy for a range of conditions, including most frosted-coated metal fins. The series solution and the one-term approximation are of sufficient generality to be useful for other cases of a low-thermal-conductivity coating on a high-thermal-conductivity substrate.
机译:考虑了涂覆有低导热率层的高导热率基板的鳍片效率,并提出了一种分析解决方案,并将其与计算鳍片效率的替代方法进行了比较。该模型适用于圆管翅片式金属换热器上的结霜,并且该问题可以通过一维径向翅片上的复合二维圆柱体中的传导来解决。解析解引起了具有异常正交性条件的特征值问题。这一新分析解决方案的一阶近似值可提供多种条件下的工程精度翅片效率计算,包括大多数磨砂涂层金属翅片。级数解和一阶近似具有足够的通用性,可用于在高导热率基板上的低导热率涂层的其他情况。

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