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Comparison of Exact Solutions for Heat Transfer in Extended Surfaces of Different Geometries

机译:不同几何形状扩展表面传热的精确解决方案的比较

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摘要

We consider a steady state problem for heat transfer in fins of various geometries, namely, rectangular, radial, and spherical. Thenonlinear steady state problem is linearizable provided that the thermal conductivity is the differential consequence of the term involving the heat transfer coefficient. As such, one is able to construct exact solutions. On the other hand, we employ the Lie point symmetry methods when the problem is not linearizable. Some interesting results are obtained and analyzed. The effects of the parameters such as thermogeometric fin parameter and the exponent on temperature are studied. Furthermore, fin efficiency and heat flux along the fin length of a spherical geometry are also studied.
机译:我们考虑一种稳定的状态问题,用于各种几何形状的翅片,即矩形,径向和球形的传热。然后,提供了导热率是涉及传热系数的术语的差异后果的线性化。因此,人们能够构建精确的解决方案。另一方面,当问题不可直通时,我们采用Lie点对称方法。获得并分析了一些有趣的结果。研究了参数如热诊断翅片参数和指数在温度下的影响。此外,还研究了沿球形几何形状的翅片长度的翅片效率和热通量。

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