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Convective-radiative radial fins with convective base heating and convective-radiative tip cooling: Homogeneous and functionally graded materials

机译:具有对流基础加热和对流辐射尖端冷却的对流辐射径向鳍片:均质且功能梯度材料

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This paper studies a radial fin of uniform thickness with convective heating at the base and convective-radiative cooling at the tip. The fin is assumed to experience uniform internal heat generation. The exposed surfaces of the fin lose heat by simultaneous convection and radiation to the surroundings. Two types of fin materials are investigated: homogeneous material and functionally graded material (FGM). For the homogeneous material, the thermal conductivity is assumed to be a linear function of temperature, while for the FGM fin the thermal conductivity is modeled as a linear function of the dimen-sionless radial coordinate. The analysis is conducted using the differential transformation method (DTM). The accuracy of DTM is verified by comparing the results for the simplified versions of the present model with an exact analytical solution derived here. Once the accuracy of DTM is authenticated, the method is used to generate results for the general problem formulated here. These results illustrate the effects of various dimensionless parameters on the thermal performance of homogeneous material fins and FGM fins.
机译:本文研究了具有均匀厚度的径向散热片,其底部具有对流加热,尖端处具有对流辐射冷却。假定该鳍片经历均匀的内部发热。鳍片的暴露表面通过同时对流和辐射到周围环境而散发热量。研究了两种类型的翅片材料:均质材料和功能梯度材料(FGM)。对于均质材料,假定导热系数是温度的线性函数,而对于FGM鳍,则将导热系数建模为无维径向坐标的线性函数。使用差分变换方法(DTM)进行分析。通过将本模型的简化版本的结果与此处导出的精确分析解决方案进行比较,可以验证DTM的准确性。一旦验证了DTM的准确性,就可以使用该方法生成此处提出的一般问题的结果。这些结果说明了各种无量纲参数对均质材料鳍片和FGM鳍片的热性能的影响。

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