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A decomposition method for fin efficiency of convective straight fins with temperature-dependent thermal conductivity

机译:导热系数随温度变化的对流直翅片翅片效率的分解方法

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The Adomian decomposition method (ADM) has been used to evaluate the efficiency of straight fins with temperature-dependent thermal conductivity and to determine the temperature distribution within the fin. The method is useful and practical for solving the nonlinear heat diffusion equation, which is associated with variable thermal conductivity condition. The ADM provides an analytical solution in the form of an infinite power series. The fin efficiency of the straight fins with temperature-dependent thermal conductivity has been obtained as a function of thermo-geometric fin parameter and the thermal conductivity parameter describing the variation of the thermal conductivity. It has been observed that the thermal conductivity parameter has a strong influence over the fin efficiency. The data from the present solutions has been correlated for a wide range of thermo-geometric fin parameter and the thermal conductivity parameter. The resulting correlation equations can assist thermal design engineers for designing of straight fins with temperature-dependent thermal conductivity.
机译:Adomian分解方法(ADM)已用于评估具有温度依赖性导热系数的直翅片的效率,并确定翅片内的温度分布。该方法对于求解与可变热导率条件有关的非线性热扩散方程是有用且实用的。 ADM提供了无限幂级数形式的分析解决方案。已经获得了具有随温度变化的导热率的直翅片的翅片效率,该翅片效率是热几何翅片参数和描述导热系数变化的导热系数的函数。已经观察到,热导率参数对散热片效率有很大的影响。来自本解决方案的数据已经针对大范围的热几何鳍片参数和热导率参数进行了关联。所得的相关方程可以帮助热设计工程师设计具有随温度变化的导热系数的直翅片。

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