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Efficiency analysis of straight fin with variable heat transfer coefficient and thermal conductivity

机译:传热系数和导热系数可变的直翅片效率分析

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摘要

In this study, one type of applicable analytical method, differential transformation method (DTM), is used to evaluate the efficiency and behavior of a straight fin with variable thermal conductivity and heat transfer coefficient. Fins are widely used to enhance heat transfer between primary surface and the environment in many industrial applications. The performance of such a surface is significantly affected by variable thermal conductivity and heat transfer coefficient, particularly for large temperature differences. General heat transfer equation related to the fin is derived and dimensionalized. The concept of differential transformation is briefly introduced, and then this method is employed to derive solutions of nonlinear equations. Results are evaluated for several cases such as: laminar film boiling or condensation, forced convection, laminar natural convection, turbulent natural convection, nucleate boiling, and radiation. The obtained results from DTM are compared with the numerical solution to verify the accuracy of the proposed method. The effects of design parameters on temperature and efficiency are evaluated by some figures. The major aim of the present study, which is exclusive for this article, is to find the effect of the modes of heat transfer on fin efficiency. It has been shown that for radiation heat transfer, thermal efficiency reaches its maximum value.
机译:在这项研究中,一种适用的分析方法,即微分变换法(DTM),用于评估具有可变导热系数和传热系数的直翅片的效率和性能。在许多工业应用中,翅片被广泛用于增强主表面和环境之间的热传递。这种表面的性能会受到可变的热导率和热传递系数的显着影响,尤其是对于较大的温差。推导了与翅片有关的一般传热方程并进行了尺寸计算。简要介绍了微分变换的概念,然后将该方法用于导出非线性方程的解。对几种情况的结果进行了评估,例如:层流薄膜沸腾或冷凝,强制对流,层流自然对流,湍流自然对流,成核沸腾和辐射。将DTM获得的结果与数值解进行比较,以验证所提方法的准确性。一些数字评估了设计参数对温度和效率的影响。本研究的主要目的是发现传热方式对散热片效率的影响,这是本文所独有的。已经表明,对于辐射热传递,热效率达到其最大值。

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