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Natural convection heat transfer in an oscillating vertical cylinder

机译:振荡垂直圆柱体中的自然对流传热

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摘要

This paper studies the heat transfer analysis caused due to free convection in a vertically oscillating cylinder. Exact solutions are determined by applying the Laplace and finite Hankel transforms. Expressions for temperature distribution and velocity field corresponding to cosine and sine oscillations are obtained. The solutions that have been obtained for velocity are presented in the forms of transient and post-transient solutions. Moreover, these solutions satisfy both the governing differential equation and all imposed initial and boundary conditions. Numerical computations and graphical illustrations are used in order to study the effects of Prandtl and Grashof numbers on velocity and temperature for various times. The transient solutions for both cosine and sine oscillations are also computed in tables. It is found that, the transient solutions are of considerable interest up to the times t = 15 for cosine oscillations and t = 1.75 for sine oscillations. After these moments, the transient solutions can be neglected and, the fluid moves according with the post-transient solutions.
机译:本文研究了由于垂直振动圆柱体中的自由对流引起的传热分析。确切的解决方案是通过应用Laplace和有限的Hankel变换确定的。得到了对应于余弦和正弦振荡的温度分布和速度场的表达式。对于速度获得的解以瞬态和瞬态后解的形式表示。而且,这些解决方案既满足控制微分方程,又满足所有施加的初始条件和边界条件。为了研究Prandtl和Grashof数在不同时间的速度和温度的影响,使用了数值计算和图解说明。表中还计算了余弦和正弦振荡的瞬态解。已经发现,对于余弦振荡,直到时间t = 15,对于正弦振荡,t = 1.75为止,瞬态解引起了人们的极大兴趣。在这些时刻之后,可以忽略瞬态解,并且流体根据瞬态后解运动。

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