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首页> 外文期刊>Letters in heat and mass transfer >Effects Of Discrete Isoflux Heat Source Size And Angle Of Inclination On Natural Convection Heat Transfer Flow Inside A Sinusoidal Corrugated Enclosure
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Effects Of Discrete Isoflux Heat Source Size And Angle Of Inclination On Natural Convection Heat Transfer Flow Inside A Sinusoidal Corrugated Enclosure

机译:等距流源尺寸和倾斜角度对正弦波纹外壳内部自然对流传热的影响

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摘要

The main objective of this article is to study numerically a two-dimensional, steady and laminar viscous incompressible flow in a sinusoidal corrugated inclined enclosure. In this analysis, two vertical sinusoidal corrugated walls are maintained at a constant low temperature whereas a constant heat flux source whose length is varied from 20 to 80% of the total length of the enclosure is discretely embedded at the bottom wall. The Penalty finite element method has been used to solve the governing Navier-Stokes and energy conservation equation of the fluid medium in the enclosure in order to investigate the effects of inclination angles and discrete heat source sizes on heat transfer for different values of Grashof number. Results are presented in the form of streamline and isotherm plots. It is concluded that the average Nusselt number increases as inclination angle increases for different heat source sizes.
机译:本文的主要目的是对正弦波纹状倾斜壳体中的二维,稳定且层流的粘性不可压缩流动进行数值研究。在此分析中,两个垂直的正弦波状波纹壁保持在恒定的低温下,而恒定的热通量源(其长度在外壳总长度的20%到80%之间变化)离散地埋在底壁上。为了研究倾角和离散热源尺寸对不同Grashof数的传热的影响,采用罚分有限元法来求解控制流体介质的控制Navier-Stokes和能量守恒方程。结果以流线图和等温线图的形式呈现。结论是,对于不同热源尺寸,平均努塞尔数随倾斜角的增加而增加。

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