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Effect of Reynolds and Grashof numbers on Laminar Mixed Convection of an Isothermally Heated Vertical Plate Channel

机译:Reynolds和Grashof数字对等温垂直板通道层流混合对流的影响

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In this paper, numerical analysis of laminar mixed convection of an isothermally heated vertical channel has been carried out using finite element method. Both of the side walls of the vertical channel are maintained at constant high temperature, whereas the inlet air follows Poiseuille's velocity profile at cold temperature. To solve this problem, two dimensional Navier-Stokes and energy equations are considered as the governing equations. The variation of flow characteristics are obtained from fixed Grashof number (Gr = 100; Re = 10, 100, 500), fixed Reynolds number (Re = 100; Ri = 0.1, 1, 10) and fixed Richardson number (Ri = 1; Re = 10, 100, 500). The results are presented in terms of isotherms, streamlines, temperatures and velocity profiles across the channel. The results showed that the average Nusselt number on the hot walls increases with the increment of Re at constant Gr. Similar enhancement of heat transfer is observed with the decrement of Ri while Re is kept constant.
机译:本文采用有限元法进行了使用有限元法进行了等温加热垂直通道的层状混合对流的数值分析。垂直通道的两个侧壁保持在恒定的高温下,而入口空气在寒冷温度下遵循Poiseuille的速度曲线。为了解决这个问题,认为二维Navier-Stokes和能量方程被认为是控制方程。从固定的GRASHOF(GR = 100; RE = 10,100,500),固定雷诺数(RE = 100; RI = 0.1,1,10)和固定的Richardson号(RI = 1; Re = 10,100,500)。结果以等温线,流线,温度和速度谱呈列在通道上。结果表明,热壁上的平均篮板数随恒定GR的RE增量而增加。随着R 1的递减,观察到类似的热传递增强,而RE保持恒定。

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