首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >EFFECT OF EDGE CONDITIONS ON NATURAL CONVECTIVE HEAT TRANSFER FROM A NARROW VERTICAL FLAT PLATE WITH A UNIFORM SURFACE HEAT FLUX
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EFFECT OF EDGE CONDITIONS ON NATURAL CONVECTIVE HEAT TRANSFER FROM A NARROW VERTICAL FLAT PLATE WITH A UNIFORM SURFACE HEAT FLUX

机译:边缘条件对具有均匀表面热通量的窄垂直平板的自然对流换热的影响

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Two-dimensional natural convective heat transfer from vertical plates has been extensively studied. However, when the width of the plate is relatively small compared to its height, the heat transfer rate can be greater than that predicted by these two-dimensional flow results. Because situations that can be approximately modelled as narrow vertical plates occur in a number of practical situations, there exists a need to be able to predict heat transfer rates from such narrow plates. Attention has here been given to a plate with a uniform surface heat flux. The magnitude of the edge effects will, in general, depend on the boundary conditions existing near the edge of the plate. To examine this effect, two situations have been considered. In one, the heated plate is imbedded in a large plane adiabatic surface, the surfaces of the heated plane and the adiabatic surface being in the same plane while in the second there are plane adiabatic surfaces above and below the heated plate but the edge of the plate is directly exposed to the surrounding fluid. The flow has been assumed to be steady and laminar and it has been assumed that the fluid properties are constant except for the density change with temperature which gives rise to the buoyancy forces, this having been treated by using the Boussinesq approach. It has also been assumed that the flow is symmetrical about the vertical centre-plane of the plate. The solution has been obtained by numerically solving the full three-dimensional form of the governing equations, these equations being written in terms of dimensionless variables. Results have only been obtained for a Prandtl number of 0.7. A wide range of the other governing parameters have been considered for both edge situations and the conditions under which three dimensional flow effects can be neglected have been deduced.
机译:来自垂直板的二维自然对流换热已经得到了广泛的研究。但是,当板的宽度与板的高度相比较小时,传热速率可能大于这些二维流动结果所预测的传热速率。因为在许多实际情况中会发生可以近似地建模为狭窄的垂直板的情况,所以需要能够从这种狭窄的板中预测传热速率。在此已经关注具有均匀表面热通量的板。通常,边缘效应的大小将取决于板边缘附近存在的边界条件。为了检查这种效果,考虑了两种情况。在一个中,加热板嵌入在大平面绝热表面中,加热平面的表面和绝热表面在同一平面中,而在第二个加热板的上方和下方则有平面绝热表面,但加热板的边缘板直接暴露在周围的流体中。假定流动是稳定的和层流的,并且假定流体性质是恒定的,除了密度随温度的变化会引起浮力,这已经通过使用Boussinesq方法进行了处理。还已经假定流动关于板的垂直中心平面是对称的。该解决方案是通过对控制方程的完整三维形式进行数值求解而获得的,这些方程是根据无量纲变量来编写的。仅当Prandtl值为0.7时才获得结果。对于两种边缘情况,已经考虑了广泛的其他控制参数,并且推论了可以忽略三维流动效应的条件。

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