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ANALYSIS OF MIXED CONVECTION IN VERTICAL CONVERGENT CHANNELS

机译:垂直收敛通道混合对流分析

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Air mixed convection in a convergent channel with the two principal flat plates at uniform heat flux is analyzed numerically. In the considered system two parallel adiabatic extensions are placed downstream the convergent channel. The forced flow is obtained by imposing a pressure drop between the inlet and the outlet of the channel. The flow in the channel is assumed to be two-dimensional, turbulent and incompressible. A k-ε turbulent model is employed. Results in terms of dimensionless wall temperature distribution as a function of the walls converging angle, the Grashof number and the pressure drop are presented in the ranges: 0≤ΔP≤2.2×10{sup}7, 2.8×10{sup}4≤Gr≤2.1×10{sup}5. Results show that increasing the angle of converging the Reynolds number increases at the same pressure drop. The larger the pressure drop the smaller the contribution of the free convection to the Reynolds number. Increasing the converging angle only slightly increases the ΔP value for which the effect of free convection is negligible.
机译:在数值上分析了具有两个主平板的收敛通道中的气流对流。在所考虑的系统中,两个平行的绝热延伸部放置在收敛通道下游。通过施加通道的入口和出口之间的压降来获得强制流动。假设信道中的流动是二维,湍流和不可压缩的。采用K-ε湍流模型。导致无量纲壁温分布作为壁的函数聚合角度,格雷夫数和压降呈现在范围内:0≤Δp≤2.2×10 {sup} 7,2.8×10 {sup}4≤ gr≤2.1×10 {sup} 5。结果表明,在相同的压降下增加会聚雷诺数的角度增加。压力下降越大,对雷诺数的自由对流的贡献越小。增加会聚角仅略微增加自由对流效果可以忽略不计的ΔP值。

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