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首页> 外文期刊>Advances in Mechanical Engineering >Laminar Mixed Convection in the Entrance Region of Horizontal and Inclined Semicircular Ducts
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Laminar Mixed Convection in the Entrance Region of Horizontal and Inclined Semicircular Ducts

机译:水平和倾斜半圆管入口区域的层流混合对流

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摘要

Laminar mixed convection in the entrance region of horizontal and inclined semicircular ducts has been investigated. The governing momentum and energy equations were solved numerically using a marching technique with finite control volume approach following the SIMPLER algorithm. Results were obtained for thermal boundary condition of uniform heat input axially and uniform wall temperature circumferentially, incorporating Pr = 7, Re = 500, inclination angles (α = 0° and 20°), and a wide range of Grashof numbers. These results include velocity and temperature distributions at different axial locations as well as axial distribution of local Nusselt number and local wall friction factor. It was found that Nusselt number is close to the forced convection values near the entrance region, then decreases to minimum value as the distance from the entrance increases, and then rises due to the effect of free convection before reaching a constant value (fully developed). As Grashof number increases Nusselt number and wall friction factor increase in both developing and fully developed regions for horizontal and inclined ducts. A comparison with the experimental data in the thermal entrance region was also conducted and the comparison was satisfactory.
机译:研究了水平和倾斜半圆形管道入口区域的层流混合对流。遵循SIMPLER算法,使用有限控制体积法的行进技术对控制动量和能量方程进行了数值求解。对于轴向均匀输入热量和周向均匀壁温的热边界条件,结合了Pr = 7,Re = 500,倾斜角(α= 0°和20°)以及广泛的Grashof数,获得了结果。这些结果包括不同轴向位置的速度和温度分布,以及局部Nusselt数和局部壁摩擦系数的轴向分布。发现努塞尔特数接近入口区域附近的强制对流值,然后随着距入口的距离增加而减小到最小值,然后由于自由对流的作用而上升,然后达到恒定值(充分展开) 。随着Grashof数的增加,水平和倾斜管道的发育区域和完全发达区域中的Nusselt数和壁摩擦系数都会增加。还与热入口区域中的实验数据进行了比较,该比较令人满意。

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