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Computational Analysis Of Heat Transfer And Pressure Drop Performance For Internally Finned Tubes With Three Different Longitudinal Wavy Fins

机译:具有三个不同纵向波浪形翅片的内部翅片管的传热和压降性能的计算分析

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摘要

Turbulent pressure drop and heat transfer characteristics in tubes with three different kinds of internally longitudinal fin patterns (interrupted wavy, sinusoidal wavy and plain) are numerically investigated for Re = 904-4,520. The channel velocity, temperature, and turbulence fields are obtained to discern the mechanisms of heat transfer enhancement. Numerical results indicate that the steady and spatially periodic growth and disruption of cross-sectional vortices occur near the tube/fin walls along the streamwise locations. The thermal boundary layers near the tube/fin surfaces are thereby periodically interrupted, with heat transfer near the recirculation zones being enhanced. The overall heat transfer coefficients in wavy channels are higher than those in a plain fin channel, while with larger pressure drop penalties. At the same waviness, the interrupted wavy fin tube could enhance heat transfer by 72-90%, with more than 2-4 times of pressure drop penalty. Among the fins studied, the sinusoidal wavy fin has the best comprehensive performance.
机译:对Re = 904-4,520的三种内部纵向翅片样式(间断波浪形,正弦波浪形和平原形)的管中的湍流压降和传热特性进行了数值研究。获得通道速度,温度和湍流场以识别传热增强的机理。数值结果表明,沿涡流位置在管/翅片壁附近发生了截面涡的稳定和空间周期性增长和破坏。因此,管/翅片表面附近的热边界层被周期性地打断,再循环区域附近的热传递得以增强。波浪形通道中的总传热系数高于平翅片通道中的传热系数,但压降损失较大。在相同的波纹度下,波浪状的翅片管中断可以使传热提高72-90%,压降损失是2-4倍以上。在研究的鳍片中,正弦波浪形鳍片具有最佳综合性能。

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