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Experimental studies of flow characteristics in corrugated ducts

机译:波纹管流动特性的实验研究

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Structures of flow in a corrugated duct were experimentally examined employing the technique of Particle Image Velocimetry (PIV). The aspect ratio of the corrugated channel was selected as 0.3. Understanding the influences of phase shift, phi on the flow behavior and augmentation of heat transfer is one of the main objectives of this experimental work. Therefore, two different phase shifts such as phi = 0 degrees and 90 degrees and two different Reynolds Numbers, Re of 2 x 10(3) and 6 x 10(3) have been investigated for the available corrugated channel. In order to obtain the physics of the flow characteristics of the corrugated channel, the Turbulence Kinetic Energy, TKE, vorticity, and time-average velocity contours were calculated for both Reynold numbers, Re and phase shifts, phi. The experimental results revealed that transporting energy and increasing of momentum transfer by corrugated channel caused a better augmentation of the heat transfer rate for both phase shift angles than the smooth channel. It appears that the turbulence generated by the sharp corner of the corrugated channels is the most influential factor in increasing the entrainment between wake and core flows.
机译:使用粒子图像测速技术(PIV),通过实验检查了波纹管中的流动结构。波纹通道的纵横比选择为0.3。了解相移,phi对流动行为和传热增加的影响是本实验工作的主要目标之一。因此,对于可用的波纹通道,已经研究了两个不同的相移,例如phi = 0度和90度,以及两个不同的雷诺数,Re为2 x 10(3)和6 x 10(3)。为了获得波纹通道流动特性的物理特性,针对雷诺数Re和相移phi计算了湍流动能TKE,涡度和时均速度等高线。实验结果表明,与光滑通道相比,波纹通道的能量传递和动量传递的增加引起了两个相移角传热率的更好提高。似乎由波纹通道的尖角产生的湍流是增加尾流和岩心流之间夹带的最有影响的因素。

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