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A Novel Arrangement of Rectangular Fins for the Enhancement of Heat Transfer in a Rectangular Duct

机译:矩形翅片的一种新型布置,用于增强矩形管道中的热传递

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Efficient harvesting of renewable energy such as solar, wind and wave is crucial at present times to meet the increasing demand for the energy in India. Solar air heaters (SAH) which convert solar energy into useful thermal energy for the industrial and agricultural purposes show lower efficiency, inherently due to the low thermal conductivity of the air which results in lesser heat transfer between absorber plate and air. In this paper, we investigate the effect of inclined rectangular fins on the fluid flow and heat transfer inside a rectangular duct SAH. The fins are arranged in such a way that they form a series of converging and diverging passages. The fin height is fixed at half of channel height. Two types of designs are considered: Type 1 (with a 2:1 convergence ratio) and Type 2 (with a 4:1 convergence ratio). CFD analysis is performed by using ANSYS software for both designs with 3, 4, 5, 6 and 7 rows of fins, at Reynolds numbers 4000, 8000, 12,000 and 16,000. The efficiency of the fin is quantified by using dimensionless parameter thermo-hydraulic performance parameter (THPP). The results show that the converging and diverging passages induce swirl in the fluid, which helps in enhancing heat transfer with little increase in friction loses. The swirl flow sustains longer for Type 2 design with higher convergence ratio, thus requiring lesser number of rows of fins compared with Type 1 for the better performance. Also, it is observed that overall the Type 2 arrangement gives higher THPP compared to the Type 1 arrangement with the highest THPP of 1.588 for 5 rows of fins at Reynolds number 8000.
机译:高效收获太阳能,风和波等可再生能源目前至关重要,以满足印度能源的日益增长的需求。太阳能加热器(SAH)将太阳能转化为工业和农业目的的有用的热能,显然是由于空气的导热率低,导致吸收板和空气之间的热传递较小。在本文中,我们研究了倾斜矩形翅片对矩形管道SAH内部流体流动和热传递的影响。翅片以这样的方式布置,使得它们形成一系列会聚和发散通道。翅片高度固定在通道高度的一半。考虑两种类型的设计:1型(具有2:1收敛比)和类型2(具有4:1收敛比)。 CFD分析是通过使用ANSYS软件进行3,4,5,6和7行翅片的设计,在雷诺数4000,8000,12,000和16,000处进行。通过使用无量纲参数热液性能参数(THPP)来定量翅片的效率。结果表明,会聚和发散通道诱导流体中的旋流,这有助于提高热传递,随着摩擦损失几乎没有增加。旋流适用于2型设计,具有较高的收敛比,因此需要较少的翅片数量,而型号为1型以进行更好的性能。此外,观察到,与雷诺数8000的5行鳍片的最高THPP,总体2型布置相比,2型布置给出了更高的THPP。

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