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NUMERICAL INVESTIGATION OF THERMAL PERFORMANCE OF A TUBE FITTED WITH REGULARLY SPACED TWISTED TAPE ELEMENTS

机译:装有规则间距扭转带元件的管的热性能的数值研究

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This work presents a numerical investigation on thermal performance of a tube fitted with regularly spaced twisted tape elements in turbulent flow regime. Two different twisted tape widths of 46 mm and 44 mm which are lower than the tube inside diameter of 50 mm are used, in order to reduce excessive pressure drops associated with full width twisted tape elements. The numerical analyses were performed with various free space ratios (5=0.0, 1.0, and 2.0) at a constant twist ratio (TR) of 5. Uniform heat flux was applied to the external surface of the tube and Reynolds numbers varied from 5918 to 46875 in the numerical calculations. The numerical results obtained from a plain tube were compared with those from the studies in literature for validation of numerical technique. The use of twisted tape elements leads to a considerable increase in heat transfer and pressure drop over the plain tube. Consequently, the numerical results reveal that the best operating regime of all twisted tape elements was found at low Reynolds number, leading to more compact heat exchanger.
机译:这项工作提出了在湍流状态下装有规则间隔的扭曲带状元件的管的热性能的数值研究。为了减小与全宽度扭曲带元件相关的过大的压降,使用了两种不同的扭曲带宽度,该宽度小于管内直径50 mm,分别为46 mm和44 mm。在恒定的扭曲比(TR)为5的情况下,使用各种自由空间比率(5 = 0.0、1.0和2.0)进行了数值分析。均匀的热通量施加到管子的外表面,雷诺数从5918变为0。在数值计算中为46875。从普通管中获得的数值结果与文献中的数值结果进行了比较,以验证数值技术。扭曲的带状元件的使用导致在普通管上的热传递和压降显着增加。因此,数值结果表明,在较低的雷诺数下,所有扭曲的带状元件都具有最佳的工作状态,从而使热交换器更紧凑。

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