Effects of Curved Ribs on Heat Transfer, Friction and Exergy Loss in Rectangular Cooling Channels by CFD

被引:0
作者
Fifi N. M. Elwekeel
Antar M. M. Abdala
Qun Zheng
机构
[1] Helwan University,Faculty of Industrial Education
[2] Helwan University,Faculty of Engineering
[3] Matareya Branch,undefined
[4] Harbin Engineering University,undefined
来源
Iranian Journal of Science and Technology, Transactions of Mechanical Engineering | 2021年 / 45卷
关键词
Heat transfer; Exergy loss; Curved rib; Internal cooling; CFD;
D O I
暂无
中图分类号
学科分类号
摘要
In the present work, the effects of radii ratios of curved rib on heat transfer performance, friction factor, thermal performance factor and exergy loss in roughened duct are investigated. The curved ribs are formed in concave and convex shapes, with and without cut. Reynolds number values are varied in the range of 5000 to 30,000, which were most suitable for roughened duct. The radii ratios of curved rib are studied with values of (2, 3 and 4), and the effects are discussed and compared with the transverse straight rib (R00). The results show that the heat transfer enhances by using a convex broken rib at different radii ratios. The curved rib with a radius ratio of 2 offers the best heat transfer characteristics and exergy loss compared with the other cases. Convex broken rib (case D) shows the highest thermal performance factor compared with the other investigated cases. Case D shows a good improvement in heat transfer with lower pumping power consumption compared with the other investigations.
引用
收藏
页码:1045 / 1056
页数:11
相关论文
共 65 条
[1]  
Al-Qahtani M(2002)Prediction of flow and heat transfer in rotating two-pass rectangular channels with 45-deg rib turbulators J Turbomach 124 242-250
[2]  
Jang YJ(2017)Numerical investigation of turbulent flow and heat transfer in two-pass ribbed channels Int J Therm Sci 112 31-43
[3]  
Chen HC(2000)Detailed mass transfer distribution in a ribbed coolant passage with a 180° bend Int J Heat Mass Transf 43 1479-1492
[4]  
Han JC(2014)Air/mist cooling in a rectangular duct with varying shapes of ribs Proc IMechE Part C J Mech Eng Sci 228 1925-1935
[5]  
Bharath VR(2005)Heat transfer in two-pass rotating rectangular channels (AR = 1:2 and AR = 1:4) with 45° angled rib turbulators J Heat Transf 127 265-277
[6]  
Prashant S(1984)Heat transfer and friction in channels with two opposite rib roughened walls J Heat Transf 106 774-781
[7]  
Srinath VE(1988)Developing heat transfer in rectangular channels with rib turbulators Int J Heat Mass Transf 31 183-195
[8]  
Chen Y(1989)Augmented heat transfer in rectangular channel of narrow aspect ratios with rib turbulators Int J Heat Mass Transf 32 1619-1630
[9]  
Nikitopoulos DE(1991)Augmented heat transfer in square channels with parallel, crossed, and V-shaped angled ribs J Heat Transf 113 590-596
[10]  
Hibbs R(1993)Augmented heat transfer in square channels with wedge-shaped and delta-shaped turbulence promoters J Enhanc Heat Transf 1 37-52