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陶于兵

博士生导师
硕士生导师
职称:教授
教师姓名:陶于兵
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学历:硕博连读
性别:男
学位:博士
在职信息:在职
毕业院校:西安交通大学
所属院系:能源与动力工程学院
学科:动力工程及工程热物理
论文成果
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Three-dimensional numerical study and field synergy principle analysis of wavy fin heat exchangers with elliptic tubes
发布时间:2025-04-30    点击次数:

发布时间:2025-04-30

论文名称:Three-dimensional numerical study and field synergy principle analysis of wavy fin heat exchangers with elliptic tubes

发表刊物:《International Journal of Heat & Fluid Flow》

摘要:Three dimensional numerical studies were performed for laminar heat transfer and fluid flow characteristics of wavy fin heat exchangers with elliptic/circular tubes by body-fitted coordinates system. The simulation results of circular tube were compared with the experiment data, then circular and elliptic ( e = b/ a = 0.6) arrangements with the same minimum flow cross-sectional area were compared. A max relative heat transfer gain of up to 30% is observed in the elliptic arrangement, and corresponding friction factor only increased by about 10%. The effects of five factors on wavy fin and elliptic tube heat exchangers were examined: Reynolds number (based on the smaller ellipse axis, 500 65 4000), eccentricity ( b/ a, 0.6 65 1.0), fin pitch ( F p/2 b, 0.05 65 0.4), fin thickness ( F t/2 b, 0.006 65 0.04) and tube spanwise pitch ( S 1/2 b, 1.0 65 2.0). The results show that with the increasing of Reynolds number and fin thickness, decreasing of the eccentricity and spanwise tube pitch, the heat transfer of the finned tube bank are enhanced with some penalty in pressure drop. There is an optimum fin pitch ( F p/2 b = 0.1) for heat transfer, but friction factor always decreases with increase of fin pitch. And when F p/2 b is larger than 0.25, it has little effects on heat transfer and pressure drop. The results were also analyzed from the view point of field synergy principle. It was found that the effects of the five factors on the heat transfer performance can be well described by the field synergy principle.

合写作者:YB Tao , YL He , ZG Wu , WQ Tao

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发表时间:2007-04-03