1. 西安交通大学机械制造系统工程国家重点实验室,西安,710049
2. 广东西安交通大学研究院,广东,佛山,528000
网络首发:2019-09-10,
纸质出版:2019
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徐亮 1, 2, 熊堰宏 1, 等. 倾斜螺纹孔射流传热特性的数值研究[J]. 西安交通大学学报, 2019,53(9):120-128+182.
Numerical Study on the Heat Transfer Characteristics of Inclined Thread-Hole Jet[J]. 2019, 53(9): 120-128+182.
徐亮 1, 2, 熊堰宏 1, 等. 倾斜螺纹孔射流传热特性的数值研究[J]. 西安交通大学学报, 2019,53(9):120-128+182. DOI: 10.7652/xjtuxb201909016.
Numerical Study on the Heat Transfer Characteristics of Inclined Thread-Hole Jet[J]. 2019, 53(9): 120-128+182. DOI: 10.7652/xjtuxb201909016.
为了提高传统圆孔冲击射流的冷却效果
提出采用螺纹孔来代替圆孔
并采用数值模拟方法研究了倾斜状态下螺纹孔旋转冲击射流的复杂流动状态和传热性能
研究的影响因素包括射流倾斜角(α=45°~90°)、冲击距离(H/d=2
4
6)、雷诺数(Re=6 000~24 000)。研究结果表明:倾斜角和冲击距离对射流空间内旋涡的大小、形状和位置有较大的影响; 在倾斜状态下
旋转射流冲击冷却效果要优于圆孔射流
但当α=45°时
旋转射流冲击靶面的对流传热效果会明显恶化; 当Re=6 000
α=60°
H/d分别为2、4和6时
旋转射流靶面中心努塞尔数Nu比圆孔射流靶面中心Nu分别高139.9%、107.2%、27.3%; 当冲击距离相同时
旋转射流靶面平均努塞尔数高于圆孔射流。与圆孔射流相比
Re≤18 000下提高射流Re
旋转射流能显著增强靶面传热能力。
To improve the cooling effect of traditional circular impinging jet
screw hole is used to replace the round hole.The complex flow and heat transfer performance of the swirling impinging jet with an inclined screw hole are studied by numerical simulation.The influencing factors include jet inclination angle(-=45- - 90-)
impingement distance(H/d=2
4
6)
and Reynolds number(Re=6 000 - 24 000).The results show that the inclination angle and impact distance have great influences on the si-e
shape and position of vortices in the jet space.Under inclined screw-hole conditions
the impingement cooling effect of rotating jet is better than that of circular-hole jet
but when the inclination angle is equal to 45-
the convective heat transfer effect of the swirling jet impinging on target surface may deteriorate obviously.When Re=6 000
-=60- and the impingement distances H/d are 2
4 and 6
the Nusselt number at the center of swirling jet target surface is 139.9%
107.2% and 27.3% high
HUANG L, EL-GENK M S.Heat transfer and flow visualization experiments of swirling, multi-channel, and conventional impinging jets [J].International Journal of Heat and Mass Transfer, 1998, 41(3): 583-600.
KUMAR S S, HINDASAGERI V, PRABHU S V.Local heat transfer distribution on a flat plate impinged by a swirling jet generated by a twisted tape [J].International Journal of Thermal Sciences, 2017, 111: 351-368.
兰进, 徐亮, 马永浩, 等.实验研究类螺纹孔旋流冲击射流的冷却特性 [J].西安交通大学学报, 2018, 52(1): 8-13.
LAN Jin, XU Liang, MA Yonghao, et al.Experimental research on the cooling characteristics by swirling impinging jet from a nozzle with internal thread [J].Journal of Xi'an Jiaotong University, 2018, 52(1): 8-13.
XU L, LAN J, MA Y H, et al.Numerical study on heat transfer by swirling impinging jets issuing from a screw-thread nozzle [J].International Journal of Heat and Mass Transfer, 2017, 115: 232-237.
孙世杰.增材制造方法生产的合金零件将被应用于飞机发动机涡轮叶片 [J].粉末冶金工业, 2015, 25(1): 65-66.
SUN Shijie.Alloy parts manufactured by augmented material manufacturing method will be applied to turbine blades of aircraft engines [J].Powder Metallurgy Industry, 2015, 25(1): 65-66.
徐文涛.增材制造在燃气轮机中的应用 [J].燃气轮机技术2017, 30(3): 61-64.
XU Wentao.Application of additive manufacturing in the manufacture of gas turbine [J].Gas Turbine Technology, 2017, 30(3): 61-64.
YOON S H, KIM M K, LEE D H.Turbulent flow and heat transfer characteristics of a two dimensional oblique plate impinging jet [J].KSME International Journal, 1997, 11(4): 476-483.
YAN X, SANIEI N.Heat transfer from an obliquely impinging circular air jet to a flat plate [J].International Journal of Heat and Fluid Flow, 1997, 18(6): 591-599.
O'DONOVAN T S, MURRAY D B.Fluctuating fluid flow and heat transfer of an obliquely impinging air jet [J].International Journal of Heat and Mass Transfer, 2008, 51(25/26): 6169-6179.
SPARROW E M, LOVELL B J.Heat transfer characteristics of an obliquely impinging circular jet [J].Journal of Heat Transfer, 1980, 102(2): 202-209.
GOLDSTEIN R J, FRANCHETT M E.Heat transfer from a flat surface to an oblique impinging jet [J].Journal of Heat Transfer, 1988, 110(1): 84-90.
AKANSU Y E, SARIOGLU M, KUVVET K, et al.Flow field and heat transfer characteristics in an oblique slot jet impinging on a flat plate [J].International Communications in Heat and Mass Transfer, 2008, 35(7): 873-880.
BEITELMAL A H, SAAD M A, PATEL C D.The effect of inclination on the heat transfer between a flat surface and an impinging two-dimensional air jet [J].International Journal of Heat and Fluid Flow, 2000, 21(2): 156-163.
YI S J, KIM M, KIM D, et al.Transient temperature field and heat transfer measurement of oblique jet impingement by thermographic phosphor [J].International Journal of Heat and Mass Transfer, 2016, 102: 691-702.
BHAGWAT A B, SRIDHARAN A.Numerical simulation of oblique air jet impingement on a heated flat plate [J].Journal of Thermal Science and Engineering Applications, 2017, 9(1): 011017.
CHUANG S H, WEI C Y.Computations for a jet impinging obliquely on a flat surface [J].International Journal for Numerical Methods in Fluids, 1991, 12(7): 637-653.
陈庆光, 徐忠, 吴玉林, 等.平面倾斜冲击射流场的数值分析 [J].工程热物理学报, 2005, 26(2): 237-239.
CHEN Qingguang, XU Zhong, WU Yulin, et al.Numerical analysis of a planar oblique impinging jet flow field [J].Journal of Engineering Thermophysics, 2005, 26(2): 237-239.
黄华坤,孙铁志,尤天庆,等.考虑转捩的SST模型在冲击射流传热中的应用 [J].2019,53(5):92-99.[doi:10.7652/xjtuxb201905013]
张蓓乐,陈小砖,薛绒,等.采用液氮喷雾技术的低温环路结构模拟系统研究 [J].2019,53(5):109-114.[doi:10.7652/xjtuxb201905015]
姚韵嘉,祝培源,陶志,等.间隙射流对端壁气膜冷却性能影响的实验研究 [J].2019,53(3):43-49.[doi:10.7652/xjtuxb 201903007]
张垲垣,李志刚,宋立明,等.槽缝射流旋流比和密度比对涡轮端壁冷却和吸力面泛冷却性能的影响 [J].2018,52(9):95-101.[doi:10.7652/xjtuxb201809013]
宗潇,刘浩,杨赪石,等.高速蒸汽与过冷水直接接触凝结局部换热特性研究 [J].2018,52(9):134-139.[doi:10.7652/xjtuxb201809018]
宗潇,刘继平,杨赪石,等.矩形通道内蒸汽射流凝结换热面积的实验研究 [J].2018,52(7):46-51.[doi:10.7652/xjtuxb 201807007]
陈喆,吴九汇,任阿丹,等.矩形喷嘴超声速射流啸叫模式切换的分布性研究 [J].2018,52(5):62-68.[doi:10.7652/xjtuxb201805009]
兰进,徐亮,马永浩,等.实验研究类螺纹孔旋流冲击射流的冷却特性 [J].2018,52(1):8-13.[doi:10.7652/xjtuxb2018 01002]
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