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第 4 期 文武翊, 等: 高速航空锥齿轮线速度对喷油润滑流场与温度场影响研究 535
simulate gears, bearings, and pumps[J]. Applied Sciences, 2020, 1767815.
10(24): 8810. doi: 10.3390/app10248810. [21] Simmons K, Johnson G, Wiedemann N. Effect of pressure and oil
[10] Liu Hua, Jurkschat T, Lohner T, et al. Detailed investigations on the mist on windage power loss of a shrouded spiral bevel gear[J].
oil flow in dip-lubricated gearboxes by the finite volume CFD Journal of Engineering for Gas Turbines and Power, 2012, 134(8):
method[J]. Lubricants, 2018, 6(2): 47. doi: 10.3390/ 081202. doi: 10.1115/1.4005984.
lubricants6020047. [22] Massini D, Fondelli T, Andreini A, et al. Experimental and
[11] Liu H, Link F, Lohner T, et al. Computational fluid dynamics numerical investigation on windage power losses in high speed
simulation of geared transmissions with injection lubrication[J]. gears[J]. Journal of Engineering for Gas Turbines and Power, 2018,
Proceedings of the Institution of Mechanical Engineers, Part C: 140(8): 082508. doi: 10.1115/1.4038471.
Journal of Mechanical Engineering Science, 2019, 233(21–22): [23] Hill M J, Kunz R F, Medvitz R B, et al. CFD analysis of gear
7412–7422. doi: 10.1177/0954406219865920. windage losses: validation and parametric aerodynamic studies[J].
[12] Hildebrand L, Dangl F, Sedlmair M, et al. CFD analysis on the oil Journal of Fluids Engineering, 2011, 133(3): 031103. doi: 10.1115/
flow of a gear stage with guide plate[J]. Forsch Ingenieurwes, 2022, 1.4003681.
86(3): 395–408. doi: 10.1007/s10010-021-00523-5. [24] Aktas M K, Yavuz M A, Ersan A K. Computational fluid dynamics
[13] Wang Yanzhong, Song Guanhua, Niu Wentao, et al. Influence of oil simulations of windage loss in a spur gear[C]//Volume 2C:
injection methods on the lubrication process of high speed spur Turbomachinery. June 11–15, 2018. Oslo, Norway. American
gears[J]. Tribology International, 2018, 121: 180–189. doi: 10.1016/ Society of Mechanical Engineers, 2018. doi:10.1115/gt2018-76828.
j.triboint.2018.01.062. [25] Concli F, Gorla C. Windage, churning and pocketing power losses
[14] Keller M C, Kromer C, Cordes L, et al. CFD study of oil-jet gear of gears: different modeling approaches for different goals[J].
interaction flow phenomena in spur gears[J]. The Aeronautical Forschung Im Ingenieurwesen, 2016, 80(3): 85–99. doi: 10.1007/
Journal, 2020, 124(1279): 1301–1317. doi: 10.1017/aer.2020.44. s10010-016-0206-9.
[15] Hashimoto H, Arisawa H, Kondo K, et al. Computational fluid [26] Zhu Xiang, Dai Yu, Ma Feiyue. CFD modelling and numerical
dynamics in a fan-drive gear system of an aeroengine[C]//Volume 1: simulation on windage power loss of aeronautic high-speed spiral
Aircraft Engine. June 26–30, 2023. Boston, Massachusetts, USA. bevel gears[J]. Simulation Modelling Practice and Theory, 2020,
American Society of Mechanical Engineers, 2023. doi:10.1115/ 103: 102080. doi: 10.1016/j.simpat.2020.102080.
gt2023-101589. [27] Arisawa H, Tanaka M, Hashimoto H, et al. Applicability of
[16] Townsend D P, Akin L S. Analytical and experimental spur gear numerical simulation to the classification of fluid dynamic loss in
tooth temperature as affected by operating variables[J]. Journal of aeroengine transmission gears[C]//Volume 1: Aircraft Engine. June
Mechanical Design, 1981, 103(1): 219–226. doi: 10.1115/1. 26–30, 2023. Boston, Massachusetts, USA. American Society of
3254868. Mechanical Engineers, 2023. doi:10.1115/gt2023-100546.
[17] Massini D, Fondelli T, Facchini B, et al. Experimental Investigation [28] Dawson P H. Windage loss in larger high-speed gears[J].
on Power Losses due to Oil Jet Lubrication in High Speed Gearing Proceedings of the Institution of Mechanical Engineers, Part A:
Systems[C]//Volume 5B: Heat Transfer. June 26–30, 2017. Power and Process Engineering, 1984, 198(1): 51–59. doi: 10.1243/
Charlotte, North Carolina, USA. American Society of Mechanical pime_proc_1984_198_007_02.
Engineers, 2017. doi:10.1115/gt2017-64703. [29] Deshpande S, Joshi H, Madhavan J, et al. Two-way coupled CFD
[18] Delgado I R, Hurrell M J. Baseline experimental results on the effect approach for predicting gear temperature of oil jet lubricated
of oil temperature on shrouded meshed spur gear windage power transmissions[J]. SAE International Journal of Commercial
loss[C]//International Design Engineering Technical Conferences Vehicles, 2018, 11(3): 163–170. doi: 10.4271/02-11-03-0013.
and Computers and Information in Engineering Conference. [30] Jiang Xinghe, Zhou Changjiang, Su Jie, et al. Injection parameter
American Society of Mechanical Engineers, August 6–9, 2017. design to improve the high-speed gear heat dissipation: CFD
Cleveland, Ohio, USA. 58240: V010T11A040. simulation and regression orthogonal experiment[J]. Simulation
doi:10.1115/DETC2017-67818. Modelling Practice and Theory, 2023, 128: 102795. doi: 10.1016/j.
[19] Diab Y, Ville F, Velex P. Investigations on power losses in high- simpat.2023.102795.
speed gears[J]. Proceedings of the Institution of Mechanical [31] Chen Taimin, Zhu Caichao, Liu Huaiju, et al. Simulation and
Engineers, Part J: Journal of Engineering Tribology, 2006, 220(J3): experiment of carburized gear scuffing under oil jet lubrication[J].
191–198. doi: 10.1243/13506501jet136. Engineering Failure Analysis, 2022, 139: 106406. doi: 10.1016/j.
[20] Diab Y, Ville F, Velex P, et al. Windage losses in high speed engfailanal.2022.106406.
gears —preliminary experimental and theoretical results[J]. Journal [32] Chen Taimin, Wei Peitang, Zhu Caichao, et al. Experimental
of Mechanical Design, 2004, 126(5): 903–908. doi: 10.1115/1. investigation of gear scuffing for various tooth surface treatments[J].