Acta Aeronautica et Astronautica Sinica ›› 2023, Vol. 44 ›› Issue (14): 628325-628325.doi: 10.7527/S1000-6893.2022.28325
• special column • Previous Articles Next Articles
Hui LI, Tong HUANG, Xinrong SU(), Xin YUAN
Received:
2022-11-29
Revised:
2022-12-20
Accepted:
2023-02-06
Online:
2023-07-25
Published:
2023-02-20
Contact:
Xinrong SU
E-mail:suxr@mail.tsinghua.edu.cn
Supported by:
CLC Number:
Hui LI, Tong HUANG, Xinrong SU, Xin YUAN. DDES analysis of unsteady characteristics of interaction between tip leakage flow and wake[J]. Acta Aeronautica et Astronautica Sinica, 2023, 44(14): 628325-628325.
1 | DENTON J D. Loss mechanisms in turbomachines [C]∥ASME 1993 International Gas Turbine and Aeroengine Congress and Exposition. New York: ASME, 1993: V002T14A001. |
2 | AMERI A A, RIGBY D L, STEINTHORSSON E, et al. Unsteady turbine blade and tip heat transfer due to wake passing [C]∥ Turbo Expo: Power for Land, Sea, and Air. New York: ASME, 2007: 507-515. |
3 | 刘火星, 袁耀, 余弦, 等. 涡轮叶栅尾迹对泄漏流影响的试验研究[J]. 工程热物理学报, 2010, 31(4): 581-584. |
LIU H X, YUAN Y, YU X, et al. The investigation for influence of wake on leakage flow in a turbine cascade[J]. Journal of Engineering Thermophysics, 2010, 31(4): 581-584 (in Chinese). | |
4 | ZHOU K, ZHOU C. Unsteady effects of vortex interaction on tip leakage vortex breakdown and its loss mechanism[J]. Aerospace Science and Technology, 2018, 82-83: 363-371. |
5 | ZHOU K, ZHOU C. Aerodynamic interaction between an incoming vortex and tip leakage flow in a turbine cascade [J]. Journal of Turbomachinery, 2018, 140(11): 111004. |
6 | 杨佃亮, 丰镇平. 非定常叶顶间隙泄漏流动和换热的数值研究[J]. 工程热物理学报, 2008, 29(8): 1307-1310. |
YANG D L, FENG Z P. Numerical study of the unsteady blade tip leakage flow and heat transfer[J]. Journal of Engineering Thermophysics, 2008, 29(8): 1307-1310 (in Chinese). | |
7 | GAO J, ZHENG Q, DONG P, et al. Control of tip leakage vortex breakdown by tip injection in unshrouded turbines[J]. Journal of Propulsion and Power, 2014, 30(6): 1510-1519. |
8 | SELL M, TREIBER M, CASCIARO C, et al. Tip-clearance-affected flow fields in a turbine blade row[J]. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, 1999, 213(4): 309-318. |
9 | HUANG A C, GREITZER E, TAN C, et al. Blade loading effects on axial turbine tip leakage vortex dynamics and loss [J]. Journal of turbomachinery, 2013, 135(5): 051012. |
10 | YANG Y, MA H W. Hybrid RANS/LES study of tip leakage vortex instability and turbulence characteristics of a transonic turbine cascade[J]. Aerospace Science and Technology, 2022, 128: 107758. |
11 | SHANG W Q, LI D, LUO K, et al. Evaluation of the spatiotemporal unsteady characteristics of the tip leakage vortex based on a direct numerical simulation database[J]. Physics of Fluids, 2022, 34(6): 065131. |
12 | GAO Y, LIU Y. Investigation of the unsteady flow features in a tip leakage vortex dynamics and loss [C]∥GPPS Beijing 19: Technical Coference. Beijing: Global Power and Propulsion Society, 2019: 1-8. |
13 | LASKOWSKI G M, KOPRIVA J, MICHELASSI V, et al. Future directions of high fidelity CFD for aerothermal turbomachinery analysis and design[C]∥ 46th AIAA Fluid Dynamics Conference. Reston: AIAA, 2016. |
14 | SPALART P R. Comments on the feasibility of LES for wings, and on a hybrid RANS/LES approach [C]∥ Advances in DNS/LES: Proceedings of First AFOSR InterNational Conference on DNS/LES. Lansing: Greyden Press, 1997: 137-147. |
15 | SPALART P R, DECK S, SHUR M L, et al. A new version of detached-eddy simulation, resistant to ambiguous grid densities[J]. Theoretical and Computational Fluid Dynamics, 2006, 20(3): 181-195. |
16 | LIN D, SU X R, YUAN X. DDES analysis of wake vortex related unsteadiness and losses in the environment of high-pressure turbine stage[C]∥ Proceedings of ASME Turbo Expo 2017: Turbomachinery Technical Conference and Exposition. New York: ASME, 2017 |
17 | BIAN X T, WANG Q S, CHEN Z Y, et al. Hybrid RANS/LES study of complex turbulence characteristics and flow mechanisms on the highly-loaded turbine endwall[J]. Aerospace Science and Technology, 2019, 94: 105404. |
18 | WANG H, LIN D, SU X R, et al. Entropy analysis of the interaction between the corner separation and wakes in a compressor cascade[J]. Entropy, 2017, 19(7): 324. |
19 | SU X R, SASAKI D, NAKAHASHI K. On the efficient application of weighted essentially nonoscillatory scheme[J]. International Journal for Numerical Methods in Fluids, 2013, 71(2): 185-207. |
20 | SU X R, YAMAMOTO S, YUAN X. On the accurate prediction of tip vortex: effect of numerical schemes[C]∥ ASME Turbo Expo 2013: Turbine Technical Conference and Exposition. New York: ASME, 2013: V06BT37A013. |
21 | SU X R, YUAN X. Implicit solution of time spectral method for periodic unsteady flows[J]. International Journal for Numerical Methods in Fluids, 2010, 63(7): 860-876. . |
22 | MA C, SU X R, YUAN X. An efficient unsteady adjoint optimization system for multistage turbomachinery[J]. Journal of Turbomachinery, 2017, 139(1): 011003. |
23 | STRELETS M. Detached eddy simulation of massively separated flows[C]∥ 39th Aerospace Sciences Meeting and Exhibit. Reston: AIAA, 2001. |
24 | LI H, SU X R, YUAN X. Analysis of the relationship between turbulence characteristics and loss mechanism in the tip leakage flow of turbine blade[J]. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, 2021, 235(6): 1302-1314. |
25 | CELIK I B, CEHRELI Z N, YAVUZ I. Index of resolution quality for large eddy simulations[J]. Journal of Fluids Engineering, 2005, 127(5): 949-958. |
26 | SU X R, BIAN X T, LI H, et al. Unsteady flows of a highly loaded turbine blade with flat endwall and contoured endwall[J]. Aerospace Science and Technology, 2021, 118: 106989. |
27 | LIN D, SU X R, YUAN X. The development and mechanisms of the high pressure turbine vane wake vortex[J]. Journal of Engineering for Gas Turbines and Power, 2018, 140(9): 092601. |
[1] | Shaoqiang HAN, Wenping SONG, Zhonghua HAN, Jianhua XU. High-accuracy numerical-simulation of unsteady flow over high-speed coaxial rigid rotors [J]. Acta Aeronautica et Astronautica Sinica, 2024, 45(9): 529064-529064. |
[2] | Kangshen XIANG, Weijie CHEN, Jianxin LIAN, Weiyang QIAO. Numerical analysis of effect of bend/lean stator on turbine tonal noise [J]. Acta Aeronautica et Astronautica Sinica, 2024, 45(10): 129366-129366. |
[3] | Fangjian WANG, Ke XIE, Jin LIU, Yuhui SONG, Han QIN, Lan CHEN. Unsteady flow and wing rock characteristics of low aspect ratio flying-wing [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2023, 44(4): 126449-126449. |
[4] | Zeyu REN, Xiaogang WANG, Shaohua CHENG, Xiaobo QUAN. Numerical simulation and experiment of ventilated cloud cavitation on underwater vehicle under vertical emission conditions [J]. Acta Aeronautica et Astronautica Sinica, 2023, 44(21): 528450-528450. |
[5] | Yang ZHANG, Jiaqi LUO, Xian ZENG. Elliptic flow noise by improved ghost⁃cell immersed boundary method [J]. Acta Aeronautica et Astronautica Sinica, 2023, 44(19): 128418-128418. |
[6] | Yue WANG, Wenping SONG, Minhua SONG, Zhonghua HAN, Yanjun ZHANG, Wutao LEI. Aero-acoustic prediction of turboprop models with and without propellers in landing configuration [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2023, 44(11): 126110-126110. |
[7] | ZHANG Junduo, ZUO Qinghai, LIN Mengda, HUANG Weixi, PAN Weijun, CUI Guixiang. Numerical simulation on near-field evolution of wake vortices of ARJ21 plane with crosswind [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2022, 43(5): 125043-125043. |
[8] | LIU Jiahao, LI Gaohua, WANG Fuxin. Rotor-wing aerodynamic interference characteristics in conversion mode [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2022, 43(12): 126097-126097. |
[9] | WEI Ziyan, LI Jie, ZHANG Heng, YANG Zhao. Improved aerodynamic design of laminar wing section of laminar verifying aircraft [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2022, 43(11): 526760-526760. |
[10] | WANG Xiao, CHENG Jianhui, SHEN Tianrong, XU Baocheng, MENG Xuan. Numerical simulation research of influence of wake flow field on inlet temperature field of carrier-based aircraft [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2021, 42(8): 525795-525795. |
[11] | YU Min, YANG Wubing, SHEN Qing. Mixing enhancement of supersonic wake shear layer [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2021, 42(12): 625876-625876. |
[12] | LUO Fei, ZHANG Junhong, WANG Bo, TANG Ruilin, TANG Wei. Air wake suppression method based on direct lift and nonlinear dynamic inversion control [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2021, 42(12): 124770-124770. |
[13] | CHEN Hao, YUAN Xianxu, BI Lin, HUA Ruhao, SI Fangfang, TANG Zhigong. Simulation of separated flow based on RANS/LES hybrid method [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2020, 41(8): 123642-123642. |
[14] | YI Miaorong, ZHAO Huiyong, LE Jialing, XIAO Baoguo, ZHENG Zhonghua. γ-Reθ transition model based on IDDES frame [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2019, 40(8): 122726-122726. |
[15] | DENG Lei, DUAN Zhuoyi, QIAN Ruizhan, XU Ruifei, GAO Yongwei. Effect of propeller slipstream on wake field of a nacelle/wing configuration [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2019, 40(5): 122434-122434. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 192
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 376
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Address: No.238, Baiyan Buiding, Beisihuan Zhonglu Road, Haidian District, Beijing, China
Postal code : 100083
E-mail:hkxb@buaa.edu.cn
Total visits: 6658907 Today visits: 1341All copyright © editorial office of Chinese Journal of Aeronautics
All copyright © editorial office of Chinese Journal of Aeronautics
Total visits: 6658907 Today visits: 1341