AERODYNAMIC DESIGN ASPECTS FOR SMALL-SIZE TRANSONIC CONTRA-ROTATING FAN STAGE

被引:0
|
作者
Pasupula, Manideep [1 ]
Mistry, Chetan S. [1 ]
机构
[1] Indian Inst Technol, Dept Aerosp Engn, Kharagpur 721302, W Bengal, India
关键词
PERFORMANCE;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Contra-Rotating fan stage presents a potential solution to address the demand for sustainable and efficient aircraft requirements. The objective of this work is to design and investigate numerically a contra-rotating axial fan stage for a compact transonic engine. The design process begins with the use of meanline analysis and fundamental work balance method to determine the initial design parameters. This design is then optimized through computational fluid dynamics (CFD) analysis. The fan stage is designed using a constant-tip design approach with a tip diameter of 300 mm. To design the rotors, the double circular arc (DCA) airfoil is utilized with an elliptical leading edge and a cut-off trailing edge. The front rotor is designed with an aspect ratio of 0.8, while the aft rotor has an aspect ratio of 0.6. The overall pressure ratio of the contra-rotating fan stage is 3.5. The study investigates various pressure loading ratios between the front and aft rotors, with a tip-loaded configuration for both rotors. The SST k-omega and BSL turbulence models are used for numerical investigation, with the gamma-theta model used to capture the transitional turbulence. The CFD analysis reveals that the flow reaches supersonic speeds in the front rotor's upper half and the aft rotor's entire span. This suggests that the design and optimization of the blade for the fan stage must take into account the effects of supersonic flow on the performance and efficiency of the fan stage. Many parameters are considered while designing the blade such as blade thickness, chord length, leading edge radius, trailing edge radius. Varying the blade thickness moves the contact point of the adjacent blade's leading edge bow shock towards the trailing edge thus ensuring acceleration of the flow on the most of suction surface and reducing the risk of flow detaching & stall. The maximum relative Mach number for the front rotor is 1.3 and for the aft rotor is 2.7. The flow physics of the aft rotor is much more complex and unconventional than the front rotor's, as the rotor's whirl velocity is relatively much higher due to the opposing rotation. Results indicate that in the aft rotor, the blade throat is shifted significantly due to the high stagger, causing shock interactions and increasing the complexity of the downstream flow.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] UNDERSTANDING THE DYNAMICS OF CRITICAL TRANSITIONS IN A CONTRA-ROTATING FAN
    Payyappalli, Manas Madasseri
    Pradeep, A. M.
    PROCEEDINGS OF ASME TURBO EXPO 2021: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, VOL 2D, 2021,
  • [22] Influence of tip clearance on performance of a contra-rotating fan
    Jian Xu
    Chunqing Tan
    Haisheng Chen
    Yangli Zhu
    Dongyang Zhang
    Journal of Thermal Science, 2009, 18 : 207 - 214
  • [23] GPGPU BASED AEROACOUSTIC OPTIMIZATION OF A CONTRA-ROTATING FAN
    Stadler, Michael
    Schmitz, Michael B.
    Laufer, Wolfgang
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2014, VOL 1A, 2014,
  • [24] Influence of Tip Clearance on Performance of a Contra-Rotating Fan
    Xu, Jian
    Tan, Chunqing
    Chen, Haisheng
    Zhu, Yangli
    Zhang, Dongyang
    JOURNAL OF THERMAL SCIENCE, 2009, 18 (03) : 207 - 214
  • [25] Multi-disciplinary optimization of a contra-rotating fan
    Grasso, Gabriele
    Moreau, Stephane
    Christophe, Julien
    Schram, Christophe
    INTERNATIONAL JOURNAL OF AEROACOUSTICS, 2018, 17 (6-8) : 655 - 686
  • [26] Design of a two spool contra-rotating turbine for a turbo-fan engine
    Rajeevalochanam, Prathapanayaka
    Sunkara, S. N. Agnimitra
    Murthy, Seepana Venkata Ramana
    Kumaran, R. Senthil
    PROPULSION AND POWER RESEARCH, 2020, 9 (03) : 225 - 239
  • [27] Study on high pressure design of contra-rotating small hydroturbine
    Hosotani, Takuji
    Shigemitsu, Toru
    Kawaguchi, Yuki
    Ikebuchi, Tomofumi
    29TH IAHR SYMPOSIUM ON HYDRAULIC MACHINERY AND SYSTEMS, 2019, 240
  • [28] Influence of Tip Clearance on Performance of a Contra-Rotating Fan
    Jian Xu~(1
    Journal of Thermal Science, 2009, 18 (03) : 207 - 214
  • [29] Inverting flow simulation of Contra-rotating Axial Fan
    Wang, Jun
    Wu, Li-Qiang
    Sun, Zhong-Qin
    Li, Kun
    Zhong, Li-Qun
    He, Qiu-Dong
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2007, 28 (SUPPL. 1): : 149 - 152
  • [30] The aerodynamic coupling design and wind tunnel test of contra-rotating wind turbines
    Zhao, Xu
    Zhou, Ping
    Liang, Xiao
    Gao, Shen
    RENEWABLE ENERGY, 2020, 146 : 1 - 8