Volume 31 Issue 11
Nov.  2016
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ZHANG Le, ZHOU Zhou, XU Xiao-ping. Conformal asymmetry S-shaped inlet design and optimization of flying wing unmanned aerial vehicle[J]. Journal of Aerospace Power, 2016, 31(11): 2682-2690. doi: 10.13224/j.cnki.jasp.2016.11.016
Citation: ZHANG Le, ZHOU Zhou, XU Xiao-ping. Conformal asymmetry S-shaped inlet design and optimization of flying wing unmanned aerial vehicle[J]. Journal of Aerospace Power, 2016, 31(11): 2682-2690. doi: 10.13224/j.cnki.jasp.2016.11.016

Conformal asymmetry S-shaped inlet design and optimization of flying wing unmanned aerial vehicle

doi: 10.13224/j.cnki.jasp.2016.11.016
  • Received Date: 2015-01-28
  • Publish Date: 2016-11-28
  • Based on domestic power constraint and stealth design requirements, conformal S-shaped inlet was designed for twin-engine flying wing unmanned aerial vehicle. In order to further improve the inlet performance, the optimization research on the inlet design was carried out. First, a verification on the wind tunnel test model of conformal inlet was made by CFD (computational fluid dynamics). And then CFD numerical simulation was carried out combining with parametric modeling and automatic mesh generation technique. Finally, RBF (radial basis function neural network) surrogate model and multi-island genetic algorithm were used to take an optimization on the inlet parameters. Results indicated:(1)The aerodynamic performance of optimized inlet improved, and especially it improves significantly after the attack angle of 4°. The total pressure recovery coefficient increased by 5.46%,and the distortion coefficient decreased by 38.7% at the Mach number of 0.6 and attack angle of 4°. (2)Compared to the initial configuration, the area distribution of optimized inlet changed gently in the front but increases slightly behind; while the centerline of former 1/3 was consistent with the initial configuration, and after that the curvature changed more smoothly. (3) The conformal inlet has strong secondary flow at the exit. The sideslip angle made a little influence on the inlet performance under small attack angle but it had greater influence at large attack angle. So the sideslip performance under large attack angle should be paid more attention.

     

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  • [1]
    张乐,周洲,李盈盈,等.飞翼无人机保形非对称尾喷管设计及流场特性[J].西北工业大学学报,2014,32(5):667-674. ZHANG Le,ZHOU Zhou,LI Yingying,et al.Conformal asymmetry nozzle design and flow field characteristics of flying wing unmanned aerial vehicle[J].Journal of Northwestern Polytechnical University,2014,32(5):667-674.(in Chinese)
    [2]
    Mattingly J,Heiser W,Pratt D.Aircraft engine design[M].2nd ed.Reston,US:AIAA,2002.
    [3]
    Seddon J,Goldsmith E.Intake aerodynamics[M].Reston,US:AIAA,1985.
    [4]
    Faroukhi S.Aircraft propulsion[M].Hoboken,NJ:John Wiley & Sons Inc.,2009.
    [5]
    Brear M J,Warfield Z.Flow separation within the engine inlet of an uninhabited combat air vehicle (UCAV)[J].Journal of Fluids Engineering,2004,122(2):124-156.
    [6]
    Kumar V,Alvi F.Use of high-speed microjets for active separation control in diffusers[J].AIAA Journal,2006,44(2):273-281.
    [7]
    Guo R,Seddon J.Swirl characteristics of an S-shaped air intake with both horizontal and vertical off sets[J].Aeronautical Quarterly,1983,34:130-146.
    [8]
    刘雷,宋彦萍,陈焕龙,等.半埋入式S弯进气道设计及优化[J].推进技术,2014,35(10):1303-1309. LIU Lei,SONG Yanping,CHEN Huanlong,et al.Design and optimization of half flush-mounted S-shaped inlet[J].Journal of Propulsion Technology,2014,35(10):1303-1309.(in Chinese)
    [9]
    甘文彪,周洲,许晓平,等.S弯进气道优化设计及分析[J].推进技术,2014,35(10):1317-1324. GAN Wenbiao,ZHOU Zhou,XU Xiaoping,et al.S-duct inlet optimal design and analysis[J].Journal of Propulsion Technology,2014,35(10):1317-1324.(in Chinese)
    [10]
    Zhang J M,Wang C F.Multidisciplinary design of S-shaped intake[R].AIAA-2008-7060,2008.
    [11]
    Zhang W L,Knight D D,Smith D.Automated design of a three-dimensional subsonic diffuser[J].Journal of Propulsion and Power,2000,16(6):1132-1140.
    [12]
    Aranake A,Lee J G,Knight D,et al.Automated design optimization of a three-dimensional subsonic diffuser[J].Journal of Propulsion and Power,2011,27(4):838-847.
    [13]
    Zhang Z K,Lum K Y.S-shaped inlet design optimization using the adjoint equation method[R].AIAA-2006-4453,2006.
    [14]
    Lee B J,Kim C,Rho O H.Optimal shape design of the S-shaped subsonic intake using NURBS[R].AIAA-2005-455,2005.
    [15]
    Rademakers R P M,Kächele T,Bindl S,et al.Approach for an optimized evaluation of pressure and swirl distortion in S-shaped engine inlet configurations[R].AIAA-2014-3594,2014.
    [16]
    SHI Lei,Guo R W.Serpentine inlet design and analysis[R].AIAA-2012-0839,2012.
    [17]
    Johansson M.Propulsion integration in an UAV[R].AIAA-2006-2834,2006.
    [18]
    张乐,周洲,许晓平,等.飞翼无人机保形进排气系统动力数值模拟与流场特性研究[J].西北工业大学学报,2015,33(3):353-360. ZHANG Le,ZHOU Zhou,XU Xiaoping,et al.Numerical simulation of power and flow field characteristics of conformal intake and exhaust for flying wing unmanned aerial vehicle[J].Journal of Northwestern Polytechnical University,2015,33(3):353-360.(in Chinese)
    [19]
    Lee C C.Subsonic diffuser design and performance for advanced fighter aircraft[R].AIAA 85-3073,1985.
    [20]
    Smith R E.Transfinite interpolation (TFI) generation systems[M].London:CRC Press Inc,1999.
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