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Aerodynamic Design Methodology for Blended Wing Body Transport 被引量:29

Aerodynamic Design Methodology for Blended Wing Body Transport
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摘要 This paper puts forward a design idea for blended wing body(BWB).The idea is described as that cruise point,maximum lift to drag point and pitch trim point are in the same flight attitude.According to this design idea,design objectives and constraints are defined.By applying low and high fidelity aerodynamic analysis tools,BWB aerodynamic design methodology is established by the combination of optimization design and inverse design methods.High lift to drag ratio,pitch trim and acceptable buffet margin can be achieved by this design methodology.For 300-passenger BWB configuration based on static stability design,as compared with initial configuration,the maximum lift to drag ratio and pitch trim are achieved at cruise condition,zero lift pitching moment is positive,and buffet characteristics is well.Fuel burn of 300-passenger BWB configuration is also significantly reduced as compared with conventional civil transports.Because aerodynamic design is carried out under the constraints of BWB design requirements,the design configuration fulfills the demands for interior layout and provides a solid foundation for continuous work. This paper puts forward a design idea for blended wing body(BWB).The idea is described as that cruise point,maximum lift to drag point and pitch trim point are in the same flight attitude.According to this design idea,design objectives and constraints are defined.By applying low and high fidelity aerodynamic analysis tools,BWB aerodynamic design methodology is established by the combination of optimization design and inverse design methods.High lift to drag ratio,pitch trim and acceptable buffet margin can be achieved by this design methodology.For 300-passenger BWB configuration based on static stability design,as compared with initial configuration,the maximum lift to drag ratio and pitch trim are achieved at cruise condition,zero lift pitching moment is positive,and buffet characteristics is well.Fuel burn of 300-passenger BWB configuration is also significantly reduced as compared with conventional civil transports.Because aerodynamic design is carried out under the constraints of BWB design requirements,the design configuration fulfills the demands for interior layout and provides a solid foundation for continuous work.
出处 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2012年第4期508-516,共9页 中国航空学报(英文版)
关键词 blended wing body aerodynamic configurations computational fluid dynamics optimization design inverse design blended wing body aerodynamic configurations computational fluid dynamics optimization design inverse design
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  • 1Nickol C L, McCullers L A. Hybrid wing body configuration system studies. AIAA-2009-931, 2009.
  • 2Chambers J R. Innovation in flight: research of the NASA Langley Research Center on revolutionary advanced concepts for aeronautics. NASA SP-2005-4539, 2005.
  • 3Re R J. Longitudinal aerodynamic characteristics and wing pressure distributions of a blended-wing-body configuration at low and high Reynolds number. NASA/TM-2005-213754, 2005.
  • 4Liebeck R H. Design of the blended wing body subsonic transport. Journal of Aircraft 2004; 41(1):10-25.
  • 5Roman D, Allen J B, Liebeck R H. Aerodynamic design challenges of the blended-wing-body subsonic transport. AIAA-2000-4335, 2000.
  • 6Gilmore R, Wakayama S, Roman D. Optimization of high-subsonic blended-wing-body configurations. AIAA- 2002-5666, 2002.
  • 7Roman D, Gilmore R, Wakayama S. Aerodynamics of high subsonic blended-wing-body configurations. AIAA- 2003-554, 2003.
  • 8Mialon B, Fol T, Bonnaud C. Aerodynamic optimization of subsonic flying wing configurations. AIAA- 2002-2931, 2002.
  • 9Mialon B, Hepperle M. Flying wing aerodynamics studied at ONERA and DLR.<http://www.onera.fr/ daap/ailes-volantes/flying-wing-aerodynamics-Onera-DLR.pdf>. 2005.
  • 10Carter M B, Vicroy D D, Patel D. Blended-wing-body transonic aerodynamics: summary of ground tests and sample results. AIAA-2009-935, 2009.

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