期刊文献+

NURBS曲面在气动外形变形中的应用

Application of Aerodynamic Shape Deformation based on NURBS Surface
下载PDF
导出
摘要 针对翼吊布局飞机复杂气动外形,建立了基于样条(NURBS,非均匀有理B样条)曲面和曲面叠加技术的曲面变形方法。在对样条曲线性质分析的基础上,以DLR-F6飞机为实例,对其机翼翼根、短舱挂架局部进行曲面网格变形,结果表明该方法能有效表述其复杂几何外形及型面变化特性,并且具有较好的局域性、可控性和光滑性。该方法可有效应用于吊舱挂架等复杂气动外形的建模、表面网格变形及气动外形优化设计等。 A free deformation method based on the B-Spline (NURBS, Non-Uniform Rational B-Spline) and surface superposition technique was presented for complex aerodynamic shape such as wing mounted nacelle-pylon conifguration. The characteristic of parameters were analyzed with B-Spline curves case, and the application instances of surface grids deformation on wing and pylon of DLR-F6 plane shows that the method could describe complex surfaces and its deformation characteristic effectively, the control parameter only change its local surface, and it is easy to carry out. The method is feasible and applicable to model representation, surface grids deformation and aerodynamic shape optimization etc.
出处 《航空科学技术》 2014年第3期75-78,共4页 Aeronautical Science & Technology
关键词 气动外形 样条曲面 短舱挂架 aerodynamic shape NURBS surface nacelle&pylon
  • 相关文献

参考文献5

  • 1Giampietro Carpentieri, Barry Koren, Michel J L van Tooren. Development of the Discrete Adjoint for a Three-Dimensional Unstructured Euler Solver. Journal of Aircraft, 2008, 45(1): 237-245.
  • 2Arash M, Patrice C, Siva K N. Survey of shape parameterization techniques and its effect on three-dimensional aerodynamic shape optimization. AIAA-2007-3837, 2007.
  • 3Wataru Y, Sylvain M, G6rald C. Geometry parameteri-zation and computational mesh deformation by physics-based direct manipulation approaches. AIAA Journal, 2010, 48(8): 1817-1832.
  • 4卫炜,周来水,王志国.NURBS曲面上的曲线精确表达[J].南京航空航天大学学报,2008,40(1):85-88. 被引量:6
  • 5马晓永,范召林,吴文华,杨党国.基于NURBS方法的机翼气动外形优化[J].航空学报,2011,32(9):1616-1621. 被引量:16

二级参考文献30

  • 1WangZhiguo ZhouLaishui WangXiaoping.DIRECT MANIPULATION OF B-SPLINE SURFACES[J].Chinese Journal of Mechanical Engineering,2005,18(1):103-108. 被引量:8
  • 2王晓锋,席光.基于Kriging模型的翼型气动性能优化设计[J].航空学报,2005,26(5):545-549. 被引量:39
  • 3Hicks R M, Murman E M, Vanderplaats G N. An assessment of airfoil design by numerical optimization. NASA-TM-X-3092, 1974.
  • 4Hicks R M, Henne P. Wing design by numerical optimization[J]. Journal of Aircraft, 1978, 15(7): 407-412.
  • 5Jameson A. Aerodynamic design via control theory[J]. Journal of Scientific Computing, 1988, 13(3): 233-260.
  • 6Samareh J A. A survey of shape parameterization techniques for high-fidelity multidisciplinary shape optimization[J]. AIAA Journal, 2001, 39(5): 877-884.
  • 7Wataru Y, Sylvain M, Gérald C. Geometry parameterization and computational mesh deformation by physics-based direct manipulation approaches[J]. AIAA Journal, 2010, 48(8): 1817-1832.
  • 8Jason E H, David W Z. Aerodynamic optimization algorithm with integrated geometry parameterization and mesh movement[J]. AIAA Journal, 2010, 48(2): 400-413.
  • 9Vijay N J, Felipe A C V, Raphael T H, et al. Design optimization of a bendable UAV wing under uncertainty. AIAA-2010-2761, 2010.
  • 10Kim H J, Liou M S. Aerodynamic optimization using a hybrid moga-local search method. AIAA-2010-2911, 2010.

共引文献20

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部