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Aerodynamic Study of Twin-Body Fuselage Configuration for Supersonic Transport

机译:超音速运输双体机身构型的空气动力学研究

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In this paper, a twin-body fuselage configuration is discussed for advanced supersonic transport. This twin-body fuselage concept is inspired by the wave reduction effect of the supersonic biplane airfoils proposed by Kusunose et al. The wave drag characteristics as well as the wave drag reduction are discussed by inviscid CFD computations at our design Mach number of 1.7 utilizing an aerodynamic design optimization method. Aerodynamic shape optimizations of single/twin-body fuselages are executed to explore the lowest wave drag configurations. The optimally designed non-axisymmetrical twin-body shows the best aerodynamic performance. Wave drag of our proposed twin-body shows 2/3 that of the Sears-Haack body. It is well known that the Sears-Haack (single) body has the lowest wave drag for given volume and length of the body. The increment of skin friction drag is also discussed for the twin-body fuselage configuration. Based on the total drag analysis, the superiority of the optimal twin-body fuselage configuration over the conventional single-body fuselage configuration is clearly demonstrated.
机译:在本文中,讨论了用于超音速运输的双体机身配置。这种双体机身概念的灵感来自Kusunose等人提出的超音速双翼飞机机翼的减波效果。我们采用空气动力学设计优化方法,在设计马赫数为1.7时,通过无粘性CFD计算讨论了波阻力特性和波阻力减小。对单机身/双机身的空气动力学形状进行了优化,以探索最低的波浪阻力配置。经过优化设计的非轴对称双体具有最佳的空气动力学性能。我们提出的双体的波阻是Sears-Haack体的2/3。众所周知,对于给定的体积和长度,Sears-Haack(单个)物体的波浪阻力最低。对于双体机身配置,还讨论了皮肤摩擦阻力的增加。基于总阻力分析,清楚地展示了最佳的双机身机身配置优于常规的单机身机身配置。

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