An optimal aerodynamic design for the wing of a wide-body long-range aircraft
Results of the optimal aerodynamic design of a wide-body long-range aircraft wing at high transonic flight speeds are presented. The problem is solved using the approach based on methods of high-precision mathematical modeling and global optimum search with application of supercomputer technologies. It is shown that the optimal wing is characterized by a low shockwave drag at the main design point and can operate under given cruise flight conditions. Optimization technology made it possible to shift the Mach tuck towards larger Mach numbers. The aerodynamic characteristics of the optimal wing significantly outperform those of the original wing in a wide range of the Mach number and lift coefficient. The optimal wing satisfies all the given geometric and aerodynamic constraints. The work was supported by the Ministry of Education and Science of the Russian
Keywords
оптимальное проектирование, полные уравнения Навье -Стокса, коэффициент сопротивления, момент тангажа, коэффициент подъемной силы, optimal design, full Navier-Stokes equations, drag coefficient, pitch moment, lift coefficientAuthors
Name | Organization | |
Peygin Sergey V. | OPTIMENGA-777 Ltd | mishpahat_peiguine@yahoo.com |
Pushchin Nikita A. | OPTIMENGA-777 Ltd | mishpahat_peiguine@yahoo.com |
Bolsunovskiy A.L. | OPTIMENGA-777 Ltd | mishpahat_peiguine@yahoo.com |
Timchenko Sergey V. | Tomsk State University; OPTIMENGA-777 Ltd | tsv@ftf.tsu.ru |
References

An optimal aerodynamic design for the wing of a wide-body long-range aircraft | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2018. № 51. DOI: 10.17223/19988621/51/10