Engineering Journal: Science and InnovationELECTRONIC SCIENCE AND ENGINEERING PUBLICATION
Certificate of Registration Media number Эл #ФС77-53688 of 17 April 2013. ISSN 2308-6033. DOI 10.18698/2308-6033
  • Русский
  • Английский
Article

Manoeuvring load reduction system design for the long-haul passenger aircraft

Published: 15.01.2018

Authors: Lazutin Е.А., Chubarev I.V.

Published in issue: #12(72)/2017

DOI: 10.18698/2308-6033-2017-12-1713

Category: Aviation and Rocket-Space Engineering | Chapter: Design, construction and production of aircraft

The study considers a maneuvering load reduction system as applied to the prototype of a modern short-haul passenger aircraft equipped with a digital flight control system. The paper describes the system configuration and introduces the optimal structure based on the characteristic features of the flight control cueing, the power unit architecture and its component reliability. When calculating the parameters of this system, the mathematical model of the aircraft was used, this allows considering the element elasticity of its design. To evaluate the efficiency of the system for reducing the wing bending moments during maneuvering, we carried out the calculations, taking into account the flight control system features of the controlled element under consideration.


References
[1] Aleshin B.S., Zhivov Yu.G., Kuvshinov V.M., Ustinov A.S. Aktivnye sistemy upravleniya samoletov [Active aircraft control systems]. Moscow, Nauka Publ., 2015, 216 p.
[2] Byushgens G.S. Aerodinamika, dinamika poleta magistralnykh samoletov [Aerodynamics, flight dynamics of long-haul aircraft]. Moscow, Mashinostroenie Publ., 1995, 772 p.
[3] Guskov Yu.P., Zagaynov G.I. Upravlenie poletom samoletov [Flight control]. 2nd ed., revised and enlarged. Moscow, Mashinostroenie Publ., 1991, 272 p.
[4] Obraztsov I.F., Bulychev L.A., Vasilev V.V. et al. Stroitelnaya mekhanika letatelnykh apparatov [Aircraft structural mechanics]. Moscow, Mashinostroenie Publ., 1986, 536 p.
[5] Efremov A.V., Zakharchenko V.F., Ovcharenko V.N., Sukhanov V.L., Shelyukhin Iu.F., Ustinov A.S. Dinamika poleta [Flight dynamics]. Moscow, Mashinostroenie Publ., 2011, 776 p.
[6] Gorshkov A.G., Morozov V.I., Ponomarev A.T., Shklyarchuk F.N. Aerogidrouprugost konstruktsii [Aerohydro-elasticity of construction]. Moscow, FIZMATLIT Publ., 2000, 592 p.
[7] Aleshin B.S., Bazhenov S.G., Didenko Yu.I., Shelyukhin V.F. Sistemy distantsionnogo upravleniya magistralnykh samoletov [Long-haul aircraft remote control systems ]. Moscow, Nauka Publ., FIZMATLIT Publ., 2013, 292 p.
[8] Certification Specifications and Acceptable Means of Compliance for Large Aeroplanes CS-25. Amendment 20. European Aviation Safety - Agency, 24, August 2017.
[9] Aviatsionnye pravila. Chast 25. Normy letnoy godnosti samoletov transportnoy kategorii [Aviation regulations. Part 25. Airworthiness codes of transport category aircraft]. Moscow, Aviaizdat Publ., 2009, 270 p.