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Basic laws of aircraft design

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Questions of attraction to tasks of aviation technical designing of the regularities of general nature which are earlier not used in this field which are on a joint of basic problems of modern natural sciences, technology, philosophy and the new directions of science which treat, for example, synergy, and others are considered. A conceptual design of civil and transport airplanes with representations of the seven basic laws of the design is offered: 1. Thought or mental associated with the formation of the idea, as well as the visualization of forms and structures designed object. 2. The law of analogies. 3. The Law of Vibration. 4. The law of opposites. 5. The law of cycles and rhythms. 6. The Law of Cause and Effect. 7. Law of design and creativity. The approach to formation of new hierarchy of the criteria of design based on the analysis and synthesis of these laws is also offered. The task of the structural formation and composition of the energy space design, allowing determining the grid of power lines and types of elementary energy and the crystal structures of the elements is considered. Seven basic laws of design are presented and described on a number of examples. The space of design is described with use of the scheme of the Tree of Life divided into ten Spheres of the Worlds which are forming four levels of manifestation: the Design ideas; Realization of Ideas (thinking process); Radiation (including emotions and feelings); Action (implementation), and also division of each of these spheres into sublevels. Possibility of calculation and use of discrete power levels to the description and characteristics of the projected products, and tendencies to replacement of usual options on integrated, hybrid and morphing are shown.
Twórcy
autor
  • National Aerospace University named after N. Ye. Zhykovsky "Kharkіv Aviation Institute"
Bibliografia
  • 1. Norenkov I. P. 2002. Basics of computer-aided design. Moscow, Russia: Publishing house of the MSTU named after N.E. Bauman, 336. (in Russian).
  • 2. Komarov V. A. and others. 2013. Conceptual design of aircraft: manual. Samara, Russia: Samara State Aerospace University, 120. (in Russian).
  • 3. Kharchuk V., Kendzor I. and Petryshyn N. 2014. The analyses of marketing strategies for innovations. Econtechmod: an international quarterly journal on economics in technology, new technologies and model ling processes. Vol.3, №1, 49–54.
  • 4. Yachmeneva V. and Vol’s’ka G. 2014. Factors influencing the enterprise innovation. Econtechmod: an international quarterly journal on economics in technology, new technologies and modelling processes. Vol.3, №1. 133–138.
  • 5. Danov A. S. 1976. General problem of elasticity theory in four-dimensional space. Work Aircraft. Air Force Tech.42, 85-91. (in Russian).
  • 6. Danov A. S. 1978. The physical meaning of coordinate conditions in continuum mechanics. Work Aircraft. Air Force Tech. 44, 98-100. (in Russian).
  • 7. Danov A. S. 1984. On the equation of sustainable potential motions of viscous and elastic media. The design and manufacture of thin-walled structures of power, 108-116. (in Russian).
  • 8. Danov A. S. 1985. Some laws of motion of elastic bodies in an ideal continuous medium. The aerodynamic design of aircraft, 65-72. (in Russian).
  • 9. Danov A. S. and Danov S. V. 1986. On the vector nature of the fields in the interaction of uncharged continuous media. The design and production technology of aircraft structural components, 109-115. (in Russian).
  • 10. Danov A. S. 1988. On quantization macrostructures. The design and production technology of aircraft structural components, 129-136. (in Russian).
  • 11. Danov A. S. 1984. On the continuum theory of defects. Questions of solid mechanics. 3, 138-144. (in Russian).
  • 12. Danov A. S. and Kobrin V. N. 1984. The equation of stable conditions for high-speed processes. Dep. VINITI, № 2438-85. (in Russian).
  • 13. Ghirardi G.C., Omero C., Weber T. and Rimini A. 1978. The stochastic interpretation of quantum mechanics. IL Nuovo Cimento. 52(4), 421-442.
  • 14. Protodyakonov M. M., Gerlovin I.L. 1975. Electronic structure and physical properties of crystals. Moscow, Russia: Nauka, 359. (in Russian).
  • 15. Eynshteyn A. 1966. Evolution of Physics. Moscow, Russia: Nauka, 142. (in Russian).
  • 16. Goncharov N. F., Makarov V. A. and Morozov V. S. 1976. On the icosahedral-dodecahedral structure of the Earth. 2, 128-129. (in Russian).
  • 17. Program «Frigate Ecojet». Available online at: <http://www.frigate-ecojet.ru/ru/company/>
  • 18. Popov L. 2004. New aircrafts need bird wings with fish scales. Available online at: <http://www.membrana.ru/particle/2760>
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3f832475-00fc-4c12-94c7-e5ebfc588f3b
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