FORMATION OF A FUNCTION SERIES FOR ESTIMATES OF TRANSPORTATION ENERGY EFFICIENCY BASED ON BARTINI'S LT-TABLE ENTITIES

Jurij Kotikov

Abstract


A function series for estimates of transportation energy efficiency is formed based on Bartini's LT-table entities. The study represents a follow-up of the method provided by the author to estimate transportation energy efficiency based on the Bartini's L6T-4 entity. The Bartini's LT-table, supplemented by Aleinikov, is adjusted using system representation of the energy series of entities: Energy–Linergy–Arergy–Volergy. Methodical specifics of obtaining transportation energy efficiency estimates for 1D, 2D and 3D spatial objects are considered. A numerical analysis of transportation in a 2D zone is carried out following a hypothetical example of daily commuting in the Saint Petersburg agglomeration.

Keywords


LT-systematization, Bartini's LmT-4 entities, Energy, Linergy, Arergy, Volergy, megacity, agglomeration

Full Text:

PDF

References


Aleinikov, A. (2007). Nine new laws of conservation: future science horizons. In: Proceedings of the Allied Academies International Conference, 6 (2), pp. 5–10.

Aleinikov, A., Smarsh, D. (2011). 11 new laws of conservation: expanding physics horizons for strategic management. In: Proceedings of the Allied Academies’ Internet Conference, 13, pp. 130–131. Available at: http://www.alliedacademies.org/pdfs/Internet_Proceedings_Vol_13_2011.pdf (accessed on: 30.06.2018)

Bartini, R.O. (1965). Some relations between physical constants. Reports of the Academy of Sciences of the USSR, 163 (4), pp. 861–864.

Bartini, R.O., Kuznetsov, P.G. (1974). Multiplicity in geometries and physics. In: Proceedings of the seminar “Cybernetics of electric power systems”, p. 11. Available at: http://www.metodolog.ru/01380/01380.html (accessed on: 30.06.2018)

Frolova, L. (2017). Sprinkler devices: types and application. Available at: http://fb.ru/article/364163/dojdevalnyie-ustanovki-vidyi-primenenie (accessed on: 30.06.2018)

Kotikov, Ju.G. (2001). Osnovy sistemnogo analiza transportnykh sistem [Fundamentals of system analysis for transport systems]. Saint Petersburg: Saint Petersburg State University of Architecture and Civil Engineering, p. 264. (in Russian)

Kotikov, Ju.G., Lozhkin, V.N. (2006). Transportnaya energetika [Transport power engineering]. Moscow: Academia Publishing Center, p. 272. (in Russian)

Kotikov, Ju.G. (2017a). Estimation of transportation energy efficiency by Bartini criterion L6T-4. Architecture and Engineering, 2 (2), pp. 15–19. DOI: 10.23968/2500-0055-2017-2-2-15-19.

Kotikov, Ju.G. (2017b). Calculation of freight rail transport energy efficiency by Bartini criterion L6T-4. Architecture and Engineering, 2 (3), pp. 21–25. DOI: 10.23968/2500-0055-2017-2-3-21-25.

Kotikov, Ju.G. (2017c). Transport energy efficiency assessment on the basis of the life cycle with the attraction of the Bartini Transfer entity. Architecture and Engineering, 2 (4), pp. 21–25. DOI: 10.23968/2500-0055-2017-2-4-14-19.

Kotikov, Ju.G. (2018). Stages of quantomobile development. Architecture and Engineering, 3 (2), pp. 26–35. DOI: 10.23968/2500-0055-2018-3-2-26-35.

Leonov, V.S. (2010). Quantum energetics. Volume 1. Theory of Superunification. Cambridge: Cambridge International Science Publishing, p. 745.

Obraztsova, R.I., Kuznetsov, P.G., Pshenichnikov, S.B. (1997). Inzhenerno-ekonomicheskii analiz transportnykhsistem [Engineering and economic analysis of transport systems]. Novosibirsk, p. 156. Available at: http://lib.uni-dubna.ru/search/files/ur_enjekan/~ur_enj-ek-an.htm (accessed on: 30.06.2018) (in Russian)

SCBIST (2018). Electric trains. FEATURES OF THEIR WORK AND THE DESIGN. Available at: http://scbist.com/zheldor/elektrovoz/elektrovoz_44.html (accessed on: 30.06.2018)




DOI: https://doi.org/10.23968/2500-0055-2018-3-3-3-9

Refbacks

  • There are currently no refbacks.




     

ISSN: 2500-0055