, Russian Federation
The paper presents a method for an improved power supply system for transport vehicles, which consists in the use of a combined system consisting of a low-power electromagnetic generator and a thermoelectric generator. This method will improve the efficiency and environmental friendliness of transport vehicles.
electromagnetic generator, thermoelectric generator, polymeric material (PM), thermal energy, thermocouples, electrical energy
1. Hripchenko, M.S. Povyshenie effektivnosti energosnabzheniya transportnyh mashin / M. S. Hripchenko, A. V. Goncharov, K. Yu. Lager' // Aktual'nye napravleniya nauchnyh issledovaniy XXI veka: teoriya i praktika : sbornik nauchnyh trudov po materialam mezhdunarodnoy zaochnoy nauchno-prakticheskoy konferencii. - Voronezh, 2018. - T. 6, № 7 (43). - S. 17-20. - Nacional'naya nauchno-prakticheskaya konferenciya «Sovremennye problemy prikladnyh i fundamental'nyh issledovaniy v lesnom hozyaystve i prirodopol'zovanii». - Bibliogr.: s. 20 (8 nazv.). - eLIBRARY.
2. Reducing the impact of transport machinery and equipment on the environment during reforestation: An innovative approach / M. Khripchenko, A. Novikov, A. Goncharov, E. Snyatkov // Proceedings of the 33rd International Business Information Management Association Conference, IBIMA 2019: Education Excellence and Innovation Management through Vision 20202019, Pages 2438-2445.
3. Hripchenko, M.S. Osobennosti raboty priborov elektrooborudovaniya transportnyh mashin pri nizkih temperaturah / M. S. Hripchenko, P. A. Nartov, R. V. Yudin // Arktika: innovacionnye tehnologii, kadry, turizm : materialy mezhdunarodnoy nauchno-prakticheskoy konferencii, 19-21 noyabrya 2018 g. / pod obsch. red. V. I. Pryadkina ; M-vo obrazovaniya i nauki RF, FGBOU VO «VGLTU». - Voronezh, 2018. - S. 394-397. - Grant RFFI 18-08-20133. - Bibliogr.: s. 397 (6 nazv.).
4. Hripchenko, M.S. Energosberegayuschie vidy transporta i al'ternativnye istochniki topliva / M. S. Hripchenko, I. V. Levischev, R. V. Mirzehanov // Aktual'nye napravleniya nauchnyh issledovaniy XXI veka: teoriya i praktika : sbornik nauchnyh trudov po materialam mezhdunarodnoy zaochnoy nauchno-prakticheskoy konferencii. - Voronezh, 2015. - № 4, ch. 1 (15-1). - S. 129-134. - Nauchno-prakticheskaya konferenciya «Avtomobil'nyy transport segodnya: problemy i perspektivy» provedena pri finansovoy podderzhke Rossiyskogo fonda fundamental'nyh issledovaniy (grand № 15-08-20560), Voronezh, 07-09 oktyabrya 2015 goda. - Bibliogr.: s. 134 (2 nazv.). - eLIBRARY.
5. Popov, V.M. Teploprovodnost' magnitoobrabotannyh tonkosloynyh polimernyh materialov / V.M. Popov, A.P. Novikov // Inzhenerno-fizicheskiy zhurnal. 2008. – T. 81. – № 3. – S. 583-586.
6. Popov, V.M. Teploprovodnost' kleevyh prosloek soedineniy na kleyah, modificirovannyh vozdeystviem kombinirovannyh fizicheskih poley / V. M. Popov, O.R. Dornyak // Inzhenerno-fizicheskiy zhurnal. - 2015. - T. 88, № 2. - S. 511-515. - Bibliogr.: s. 515 (14 nazv.). - eLIBRARY.
7. Vol'kenshteyn, V.S. Skorostnoy metod opredeleniya teplofizicheskih harakteristik materialov / V.S. Vol'kenshteyn // L.: Energiya, 1971. – 145 s.
8. Gindin, L.T. Strukturoobrazovanie v suspenziyah pod vliyaniem elektricheskogo polya / L.G. Gindin // Tr. IIIVses. konf. po koll. himii. 1956. S. 182-186.
9. Berge, A., Kvaever, B., Ugelstad. EuropenPolimerJornal / 6 / 1970 / p. 98.10. AV SyntecPtg Hid [The Electreonic Web Resource] / The official site; 2001. – URL: http//www.avsyntec.com.au, frel.
10. Aybinder, S.B. Vliyanie napolniteley na teplofizicheskie mehanicheskie i antifrikcionnye svoystva polimerov / S.B. Aybinder, N.T. Andreeva // Izv. AN Latv. SSR, ser. fiz. i tehn. nauk. 1983. – № 5. – S. 3-18.