MODERN TECHNOLOGIES OF THE FUEL AND ENERGY COMPLEX AND THE POSSIBILITY OF THE SIBERIA RAILWAY TRANSPORT DEVELOPMENT

Дата поступления: 
25.09.2018
Библиографическое описание статьи: 

Makhutov N. A., Moskvichev V. V., Kulagin V. A. Sovremennye tekhnologii toplivno-energeticheskogo kompleksa i vozmozhnosti razvitiya zheleznodorozhnogo transporta Sibiri [Modern technologies of the fuel and energy complex and the possibility of the Siberia railway transport development]. Sovremennyye tekhnologii. Sistemnyy analiz. Modelirovaniye [Modern Technologies. System Analysis. Modeling], 2019, Vol. 61, No. 1, pp. 64–73. DOI: 10.26731/1813-9108.2019.1(61).64–73

Рубрика: 
Год: 
2019
Номер журнала (Том): 
УДК: 
620.9: 656.2
DOI: 

10.26731/1813-9108.2019.1(61).64–73

Файл статьи: 
Страницы: 
64
73
Аннотация: 

The article considers interdependent problems of the development of the fuel and energy complex and Siberia railway transport. It gives the general characteristics of coal production (volumes, transportation schemes) and of fuel and energy complex (energy potential, energy generation volumes), technological, financial and technological risks, volumes and directions of coal freight turnover. Particular attention is paid to the problems of operating thermal energy facilities and coal processing technologies. The authors point out that there are prospects for the expanded use of environmentally friendly water-coal fuel, its environmental, technological and economic advantages. The energy system of generation and transportation, the existing infrastructure ensures the stability of the energy supply of rail transportation. The possibility of improving their reliability by implementing new development projects is considered as
well. The article formulates long-term research objectives of the considered problem and interrelated analysis of strategic planning documents.

Список цитируемой литературы: 

1. Ugol'nye razrezy Rossii iz kosmosa. Gornye raboty i ekologiya narushennykh zemel' [Coal cuts of Russia from space. Mining and ecology of disturbed lands] / Zen'kov I.V., Zayats V.V., Nefedov B.N. i dr. Krasnoyarsk: Sib. fed. un-ty Publ., 2017. 519 p.
2. Gidrotransportnye toplivno-energeticheskie kompleksy [Hydrotransport fuel and energy complexes] / Murko V.I., Dzhundubaev A.K., Kulagin V.A. et al. Krasnoyarsk: Sib. fed. un-ty Publ., 2015. 250 p.
3. Eksergeticheskii analiz teplotekhnologicheskikh protsessov [Exergy analysis of heat engineering processes] / Zhuikov A.V., Kalekin V.S., Kulagina L.V., Matyushenko A.I. Moscow: RUSAINS Publ., 2018. 130 p.
4. Baranova M.P., Kulagina L.V., Ekaterinchev V.M. Fiziko-khimicheskie osnovy promyshlennykh teplotekhnologii [Physical and chemical bases of industrial heat technologies]. Krasnoyarsk: Grotesk Publ., 2018. 148 p.
5. Murko V.I., Fedyaev V.I., Khamyalyainen V.A. Fiziko-tekhnicheskie osnovy vodougol'nogo topliva [Physical-technical basis of coal-water fuel]. Kemerovo: Kuzbassvuzizdat Publ., 2009. 187 p.
6. Baranova M.P., Kulagin V.A. Fiziko-khimicheskie osnovy polucheniya toplivnykh vodougol'nykh suspenzii [Physical and chemical bases of obtaining fuel coal-water suspensions]. Krasnoyarsk: Sib. fed. un-ty Publ., 2011. 160 p.
7. [https://whotrades.com/people/432482747/timeline]
8. Kulagin V.A., Kulagina L.V., Li Feng-Chen. Fundamentals of Cavitation Treatment for Multicomponent Environments. Moscow: RU-SCIENCE Publ., 2017. 182 p.
9. Kulagin B.A., Kulagina L.V. Osnovy kavitatsionnoi obrabotki mnogokomponentnykh sred [Basics of cavitation processing of multicomponent media]. Moscow: RUSAINS Publ., 2017. 202 p.
10. Teplomassoobmen i superkavitatsiya [Heat and mass transfer and supercavitation] / Demidenko N.D., Kulagin V.A., Shokin Yu.I., Li Feng-Chen. Novosibirsk: Nauka Publ., 2015. 436 p.