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  1. 1
    Academic Journal

    وصف الملف: application/pdf

    Relation: Rudyk, Y., Starodub, A., Kuts, V., Karpenko, V., Zdeb V. Comparative assessment of renewable sources for critical facilities of decentralized supply. ISTCMTM. 2023; Number 84(4) pp. 10-16 https://doi.org/10.23939/istcmtm2023.04.010; https://sci.ldubgd.edu.ua/jspui/handle/123456789/12631

  2. 2
    Academic Journal

    مصطلحات موضوعية: Mathematical models, geothermal resource

    وصف الملف: application/pdf

    Relation: 1. V.N. Karpenko, V.M. Stasenko, A.A. Mikhalchishin, V.M. Benko and V.L. Kushnarev. “The state and prospects of using deep wells to provide consumers with heat and electric energy”. Oil and gas industry of Ukraine, №3. pp 39 – 47, 2015. 2. C. Alimonti, E. Soldo. Study of geothermal power generation from a very deep oil well with a wellbore heat exchanger. February 2016. Renewable Energy 86:292-301. 3. Sadiq J. Zarrouk, Hyungsul Moon. Efficiency of geothermal power plants: A worldwide review. July 2014Geothermics 51:142–153. https://www.geothermal-energy.org/pdf/IGAstandard/NZGW/2012/46654final00097.pdf 4. Generating Power from Hot Dry Rock (HDR) Resources. Geothermal Power: Issues, Technologies, and Opportunities for Research, Development,Demonstration, and Deployment. February 2010. URL : http://www.gtherm.net/downloads/EPRI_Geothermal_WhitePaper.pdf 5. Parmanto, Slamet. “Thermodynamic optimization of downhole heat exchangers for geothermal power generation”. MS thesis. Izmir Institute of Technology, 2016. – 96 p. https://openaccess.iyte.edu.tr/bitstream/handle/11147/4855/T001512.pdf?sequence=1 6. V.M. Karpenko and Yu.P. Starodub. “The concept of the method of energy analysis of the motion of elementary objects of the Earth's lithosphere”. Visnyk Lviv un-th Geological series. Issue 20. pp. 3 – 23, 2006. 7. J.T. Kiehl and E.T. Kevin. “Earth’s Annual Global Mean Energy Budget”. Bulletin of the American Meteorological Society. 78, рр.197—208, 1997. 8. NASA Earth's Energy Budget Poster. Access – https: //science-edu.larc.nasa.gov/energy_budget/ 9. K.Ya. Kondratev and other. The radiation field of the Earth as a planet. Hydrometeorological publishing house. Leningrad, 1967. – pp.314. 10. A. R. Vasavada. D. A. Paige and S.E.Wood. “Near-Surface Temperatures on Mercury and the Moon and the Stability of Polar Ice Deposits”. Icarus 141, рр. 179 – 193, 1999. 11. V.M. Karpenko and Yu.P. Starodub. “The function of deterministic probability in studies of the structure of the Earth by geophysical methods”. Geoinformatics. №4. Kiev, pp. 31-39, 2007. 12. V.N. Zharkov. “The internal structure of the Earth and planets. Elementary introduction to planetary and satellite geophysics”. Moscow. LLC "Science and Education". 414 p., 2013. 13. M. Born and H. Kun. “Dynamic theory of crystal lattices”, under ed. I.Lifshits. Moscow. 488p., 1958. 14. A. Maradudin. E. Montroll and J.Weiss. “Dynamic theory of the crystal lattice in the harmonic approximation”, trans. from English. Moscow. 384 p., 1965. 15. V.М. Karpenko. “Organization of the automated control system of drilling process on the basis of multi-parameter information model”. Institute of Modeling Problems in Energy G. E. Puhov NAS of Ukraine. Kiev, p. 195, 2001. 16. Lowrie, William Lowrie A Student's Guide to Geophysical Equations. Cambridge University Press, p. 69, 2011. 17. K.A. Postnov and A.V. Zasov, “Course of General Astrophysics”, Moscow, Physical Faculty of Moscow State University, 192p., 2005. 18. V. A. Magnitsky. “Internal structure and physics of the Earth”. Moscow. 379p., 1965. 19. O.G. Sorokhtin and S.A. Ushakov. “Earth development”. Ed. V.A. Sadovnichy. Moscow. MGU Publishing House. 560 p., 2002. 20. М.N. Magomedov. Self-diffusion in an iron crystal at high pressures / Physics and technology of high pressures / 2012, Tom 22, № 3. – pp. 97-112. 21. V. Yu. Burmin. Distributions of density and elastic parameters in the Earth. July 2006. Izvestiya Physics of the Solid Earth 42(7): pp.608-620. 22. L.Ya. Kratenko General geology: Textbook.– Donetsk.: National Mining University, 2007. – 352 p. 23. A. M. Dziewonski, and D. L. Anderson (1981) Preliminary reference Earth model, Phys. Earth Planet.Inter., 25, pp. 297-356. 24. С. Seligman. The internal temperatures and magnetic fields of the planets. https://cseligman.com/text/planets/magnetism.htm 25. NASA. https://nssdc.gsfc.nasa.gov/planetary/planets/mercurypage.html 26. A. Blokh. Yu.A. Zhuravlev and L.N. Ryzhkov. “Heat transfer by radiation”. Directory. Moscow. Energoatomizdat, 432p., 1991. 27. V.I. Baikov. N.V. Pavlyukevich. A.K. Fedotov and A.I. Shnip. “Thermodynamics of irreversible processes. theory of convective heat transfer. energy transfer of thermal radiation. transfer processes and phase transformations in solids”. Minsk. Institute of Heat and Mass Transfer named after A. V. Lykov of the National Academy of Sciences of Belarus. 370 p., 2014. 28. I. S. Kulikov, D. V. Kadnikova, V. S. Shvyidkiy. Approximate methods for solving the radiation transfer equation. Heat engineering and informatics in education, science and production: a collection of reports of the II All-Russian scientific-practical conference of students, graduate students and young scientists (TIМ’2013) with international participation (Yekaterinburg, March 28-29, 2013). — Yekaterinburg. 2013. – pp. 72-76. 29. G.B. Dwight. “Integral tables and other mathematical formulas”. Moscow. 228 p., 1973. 30. V.Е. Fortov. High energy density physics. – Moscow.: FIZMATLIT, 2013. – 712 p. 31. Z. Konôpková, R. S. McWilliams, N. Gómez-Pérez and A. F.Goncharov. “Direct measurement of thermal conductivity in solid iron at planetary core conditions”. Nature 534, pp. 99–101, 2016. 32. V.G. Gorshkov. “Planetary greenhouse effect and the biotic stability of the Earth’s climate”. Proceedings of the Section of Earth Sciences, pp. 62-74, 2001. 33. M.I. Budyko and K.Ya Kondratyev. “Atmosphere of the Earth”. Great Soviet Encyclopedia. 3rd ed. Moscow. Soviet Encyclopedia, pp. 380 — 384, 1970. 34. Lide, David R. Handbook of Chemistry and Physics. Boca Raton, FL: CRC, 1996: 14–17. 35. V. Morgalyuk. “New vision of the problem of the heat flow of the Earth”. INEOS RAS. 82 p., 2016.; http://sci.ldubgd.edu.ua:8080/jspui/handle/123456789/8495