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@article{MM_2016_28_7_a4, author = {A. N. Shulyupin and A. A. Chermoshentseva}, title = {The collection of mathematical models of {WELL-4} for calculation of steam-water flow in geothermal wells}, journal = {Matemati\v{c}eskoe modelirovanie}, pages = {56--64}, publisher = {mathdoc}, volume = {28}, number = {7}, year = {2016}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/MM_2016_28_7_a4/} }
TY - JOUR AU - A. N. Shulyupin AU - A. A. Chermoshentseva TI - The collection of mathematical models of WELL-4 for calculation of steam-water flow in geothermal wells JO - Matematičeskoe modelirovanie PY - 2016 SP - 56 EP - 64 VL - 28 IS - 7 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/MM_2016_28_7_a4/ LA - ru ID - MM_2016_28_7_a4 ER -
%0 Journal Article %A A. N. Shulyupin %A A. A. Chermoshentseva %T The collection of mathematical models of WELL-4 for calculation of steam-water flow in geothermal wells %J Matematičeskoe modelirovanie %D 2016 %P 56-64 %V 28 %N 7 %I mathdoc %U http://geodesic.mathdoc.fr/item/MM_2016_28_7_a4/ %G ru %F MM_2016_28_7_a4
A. N. Shulyupin; A. A. Chermoshentseva. The collection of mathematical models of WELL-4 for calculation of steam-water flow in geothermal wells. Matematičeskoe modelirovanie, Tome 28 (2016) no. 7, pp. 56-64. http://geodesic.mathdoc.fr/item/MM_2016_28_7_a4/
[1] R. Bertani, “Geothermal power generation in the World 2010–2014. Update report”, Proceedings World Geothermal Congress 2015 (Melbourne, Australia, 19–25 April 2015), 01001, 19 pp.
[2] A. N. Shuliupin, I. I. Chernev, “Problemy i perspektivy osvoeniia geotermalnykh resursov Kamchatki”, Georesursy, 2012, no. 1(43), 19–21 | MR
[3] A. A. Chermoshentseva, A. N. Shuliupin, Matematicheskoe modelirovanie parovodianykh techenii v elementakh oborudovaniia geotermalnykh promyslov, Izd. KamchatGTU, Petropavlovsk-Kamchatskii, 2011, 144 pp.
[4] M. F. Armenta, M. R. Montes, L. M. Alcala, “Wellbore modeling of production well H-1D using WellSim, Los Humeros geothermal field, Mexico”, Proceedings World Geothermal Congress 2015 (Melbourne, Australia, 19–25 April 2015), 22021, 6 pp.
[5] H. Gudmundsdottir, M. T. Jonsson, “The wellbore simulator FloWell-model enhancement and verification”, Proceedings World Geothermal Congress 2015 (Melbourne, Australia, 19–25 April 2015), 22071, 10 pp.
[6] M. T. Fathaddin, H. A. Jibriela, I. M. Azmi, “Geothermal two phase flow correlation in vertical hihes using dimensional analyses”, Proceedings World Geothermal Congress 2015 (Melbourne, Australia, 19–25 April 2015), 25002, 8 pp.
[7] A. N. Shulyupin, A. A. Chermoshentseva, “On Calculation of a Steam-Water Flow in a Geothermal Well”, Technical Physics, 58:8 (2013), 1100–1105 | DOI
[8] G. Bjornsson, A multy-feedzone geothermal wellbore simulator, Report LBL-23546, Lowrence Berkeley Laboratory, 1987, 117 pp.
[9] A. N. Shuliupin, “Techenie v geotermalnoi skvazhine: model i eksperiment”, Vulkanologiia i seismologiia, 1991, no. 4, 25–31
[10] A. N. Shuliupin, A. A. Chermoshentseva, “Model dispersno-koltsevogo potoka v geotermalnoi skvazhine”, Dinamika geterogennykh sred v geotekhnologicheskom proizvodstve, Izd. KGARF, Petropavlovsk-Kamchatskii, 1998, 23–35
[11] A. A. Chermoshentseva, “Techenie teplonositelia v geotermalnoi skvazhine”, Matematicheskoe modelirovanie, 18:4 (2006), 61–76
[12] A. A. Aleksandrov, “Sistema uravnenii IFPWS-IF 97 dlia vychisleniia termodinamicheskikh svoistv vody i vodianogo para v promyshlennykh raschetakh. Ch. 1. Osnovnye uravneniia”, Teploenergetika, 1998, no. 9, 69–77
[13] V. A. Grigoreva, V. M. Zorina, Teoreticheskie osnovy teplotekhniki. Teplotekhnicheskii eksperiment, Spravochnik, Energoatomizdat, M., 1988, 560 pp.
[14] I. I. Chernev, A. N. Shuliupin, “Izmenenie konstruktsii kak sposob povysheniia proizvoditelnosti dobychnykh skvazhin parogidrotermalnykh mestorozhdenii”, Gornyi informatsionnyi analinicheskii biulleten, 2013, Otd. vyp. 4, 103–107