Non-stationary non-isothermal flow of gase mix in the sea gas pipelines
Matematičeskoe modelirovanie, Tome 23 (2011) no. 4, pp. 141-153.

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The paper presents a mathematical model of shock free non-stationary non-isothermal turbulent flow of viscous nonideal chemically inert multicomponent gas mix in the sea circular cross section gas pipelines with rigid multilayer coating. Flow characteristics calculation results for the problem of finding long-term flow periodic behavior in the conditions of periodic rate change on the right end are provided.
Keywords: mathematical model, offshore gas pipelines, non-stationary, nonisothermal, parameter calculating.
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E. V. Grunicheva; G. I. Kurbatova; E. A. Popova. Non-stationary non-isothermal flow of gase mix in the sea gas pipelines. Matematičeskoe modelirovanie, Tome 23 (2011) no. 4, pp. 141-153. http://geodesic.mathdoc.fr/item/MM_2011_23_4_a10/

[1] Kurbatova G. I., Filippov B. V., Filippov V. B., “Neizotermicheskoe turbulentnoe techenie szhimaemogo gaza”, Matematicheskoe modelirovanie, 15:3 (2003), 92–108 | Zbl

[2] Dertsakyan A. K., Kurbatova G. I., Neizvestnov Ya. V., Filippov B. V., “Nekotorye nauchno-tekhnicheskie problemy osvoeniya shelfa arkticheskikh morei Rossii”, Tr. XIII Mezhdunar. shkoly po modelyam mekhaniki sploshnykh sred, SPb., 1996, 99–109

[3] Kurbatova G. I., Popova E. A., Filippov B. V., Filippov V. B., Filippov K. B., Modeli morskikh gazoprovodov, S.-P. gos. un-t, SPb, 2005, 156 pp.

[4] Voevodin A. F., Nikiforovskaya V. S., “Chislennyi metod opredeleniya mesta utechki zhidkosti ili gaza v truboprovode”, Sibirskii zhurnal industrialnoi matematiki, 12:1 (2009), 25–30

[5] Seleznev V. E., Boichenko A. A., Pryalov S. N., “Operativnoe obnaruzhenie razryvov magistralnykh gazoprovodov”, Matematicheskoe modelirovanie, 18:2 (2006), 101–112 | Zbl

[6] Baloev A. A., Murga L. O., “Cintez upravleniya transportirovkoi uglevodorodnogo syrya po dlinnym truboprovodam”, Vestnik Kazanskogo gosudarstvennogo tekhnicheskogo universiteta im. A. N. Tupoleva, 2004, no. 1, 50–55

[7] Kazak K. A., Kazak A. S., “Razrabotka metoda rascheta neustanovivshikhsya rezhimov transporta gaza po uchastku truboprovoda pri vozniknovenii utechki”, Sistemy upravleniya i informatsionnye tekhnologii, 2007, no. 2.2(28), 237–240

[8] Charnyi I. A., Neustanovivsheesya dvizhenie realnoi zhidkosti v trubakh, Nedra, M., 1975, 296 pp.

[9] Lure M. V., Pyatakova O. A., “Osobennosti teplovogo rascheta magistralnykh gazoprovodov s uchetom inversii effekta Dzhoulya–Tompsona”, Gazovaya promyshlennost, 2010, no. 2, 16–19

[10] Bunyakin A. V., Shiyan S. I., “Algoritm rascheta raspredeleniya davleniya, skorosti i temperatury pri statsionarnom odnomernom techenii na primere morskogo uchastka gazoprovoda ‘Rossiya–Turtsiya’ ”, Izvestiya vuzov Severo-Kavkazskogo regiona. Seriya Tekhnicheskie nauki, 2004, Prilozhenie No 9, 105–110

[11] Osiadacz Andrzej J., Chaczykowski Maciej, “Comparison of isothermal and non-isothermal pipeline gas flow models”, Chemical Engineering Journal, 81 (2001), 41–51 | DOI

[12] Chaczykowski Maciej, “Transient flow in natural gas pipeline – The effect of pipeline thermal model”, Applied Mathematical Modelling, 34:4 (2010), 1051–1067 | DOI | MR | Zbl

[13] Vasilev O. F., Bondarev E. A., Voevodin A. F., Kanibolotskii M. A., Neizotermicheskoe techenie gaza v trubakh, Nauka S.O., Novosibirsk, 1978, 128 pp.

[14] Modisette J. L., “Equations of state tutorial”, Proceedings of the PSIG, The 32nd Annual Meeting Savannach, 2000, Paper 0008

[15] Rid R., Prausnits Dzh., Shervud T., Svoistva gazov i zhidkostei, Khimiya, L., 1982, 532 pp.

[16] Kazak K. A., Kazak A. S., “Modelirovanie nestatsionarnykh rezhimov gazoprovodov s granichnymi usloviyami po davleniyu i temperature v nachale uchastke i massovomu raskhodu na kontse”, Sistemy upravleniya i informatsionnye tekhnologii, 2007, no. 3(29), 8–10

[17] Voevodin A. F., Esipovich L. Ya., Kochan V. R., “Raznostnyi metod rascheta nestatsionarnogo odnomernogo techeniya gaza”, Zhurnal vych. matem. i mat. fiziki, 16:4 (1976), 1006–1016 | MR | Zbl

[18] Osiadacz Andrzej J., Chaczykowski Maciej, “Comparison of isothermal and non-isothermal pipeline gas flow models”, Chemical Engineering Journal, 81 (2001), 41–51 | DOI

[19] Zubov V. I., Koterov V. N., Krivtsov V. M., Shipilin A. V., “Nestatsionarnye gazodinamicheskie protsessy v gazoprovode na podvodnom perekhode cherez Chernoe more”, Matematicheskoe modelirovanie, 13:4 (2001), 58–70 | Zbl

[20] Seleznev V. E., Klishin G. S., Aleshin V. V., Pryalov S. N., Kiselev V. V., Boichenko A. L., Motlokhov V. V., Chislennyi analiz i optimizatsiya gazodinamicheskikh rezhimov transporta prirodnogo gaza, URSS, M., 2003, 223 pp.

[21] Abbaspour M., Chapman K. S., “Nonisothermal transient flow in natural gas pipeline”, J. of Applied Mechanics, 75:3 (2008), 031018/1–031018/18 | DOI

[22] Gato L. M. C., Henriques J. C. C., “Dynamic behavior of high-pressure natural-gas flow in pipelines”, International Journal of Heat and Fluid Flow, 26:5 (2005), 817–825 | DOI

[23] Grunicheva E. V., Kurbatova G. I., Popova E. A., “Matematicheskaya model nestatsionarnogo neizotermicheskogo techeniya smesi gazov po morskim gazoprovodam”, Vestnik S.-Peterb. un-ta, ser. 10, 2010, no. 1, 42–29