Preview

Herald of Dagestan State Technical University. Technical Sciences

Advanced search

THE IMPACT OF LIQUEFIED NATURAL GAS COMPOSITION AND TECHNOLOGICAL CHARACTERISTICS OF THE STARTING STORAGE OF THE EQUIPMENT AT THE TIME OF OCCURRENCE OF THE PHENOMENON OF ROLLOVER

https://doi.org/10.21822/2073-6185-2019-46-1-66-78

Abstract

Objectives. Ways to prevent the onset of rollover in the liquefied natural gas storage.

Method. The article deals with modern methods of mathematical modeling and software when solving problems in a nonlinear formulation. A regulatory analysis of existing methods of LNG transportation has been carried out.

Result. Using the mathematical program ANSYS, the rollover process in the liquefied natural gas storage was modeled. In the ANSYS software package, 3d modeling of the process of heat and mass transfer of the stratified liquid in the liquefied natural gas storage was performed. When simulating a rollover phenomenon, the time to its occurrence was 30 minutes, which differs from the experimental value by 1.7%. Based on the results of the calculations, it can be determined that the time to the onset of rollover depends on the concentration of the component layers, on the filling and geometry of the reservoir. These factors lead to an increase in evaporation of liquefied natural gas of 0.04%.

Conclusion. The method of numerical experiment allows to determine the distribution of pressure, temperature, density, concentration in the object under study, without resorting to real experiments. The use of the ANSYS software package of computational fluid dynamics in the process of heat and mass transfer of the stratified liquid in the liquefied natural gas storage is necessary when calculating the increased accuracy.

About the Authors

R. A. Khuramshina
Ufa State Petroleum Technological University
Russian Federation

Master Student.

1 Kosmonavtov Str., Ufa 450062.



A. I. Yamalov
Ufa State Petroleum Technological University
Russian Federation

Second category Engineer.

1 Kosmonavtov Str., Ufa 450062.



References

1. Perspektivy ispol'zovaniya SPG v Arkticheskom regione RF po otsenkam WWF [Elektron-nyy resurs]. – Rezhim dostupa:http://proarctic.ru/04/07/2017/ecology/27146(data obrashcheniya: 25.04.2018). [Prospects of LNG use in the Arctic region of the Russian Federation according to WWF [Electronic resource]. – Mode of access:http://proarctic.ru/04/07/2017/ecology/27146(date accessed: 25.04.2018). (In Russ)]

2. Vlasov A.V. Pridet li prirodnyy gaz na smenu mazutu? - Novyyetekhnologii. - Vypusk 4 (10). - 2010. - s. 67-70 [Vlasov A. V. will the natural gas to replace fuel oil? - New technology. - Issue 4 (10). - 2010. - p. 67-70(In Russ)]

3. Korolev N.S. K postroyeniyu matematicheskoy modeli yavleniya rollover v khranilishche SPG // Nauka i obrazovaniye. MGTU im. N.E. Baumana. Elektron.zhurn. 2012. № 3. [Queens N. S. To the construction of a mathematical model of the rollover phenomenon in LNG storage / / Science and education. MGTU im. N. Uh. Bauman. Electron.journal. 2012. No. 3. (In Russ)]

4. Korolev N.S. Matematicheskoye modelirovaniye yavleniya rollover v sistemakh khraneniya szhi-zhennogo prirodnogo gaza // Aktual'nyye problemy rossiyskoy kosmonavtiki: materialy XXXVII akademi-cheskikh chteniy po kosmonavtike. M.: KomissiyaRAN, 2013. C. 383-384. [Queens N. S. Mathematical modeling of the rollover phenomenon in liquefied natural gas storage systems // Actual problems of Russian cosmonautics: materials of XXXVII academic readings on cosmonautics. M.: Commission of RAS, 2013. 383-384. (In Russ)]

5. May E.F. Fluid Science for improved LNG Production and shipping. Presentation of the University Of Western Australia, 2010.

6. Vargaftik N.B., Spravochnik po teplofizicheskim svoystvam gazov i zhidkostey // M. Nauka. 1972. [Vargaftik N. B. Reference book on thermophysical properties of gases and liquids // M. Nauka. 1972. (In Russ)]

7. Menter F. R., Langtry R. B., Likki S. R., Suzen Y. B., Huang P. G., Volker S.«A Correlation-Based Transition Model Using Local Variables: Part I — Model Formulation».(ASME-GT2004-53452),2004.pplications //AIAA Journal.August 1994. №32 (8).pp. 1598–1605.

8. Vasil'yev, G. G. Osobennosti obespecheniya bezopasnoy ekspluatatsii krupnogabaritnykh izo-termicheskikh rezervuarov dlya khraneniya szhizhennogo prirodnogo gaza / G. G. Vasil'yev, S. G. Ivantsova, A. I. Rakhmanin // Gazovaya promyshlennost'. – Vypusk: 11 11. – Moskva: RGU nefti i gaza im. I.M. Gubkina, 2013 – S. 57-61. [Vasil'ev, G. G. Features ensure the safe operation of large insulated storage tanks for liquefied natural gas / G. G. Vasilyev, S. G. Ivantsov, A. I. Rachmaninov // Gas industry. - Issue: 11 11. – Moscow: Russian state University of oil and gas. I. M. Gubkina, 2013-P. 57-61. (In Russ)]

9. Rakhimov V.O. Osobennosti termodinamicheskikh protsessov pri khranenii szhizhennogo prirodnogo gaza: avtoref. diss. na soisk. uch. step. kandidata tekhn. nauk: 25.00.19/ Rakhimov Vadim Olegovich –M., –2013, –24 s. [Rakhimov V. O. features of thermodynamic processes during storage of liquefied natural gas: autoref. dis. on competition of a scientific degree. academic step. the candidate tehn. Sciences: 25.00.19 / Rakhimov Vadim Olegovich- M., -2013, -24 p. (In Russ)]

10. Shammazov A.M. Proizvodstvo, khraneniye i transport szhizhennogo prirodnogo gaza/ A.M. Shammazov, R.K. Teregulov, B.N.Mastobayev, G.Ye. Korobkov. –SPb.: Nedra, 2007. –152 s. [Shammazov A. M. Production, storage and transport of liquefied natural gas/ by A. M. Shammazov, R. K. Teregulov, B. N. Mastobayev, G. E. Box. –SPb.: Nedra, 2007. -152 p.vvv(In Russ)]

11. Liquefied Natural Gas Worldwide [Электронный ресурс].- Режим доступа:http://www.energy.ca.gov/lng/international.html (дата обращения: 25.04.2018)

12. Liquefied Natural Gas Worldwide [Электронный ресурс].- Режим доступа: http://www.energy.ca.gov/lng/international.html (дата обращения: 25.04.2018).

13. De Wit, Johannes. Liquefied Gas Storage Tank Design, Construction Addressed/ Johannes de Wit// Oil & Gas Journal. –1987. – 6 July

14. Korolev N.S. Analiz vozniknoveniya yavleniya «rollover» v sistemakh khraneniyaszhizhennogo prirodnogo gaza // Aktual'nyye problemy rossiyskoy kosmonavtiki: Materialy XXXVI akademicheskikh chteniy po kosmonavtike. M.:Komissiya RAN, 2012. C. 353–354. [Korolev N. S. Analysis of the occurrence of the "rollover" phenomenon in liquefied natural gas storage systems // Actual problems of Russian cosmonautics: materials of XXXVI academic readings on cosmonautics. M.: Commission of RAS, 2012. C. 353-354(In Russ)]

15. MenterF. R. Two-Equation Eddy-Viscosity Turbulence Models for Engineering AApplications //AIAA Journal.August 1994.№ 32(8).pp. 1598–1605. 16. Menter F. R., Langtry R. B., Likki S. R., Suzen Y. B., Huang P. G., Volker S.«A Correlation-Based Transition Model Using Local Variables: Part I — Model Formulation».(ASME-GT2004-53452),2004.pplications //AIAA Journal.August 1994. №32 (8).pp. 1598–1605.

16. Kharlamov S.N. Mathematical Modelling of Thermo- and Hydrodynamical Processes in Pipelines. Rome, Italy: Publ. House “Ionta”, 2010. 263p.

17. Issledovanie voprosov proizvodstva i ispol'zovaniia SPG v kachestve al'ternativnogo topliva v razlichnykh otrasliakh narodnogo khoziaistva: otchet [Study on the production and use of LNG as an alternative fuel in various sectors of economy. Report]. Moscow, MEI, «Krion», 1994. 125 p. Non published(In Russ)]

18. Kuzin A.I., Lozin S.N., Lekhov P.A., Semenov A.I., Mamin V.V. Issledovaniia GKNPTs im. M. V. Khrunicheva po obosnovaniiu mnogorazovoi trebuemoi razmernosti raketno-kosmicheskoi sistemy [Research of the Khrunichev State space scientific-production center on the substantiation of reusable required dimensionality of space-rocket system]. Aviakosmicheskaia tekhnika i tekhnologiia , 2010, no. 1, pp. 3-12.

19. Kuzin A.I., Rachuk V.S., Koroteev A.S., et al. Obosnovanie vybora komponentov raketnogo topliva dlia dvigatel'nykh ustanovok pervoi stupeni mnogorazovoi raketnokosmicheskoi sistemy [Justification of the choice of components of rocket fuel for propulsion of the first stage of reusable space-rocket systems]. Aviakosmicheskaia tekhnika i tekhnologiia , 2010, no. 1, pp. 19-55. (In Russ)]

20. Korolev N.S. Matematicheskoe modelirovanie iavleniia rollover v sistemakh khraneniia szhizhennogo prirodnogo gaza [Mathematical modeling of phenomena of rollover in the systems of storage of liquefied natural gas]. Aktual'nye problemy rossiiskoi kosmonavtiki: materialy 37 akademicheskikh chtenii po kosmonavtike [Actual problems of Russian astronautics: Materials 37th academic readings on Astronautics]. Moscow, RAS Commission Publ., 2013, pp. 383-384. (In Russ)]

21. Uznanski D., Château E., Gorieu O., Legrandais J.-P. Investigations into the aging extent of the 9% nickel 500 mlng storage tank of the nantes cryogenic testing station. Paris, France, Gaz de France, 2003.

22. Chugunkov V.V. Teploperedacha pri slozhnom teploobmene na poverkhnostiakh konstruktsii [Heat transfer in complex heat transfer on surfaces of structures]. Moscow, Bauman Chugunkov V.V. Teploperedacha pri slozhnom teploobmene na poverkhnostiakh konstruktsii [Heat transfer in complex heat transfer on surfaces of structures]. Moscow, Bauman MSTU Publ., 2001. 28 p. (In Russ)]

23. The European fuels conference 11th annual meeting // HYDROCARBON WORLD. Paris, France: World Refining Association, 2010. Vol. 4, iss. 2. C. 35-38.

24. Barmin I.V., Kunis I.D. Szhizhennyy prirodnyy gaz vchera, segodnya, zavtra / Pod red. A.M. Arkharova. M.: Izd-vo MGTU im. N.E. Baumana, 2009. 256 s. [Barmin I. V., Kunis I. D. Liquefied natural gas yesterday, today, tomorrow / ed. by A. M. Arkharov. M.: Izd-vo MGTU im. N. Eh. Bauman, 2009. 256 p. (In Russ)]


Review

For citations:


Khuramshina R.A., Yamalov A.I. THE IMPACT OF LIQUEFIED NATURAL GAS COMPOSITION AND TECHNOLOGICAL CHARACTERISTICS OF THE STARTING STORAGE OF THE EQUIPMENT AT THE TIME OF OCCURRENCE OF THE PHENOMENON OF ROLLOVER. Herald of Dagestan State Technical University. Technical Sciences. 2019;46(1):66-78. (In Russ.) https://doi.org/10.21822/2073-6185-2019-46-1-66-78

Views: 957


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2073-6185 (Print)
ISSN 2542-095X (Online)