Scientific and technical journal

«Equipment and technologies for oil and gas complex»

ISSN 1999-6934

STRUCTURAL VISCOSITY OF NON-NEWTONIAN OILS

UDC: 665.61
DOI: 10.33285/1999-6934-2021-2(122)-62-68

Authors:

KELBALIEV GUDRAT ISFANDIYAR1,
TAGIEV DILGAM BEBIR1,
RASULOV SAKIT RAUF2

1 Institute of Catalysis and Inorganic Chemistry of the ANAS, Baku, Republic of Azerbaijan
2 Azerbaijan State Oil and Industry University, Baku, Republic of Azerbaijan

Keywords: rheology; structure; non-Newtonian oil; viscosity; asphalt-resinous substances

Annotation:

As a result of the analysis of the dispersion medium, many semi-empirical formulas have been proposed to estimate the viscosity of non-Newtonian oil depending on the water and asphalt-resinous substances in it. It is noted that the content of various particles in oil significantly affects the structural formation and its rheological properties and the particles concentration growth allows estimating the area of coagulation structures formation.

Bibliography:

1. Келбалиев Г.И., Расулов С.Р. Гидродинамика и массоперенос в дисперсных средах. – СПб.: ХимИздат, 2014. – 568 с.
2. Келбалиев Г.И., Расулов С.Р., Рзаев А.Г. Нефтяная гидродинамика. – М.: Маска, 2015. – 358 с.
3. Kelbaliyev G.I., Tagiyev L.B., Rasulov S.R. Transport Phenomena in Dispersed Media. – Boca Raton-London-New York: Taylor and Francis Group, CRC Press, 2019. – 456 p.
4. Kelbaliyev G.I., Rasulov S.R., Mustafayeva G.R. Viscosity of Structured Disperse Systems // Theoretical Foundations of Chemical Engineering. – 2018. – Vol. 52, No. 3. – P. 404–411. – DOI: 10.1134/S0040579518020082
5. Batchelor G.K. The effect of Brownian motion on the bulk stress in a suspension of spherical particles // J. of Fluid Mechanics. – 1977. – Vol. 83, Issue 1. – P. 97–117. – DOI: 10.1017/S0022112077001062
6. Krieger I.M., Dougherty T.J. A mechanism for non-Newtonian flow in suspensions of rigid spheres // Transactions of the Society of Rheology. – 1959. – Vol. 3, Issue 1. – P. 137–152. – DOI: 10.1122/1.548848
7. Quemada D. Rheology of concentrated disperse systems and minimum energy dissipation principle I. Viscosity-concentration relationship // Rheologica Acta. – 1977. – Vol. 16, Issue 1. – P. 82–94. – DOI: 10.1007/BF01516932
8. Броунштейн Б.И., Щеголев В.В. Гидродинамика, массо- и теплообмен в колонных аппаратах. – Л.: Химия, 1988. – 336 с.
9. Ходаков Г.С. Реология суспензий. Теория фазового течения и ее экспериментальное обоснование // Российский хим. журн. – 2003. – Т. XLVII, № 2. – С. 33–41.
10. Vielma J.C. Rheological Behavior of Oil-Water Dispersion flow in horizontal pipes: a thesis for the degree of Master of Science in the Discipline of Petroleum Engineering. – The University of Tulsa, 2006. – 107 p.
11. Mewis J., Wagner N.J. Colloidal Suspension Rheology. – Cambridge University Press, 2011. – 415 p.
12. Oil Emulsions. – URL: http://petrowiki.org/Oil%20emulsions
13. Kroy K., Capron I., Djabourov M. On the Viscosity of Emulsions // Physiqe Thermique. – Paris: ESPCI, 1999. – 14 p. – URL: https://arxiv.org/pdf/physics/9911078.pdf
14. Argiller J.-F., Coustet C., Henaut I. Heavy Oil Rheology as a Function of Asphaltene and Resin Content and Temperature // SPE Int. Thermal Operations and Heavy Oil Symposium and Int. Horizontal Well Technology Conf., Calgary, Alberta, Canada. – 2002. – DOI: 10.2118/79496-MS
15. Davarpanah L., Vahabzadeh F., Dermanaki A. Structural Study of Asphaltenes from Iranian Heavy Crude Oil // Oil & Gas Science and Technol. – Rev. IFP Energies nouvelles. – 2015. – Vol. 70, No. 6. – P. 1035–1049. – DOI: 10.2516/ogst/2012066
16. Влияние температуры и концентрации асфальтенов на реологические свойства дисперсных систем гудрона западно-сибирской нефти / А.А. Мухамедзянова, В.А. Будник, А.С. Алябьев, А.А. Хайбуллин // Башкирский хим. журн. – 2012. – Т. 19, № 4. – С. 114–118.