Preview

Oil and Gas Studies

Advanced search

Estimating the effect of seasonally-operating cooling devices during a safe stop of the oil pipeline

https://doi.org/10.31660/0445-0108-2019-3-120-126

Abstract

Conducting thermal calculations of "hot" oil pipelines through which high-viscosity and high-sticking oils are transported is one of the main ones. Determining the rate of cooling of oil in a stopped pipeline is of practical importance. According to the cooling rate, the time to safely stop the "hot" pipeline is calculated. This is the time at which the "hot" oil pipeline doesn’t freeze and the station’s pressure is enough to overcome the shear stresses arising during the cooling f high-viscosity and high-sticking oil. Oil cooling in underground stopped pipelines depends on the temperature of the soil around it. Installed heat stabilizers designed to cool the soil can affect the cooling rate of the "hot" pipeline.
We have carried out a numerical experiment using modern tools of mathematical modelling. The experiment showed that the installed soil heat stabilizers near the underground "hot" pipeline have an impact on the process of cooling oil. These stabilizers have reduced the time to safely stop the pipeline.

About the Authors

Azamat U. Yakupov
Industrial University of Tyumen
Russian Federation

Postgraduate at the Department of Transportation of Hydrocarbon Resources



Dmitry A. Cherentsov
Industrial University of Tyumen
Russian Federation

Candidate of Engineering, Associate Professor at the Department of Transportation of Hydrocarbon Resources



Konstantin S. Voronin
Industrial University of Tyumen
Russian Federation

Candidate of Engineering, Associate Professor at the Department of Transportation of Hydrocarbon Resources



Yuri D. Zemenkov
Industrial University of Tyumen
Russian Federation

Doctor of Engineering, Professor, Head of the Department of Transportation of Hydrocarbon Resources



References

1. Математическое моделирование растепления многолетнемерзлых грунтов при взаимодействии с нефтепроводом / Я. С. Байдакова, А. П. Шабашов; науч. рук. К. С. Воронин, Д. А. Черенцов // Проблемы геологии и освоения недр: тр. XXI Междунар. симпозиума имени академика М. А. Усова студентов и молодых ученых, посвященного 130-летию со дня рождения профессора М. И. Кучина (3–7 апреля Томск, 2017): в 2 т. — Томск: Изд-во ТПУ, 2017. – Т. 2. – С. 686–688.

2. Трубопроводный транспорт нефти и газа: учеб. для вузов / Р. А. Алиев [и др.]. – 2-е изд., перераб. и доп. – М.: Недра, 1988. – 368 с.

3. Сулейманов В. А. Оценка времени безопасной остановки нефтепровода, по которому перекачивается высокозастывающая нефть // Вести газовой науки. – 2018. – № 2. – С. 36–43.

4. Черникин В. И. Перекачка вязких и застывающих нефтей. – М.: Гостоптехиздат, 1958. – 164 с.

5. Modernization of the individual device for temperature stabilization of the soil / K. S. Voronin [et at.] // IOP Conference Series: Materials Science and Engineering. – 2018. – Vol. 445, Issue 1. – 012011. DOI: 10.1088/1757-899Х/445/1/012011

6. Numerical simulation of a buried hot crude oil pipeline during shutdown / X. Cheng [et at.]. // Petroleum Science. – 2010. – Vol. 7, Issue 1. – P. 73-82. DOI: 10.1007/s12182-010-0008-х

7. Holubec I., Eng P. Flat Loop Thermosyphon Foundations in Warm Permafrost // Adapting to Climate Change Canada’s First National Engineering (April 2008).

8. Горелик Я. Б., Селезнев А. А. Об эффективности оребрения вертикальных двухфазных естественно-конвективных охлаждающих устройств для строительства на мерзлых грунтах // Криосфера Земли. – 2016. – Т. XX, № 2. – С. 78–89.


Review

For citations:


Yakupov A.U., Cherentsov D.A., Voronin K.S., Zemenkov Yu.D. Estimating the effect of seasonally-operating cooling devices during a safe stop of the oil pipeline. Oil and Gas Studies. 2019;(3):120-126. (In Russ.) https://doi.org/10.31660/0445-0108-2019-3-120-126

Views: 374


ISSN 0445-0108 (Print)