Calculating the steady-state operations of profile gas pipelines with high and ultrahigh pressures
Keywords:
differential equations, equation of state, gas pipeline “South Stream”, high and ultra-high-pressures, Joule- Thomson coefficient, numerical algorithm, profile of the gas pipeline.Abstract
The pipelines, the working conditions of which are significantly different from the conditions of the majority of the existing
systems are considered in this article. In this article, the gas pipelines with large difference in elevation that operate at high
(5–15 MPa) and ultrahigh pressures (up to 25–35 MPa) are taken into the account. First of all, deep and gas pipelines that
overcome the high mountain passes are considered. The theory and algorithm for calculating the steady-state operations of such
pipelines are presented.
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References
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[2] Jufin, VA (ed.) 1978, Truboprovodnyj transport nefti
i gaza, Nedra, Moscow.
[3] Lurie, MV 2012, Matematicheskoe modelirovanie
processov truboprovodnogo transporta nefti, nefteproduktov i
gaza, Publishing Center Gubkin Russian State University of
Oil and Gas, Moscow.
[4] Novoselov, VF, Gol'janov, AI & Muftahov, EM
1982, Tipovye raschety pri proektirovanii i jekspluatacii
gazoprovodov, Nedra, Moscow.
[5] Kirillin, AV, Sychev, VV & Shejndlin, AE 1983,
Tehnicheskaja termodinamika, Jenergoatomizdat, Moscow.
[6] Genick, Bar–Meir 2007, Fundamentals of
Compressible Fluid Mechanics, Minneapolis, USA.
[7] Reid, RC, Prausnitz, JM & Poling, BE 1987, The
Properties of Gases and Liquids. 4th edt, McGraw-Hill.
[8] Batchelor, GK 2002, An introduction to fluid
dynamics, 12th edt, Cambridge University Press, Cambridge.
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Published
2014-12-07
How to Cite
Lurie, M. (2014). Calculating the steady-state operations of profile gas pipelines with high and ultrahigh pressures. JOURNAL OF HYDROCARBON POWER ENGINEERING, 1(1), 30–35. Retrieved from https://ogpe.nung.edu.ua/index.php/jhpe/article/view/8
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OIL AND GAS TRANSPORTATION
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