Analysis of gas preparation processes for improvement of gas transportation technology

At production, collection and transport of low – pressure gas to deep water offshore platforms in sea conditions because of thermodynamic indices change in the system, complications are generated in connection with liquid phases – separation. These complications disturb normal operational well behav...

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Autores principales: Abdulaga Gurbanov, Ijabika Sardarova, Javida Damirova
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Lenguaje:EN
Publicado: Scientific Route OÜ 2021
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Acceso en línea:https://doaj.org/article/be0204ab00504f0d9b947cdf8f989433
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spelling oai:doaj.org-article:be0204ab00504f0d9b947cdf8f9894332021-11-19T13:32:07ZAnalysis of gas preparation processes for improvement of gas transportation technology2461-42542461-426210.21303/2461-4262.2021.002081https://doaj.org/article/be0204ab00504f0d9b947cdf8f9894332021-11-01T00:00:00Zhttp://journal.eu-jr.eu/engineering/article/view/2081https://doaj.org/toc/2461-4254https://doaj.org/toc/2461-4262At production, collection and transport of low – pressure gas to deep water offshore platforms in sea conditions because of thermodynamic indices change in the system, complications are generated in connection with liquid phases – separation. These complications disturb normal operational well behavior, gas preparation unit and trunk (main) pipeline conditions. As a result of these phenomena high – volume losses of gas, gas condensate and chemical reagent take place. In the process of testing, the following process parameters were determined: pressure, gas temperature, facility performance, regeneration temperature, amount of absorbent injected into the gas flow, concentration of regenerated and saturated absorbent, dry gas dew point and so on. In the process of investigating the effect of the amount of inhibitor on the degree of corrosion prevention, hydrate formation and salt deposit at the facilities, regression equations. That is why, to guarantee uninterrupted transportation of low-pressure gas in field conditions, new methods are required for these phenomena prevention. On the basis of field study results some variants of calculation were given to increase efficiency of low-pressure gas transportation system in offshore oil and gas field’s conditions. Results of high-pressure gas optimal working pressure calculation for precipitated liquid phase displacement at low-pressure petroleum gas transportation to deepwater offshore platforms are shown in the article. As well, method for precipitated liquid phase displacement from low-pressure gas pipeline with usage of high-viscosity elastic gelling compositions on the basis of domestic petrochemical productsAbdulaga GurbanovIjabika SardarovaJavida DamirovaScientific Route OÜarticleoffshore platformcondensateliquid phasegas pipelineshearing stressseparatorviscosity elastic compositionpipelinehydrate formationthermodynamic parametersMechanical engineering and machineryTJ1-1570PhysicsQC1-999ENEUREKA: Physics and Engineering, Iss 6, Pp 48-56 (2021)
institution DOAJ
collection DOAJ
language EN
topic offshore platform
condensate
liquid phase
gas pipeline
shearing stress
separator
viscosity elastic composition
pipeline
hydrate formation
thermodynamic parameters
Mechanical engineering and machinery
TJ1-1570
Physics
QC1-999
spellingShingle offshore platform
condensate
liquid phase
gas pipeline
shearing stress
separator
viscosity elastic composition
pipeline
hydrate formation
thermodynamic parameters
Mechanical engineering and machinery
TJ1-1570
Physics
QC1-999
Abdulaga Gurbanov
Ijabika Sardarova
Javida Damirova
Analysis of gas preparation processes for improvement of gas transportation technology
description At production, collection and transport of low – pressure gas to deep water offshore platforms in sea conditions because of thermodynamic indices change in the system, complications are generated in connection with liquid phases – separation. These complications disturb normal operational well behavior, gas preparation unit and trunk (main) pipeline conditions. As a result of these phenomena high – volume losses of gas, gas condensate and chemical reagent take place. In the process of testing, the following process parameters were determined: pressure, gas temperature, facility performance, regeneration temperature, amount of absorbent injected into the gas flow, concentration of regenerated and saturated absorbent, dry gas dew point and so on. In the process of investigating the effect of the amount of inhibitor on the degree of corrosion prevention, hydrate formation and salt deposit at the facilities, regression equations. That is why, to guarantee uninterrupted transportation of low-pressure gas in field conditions, new methods are required for these phenomena prevention. On the basis of field study results some variants of calculation were given to increase efficiency of low-pressure gas transportation system in offshore oil and gas field’s conditions. Results of high-pressure gas optimal working pressure calculation for precipitated liquid phase displacement at low-pressure petroleum gas transportation to deepwater offshore platforms are shown in the article. As well, method for precipitated liquid phase displacement from low-pressure gas pipeline with usage of high-viscosity elastic gelling compositions on the basis of domestic petrochemical products
format article
author Abdulaga Gurbanov
Ijabika Sardarova
Javida Damirova
author_facet Abdulaga Gurbanov
Ijabika Sardarova
Javida Damirova
author_sort Abdulaga Gurbanov
title Analysis of gas preparation processes for improvement of gas transportation technology
title_short Analysis of gas preparation processes for improvement of gas transportation technology
title_full Analysis of gas preparation processes for improvement of gas transportation technology
title_fullStr Analysis of gas preparation processes for improvement of gas transportation technology
title_full_unstemmed Analysis of gas preparation processes for improvement of gas transportation technology
title_sort analysis of gas preparation processes for improvement of gas transportation technology
publisher Scientific Route OÜ
publishDate 2021
url https://doaj.org/article/be0204ab00504f0d9b947cdf8f989433
work_keys_str_mv AT abdulagagurbanov analysisofgaspreparationprocessesforimprovementofgastransportationtechnology
AT ijabikasardarova analysisofgaspreparationprocessesforimprovementofgastransportationtechnology
AT javidadamirova analysisofgaspreparationprocessesforimprovementofgastransportationtechnology
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