Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline

The technology of depressant utilization, which essentially depends on the method of its addition to oil, has a substantial impact on the efficiency of the main pipeline. Direct injection of a pour point depressant into the reservoir enables to maintain optimal conditions for oil processing, namely,...

Full description

Bibliographic Details
Main Authors: Bisengaliev M.D., Zholbasarova A.T., Togasheva A.R., Bayamirova R.Y., Sarbopeeva M.D.
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/64/e3sconf_suse2021_01005.pdf
id doaj-2227e4cd41204eb8bf6cdc0f3ec4b2df
record_format Article
spelling doaj-2227e4cd41204eb8bf6cdc0f3ec4b2df2021-07-15T06:53:01ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012880100510.1051/e3sconf/202128801005e3sconf_suse2021_01005Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipelineBisengaliev M.D.0Zholbasarova A.T.1Togasheva A.R.2Bayamirova R.Y.3Sarbopeeva M.D.4Atyrau Oil and Gas UniversityCaspian State University of Technology and Engineering named after Sh. YessenovCaspian State University of Technology and Engineering named after Sh. YessenovCaspian State University of Technology and Engineering named after Sh. YessenovCaspian State University of Technology and Engineering named after Sh. YessenovThe technology of depressant utilization, which essentially depends on the method of its addition to oil, has a substantial impact on the efficiency of the main pipeline. Direct injection of a pour point depressant into the reservoir enables to maintain optimal conditions for oil processing, namely, to cool the oil at an optimal rate and, which is especially important, in static conditions. But in this case, significant capital investments will be required for mixing devices, devices for cooling oil, for the construction of additional tanks, etc. The addition of pour point directly into the pipeline (before or after the head pumping and heating stations) cannot provide optimal cooling conditions. This process does not significantly improve the rheological properties of oil as compared to the introduction of a depressant directly into the reservoir. The introduction of a pour point depressant directly into the pipeline will significantly reduce capital costs for processing highly paraffinic oil and the advantages of this method are obvious. The proposed method of depressant utilization will reduce their consumption, and energy consumption for heating oil. This goal is achieved by the fact that the pour point depressant is not added to the entire volume of highly paraffinic oil pumped through the pipeline, but only to the annular near-wall layer of oil in the pipe, thus creating a low-viscosity near-wall layer of the pumped highly paraffinic oil. This paper presents a scheme for the implementation of the proposed method and formulas for thermal calculations of the pipeline sections considering depressant addition to oil.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/64/e3sconf_suse2021_01005.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Bisengaliev M.D.
Zholbasarova A.T.
Togasheva A.R.
Bayamirova R.Y.
Sarbopeeva M.D.
spellingShingle Bisengaliev M.D.
Zholbasarova A.T.
Togasheva A.R.
Bayamirova R.Y.
Sarbopeeva M.D.
Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline
E3S Web of Conferences
author_facet Bisengaliev M.D.
Zholbasarova A.T.
Togasheva A.R.
Bayamirova R.Y.
Sarbopeeva M.D.
author_sort Bisengaliev M.D.
title Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline
title_short Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline
title_full Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline
title_fullStr Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline
title_full_unstemmed Development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline
title_sort development of technologies for the pour point depressant treatment of an annular near-wall layer of oil pumped through a main pipeline
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The technology of depressant utilization, which essentially depends on the method of its addition to oil, has a substantial impact on the efficiency of the main pipeline. Direct injection of a pour point depressant into the reservoir enables to maintain optimal conditions for oil processing, namely, to cool the oil at an optimal rate and, which is especially important, in static conditions. But in this case, significant capital investments will be required for mixing devices, devices for cooling oil, for the construction of additional tanks, etc. The addition of pour point directly into the pipeline (before or after the head pumping and heating stations) cannot provide optimal cooling conditions. This process does not significantly improve the rheological properties of oil as compared to the introduction of a depressant directly into the reservoir. The introduction of a pour point depressant directly into the pipeline will significantly reduce capital costs for processing highly paraffinic oil and the advantages of this method are obvious. The proposed method of depressant utilization will reduce their consumption, and energy consumption for heating oil. This goal is achieved by the fact that the pour point depressant is not added to the entire volume of highly paraffinic oil pumped through the pipeline, but only to the annular near-wall layer of oil in the pipe, thus creating a low-viscosity near-wall layer of the pumped highly paraffinic oil. This paper presents a scheme for the implementation of the proposed method and formulas for thermal calculations of the pipeline sections considering depressant addition to oil.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/64/e3sconf_suse2021_01005.pdf
work_keys_str_mv AT bisengalievmd developmentoftechnologiesforthepourpointdepressanttreatmentofanannularnearwalllayerofoilpumpedthroughamainpipeline
AT zholbasarovaat developmentoftechnologiesforthepourpointdepressanttreatmentofanannularnearwalllayerofoilpumpedthroughamainpipeline
AT togashevaar developmentoftechnologiesforthepourpointdepressanttreatmentofanannularnearwalllayerofoilpumpedthroughamainpipeline
AT bayamirovary developmentoftechnologiesforthepourpointdepressanttreatmentofanannularnearwalllayerofoilpumpedthroughamainpipeline
AT sarbopeevamd developmentoftechnologiesforthepourpointdepressanttreatmentofanannularnearwalllayerofoilpumpedthroughamainpipeline
_version_ 1721301734130712576