CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING

The relevance of the research is caused by the necessity of calculating the parameters of a heat-transfer agent pumped into an oil-containing reservoir throughout its movement from the exit from a heater or steam generator to the porous collector. The main method used today for developing the deposi...

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Published in:Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov
Main Authors: Nail G. Musakaev, Stanislav L. Borodin
Format: Article in Journal/Newspaper
Language:Russian
Published: Tomsk Polytechnic University 2020
Subjects:
Online Access:https://doi.org/10.18799/24131830/2020/3/2556
https://doaj.org/article/a8806035a950404b8a9831a8c23762a9
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spelling ftdoajarticles:oai:doaj.org/article:a8806035a950404b8a9831a8c23762a9 2023-05-15T17:57:25+02:00 CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING Nail G. Musakaev Stanislav L. Borodin 2020-03-01T00:00:00Z https://doi.org/10.18799/24131830/2020/3/2556 https://doaj.org/article/a8806035a950404b8a9831a8c23762a9 RU rus Tomsk Polytechnic University http://izvestiya.tpu.ru/archive/article/view/2556/2188 https://doaj.org/toc/2500-1019 https://doaj.org/toc/2413-1830 doi:10.18799/24131830/2020/3/2556 2500-1019 2413-1830 https://doaj.org/article/a8806035a950404b8a9831a8c23762a9 Известия Томского политехнического университета: Инжиниринг георесурсов, Vol 331, Iss 3, Pp 135-144 (2020) numerical research permafrost heat-transfer agent two-phase flow heat transfer Engineering geology. Rock mechanics. Soil mechanics. Underground construction TA703-712 article 2020 ftdoajarticles https://doi.org/10.18799/24131830/2020/3/2556 2022-12-31T05:08:57Z The relevance of the research is caused by the necessity of calculating the parameters of a heat-transfer agent pumped into an oil-containing reservoir throughout its movement from the exit from a heater or steam generator to the porous collector. The main method used today for developing the deposits of highly viscous and bituminous oils is the injection of thermal agent (hot water or steam) into such deposits. With thermal method of enhanced oil recovery, oil viscosity decreases and oil recovery factor increases. Increased oil recovery factor can lead to the profitability of the development of fields with highly viscous oils. Since the production of a hot steam-water mixture requires sufficiently high energy costs and for effective thermal effects on the oil reservoir a considerable amount of heat-transfer agent is required at sufficiently high injection rates, for the successful implementation of this development method, preliminary calculations are needed, which are based on an adequate mathematical model that takes into account various aspects the studied process. The main aim of the research is to analyze the influence of various factors on the nature of the distribution of heat-transfer agent parameters along the well depth, as well as the permafrost melting intensity. Objects: hydrodynamic and thermophysical processes occurring during heat-transfer agent movement in an injection well, taking into account thermal interaction with the surrounding rock. Methods. This theoretical study was performed on the basis of the methods of the mechanics of multiphase systems and computational mathematics. The task of finding the parameters of the downward two-phase flow in an injection well is divided into two parts. In the first part, the thermodynamic parameters of steady-state downward flow of a hot steam-water mixture in a well are determined taking into account heat losses to the surrounding rocks. In the second part, non-stationary propagation of heat, coming from the well product, in the surrounding rock is ... Article in Journal/Newspaper permafrost Directory of Open Access Journals: DOAJ Articles Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov 331 3 135 144
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language Russian
topic numerical research
permafrost
heat-transfer agent
two-phase flow
heat transfer
Engineering geology. Rock mechanics. Soil mechanics. Underground construction
TA703-712
spellingShingle numerical research
permafrost
heat-transfer agent
two-phase flow
heat transfer
Engineering geology. Rock mechanics. Soil mechanics. Underground construction
TA703-712
Nail G. Musakaev
Stanislav L. Borodin
CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING
topic_facet numerical research
permafrost
heat-transfer agent
two-phase flow
heat transfer
Engineering geology. Rock mechanics. Soil mechanics. Underground construction
TA703-712
description The relevance of the research is caused by the necessity of calculating the parameters of a heat-transfer agent pumped into an oil-containing reservoir throughout its movement from the exit from a heater or steam generator to the porous collector. The main method used today for developing the deposits of highly viscous and bituminous oils is the injection of thermal agent (hot water or steam) into such deposits. With thermal method of enhanced oil recovery, oil viscosity decreases and oil recovery factor increases. Increased oil recovery factor can lead to the profitability of the development of fields with highly viscous oils. Since the production of a hot steam-water mixture requires sufficiently high energy costs and for effective thermal effects on the oil reservoir a considerable amount of heat-transfer agent is required at sufficiently high injection rates, for the successful implementation of this development method, preliminary calculations are needed, which are based on an adequate mathematical model that takes into account various aspects the studied process. The main aim of the research is to analyze the influence of various factors on the nature of the distribution of heat-transfer agent parameters along the well depth, as well as the permafrost melting intensity. Objects: hydrodynamic and thermophysical processes occurring during heat-transfer agent movement in an injection well, taking into account thermal interaction with the surrounding rock. Methods. This theoretical study was performed on the basis of the methods of the mechanics of multiphase systems and computational mathematics. The task of finding the parameters of the downward two-phase flow in an injection well is divided into two parts. In the first part, the thermodynamic parameters of steady-state downward flow of a hot steam-water mixture in a well are determined taking into account heat losses to the surrounding rocks. In the second part, non-stationary propagation of heat, coming from the well product, in the surrounding rock is ...
format Article in Journal/Newspaper
author Nail G. Musakaev
Stanislav L. Borodin
author_facet Nail G. Musakaev
Stanislav L. Borodin
author_sort Nail G. Musakaev
title CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING
title_short CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING
title_full CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING
title_fullStr CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING
title_full_unstemmed CALCULATION OF THERMODYNAMIC PARAMETERS OF THE HEAT TRANSFER AGENT DOWNWARD FLOW IN A WELL, TAKING INTO ACCOUNT PERMAFROST MELTING
title_sort calculation of thermodynamic parameters of the heat transfer agent downward flow in a well, taking into account permafrost melting
publisher Tomsk Polytechnic University
publishDate 2020
url https://doi.org/10.18799/24131830/2020/3/2556
https://doaj.org/article/a8806035a950404b8a9831a8c23762a9
genre permafrost
genre_facet permafrost
op_source Известия Томского политехнического университета: Инжиниринг георесурсов, Vol 331, Iss 3, Pp 135-144 (2020)
op_relation http://izvestiya.tpu.ru/archive/article/view/2556/2188
https://doaj.org/toc/2500-1019
https://doaj.org/toc/2413-1830
doi:10.18799/24131830/2020/3/2556
2500-1019
2413-1830
https://doaj.org/article/a8806035a950404b8a9831a8c23762a9
op_doi https://doi.org/10.18799/24131830/2020/3/2556
container_title Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov
container_volume 331
container_issue 3
container_start_page 135
op_container_end_page 144
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