GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDS

The relevance of the study is caused by the search for ways to increase the efficiency of the development of geothermal fields on the basis of ensuring the stable operation of the system for the production and transportation of steam-water fluid. Purpose: to determine the nature and conditions for t...

Full description

Bibliographic Details
Main Author: Aleksandr N. Shulyupin
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2022-06-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya.tpu.ru/archive/article/view/3565/2731
_version_ 1811208694469230592
author Aleksandr N. Shulyupin
author_facet Aleksandr N. Shulyupin
author_sort Aleksandr N. Shulyupin
collection DOAJ
description The relevance of the study is caused by the search for ways to increase the efficiency of the development of geothermal fields on the basis of ensuring the stable operation of the system for the production and transportation of steam-water fluid. Purpose: to determine the nature and conditions for the development of instability of the steam-water flow in production wells and transport pipelines during the development of geothermal fields. Methods: application of the laws of classical dynamics to an element of a moving medium, taking into account the features of a gas-liquid flow; analysis of the conditions for the emergence and development of gravitational instability of the steam-water flow during the development of geothermal fields. Results. One of the mechanisms related to the macroscopic temporal instability of a gas-liquid flow is described, and the features of its implementation in systems for the production and transportation of heat agent during the development of geothermal fields are considered. The emergence of instability is associated with a spontaneous change in the momentum of the flow, expressed in a change in the mass flow rate, its development is associated with the presence of conditions in which a change in the momentum of a moving medium leads to similar in sign change of moving force. It is noted that the Ledinegg instability is one of the manifestations of this mechanism, which can also be realized in connection with a change in the gravitational force acting on the flow, due to a change in the density of the gas-liquid mixture with a change in flow rate. The features of the implementation of this mechanism in a steam-water well during the development of geothermal fields are considered and its connection with the completeness of practically determined productivity curves of wells is established. A condition for the manifestation of inversion of productivity curves is formulated. Conclusion. The gravitational instability of the flow in pipes is caused by a spontaneous change in the momentum of the flow and is associated with the presence of conditions in which a change in the momentum of the moving medium leads to a change in the force that causes the movement, which enhances the change in the momentum. In this case, the effective development of this instability in ascending flows is carried out upstream, in descending flows – downstream.
first_indexed 2024-04-12T04:27:00Z
format Article
id doaj.art-a308ab2a03e240edb1d5867fb46fd063
institution Directory Open Access Journal
issn 2500-1019
2413-1830
language Russian
last_indexed 2024-04-12T04:27:00Z
publishDate 2022-06-01
publisher Tomsk Polytechnic University
record_format Article
series Известия Томского политехнического университета: Инжиниринг георесурсов
spelling doaj.art-a308ab2a03e240edb1d5867fb46fd0632022-12-22T03:48:04ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302022-06-01333614014610.18799/24131830/2022/6/3565GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDSAleksandr N. Shulyupin0Mining Institute of the Far Eastern Branch of the Russian Academy of SciencesThe relevance of the study is caused by the search for ways to increase the efficiency of the development of geothermal fields on the basis of ensuring the stable operation of the system for the production and transportation of steam-water fluid. Purpose: to determine the nature and conditions for the development of instability of the steam-water flow in production wells and transport pipelines during the development of geothermal fields. Methods: application of the laws of classical dynamics to an element of a moving medium, taking into account the features of a gas-liquid flow; analysis of the conditions for the emergence and development of gravitational instability of the steam-water flow during the development of geothermal fields. Results. One of the mechanisms related to the macroscopic temporal instability of a gas-liquid flow is described, and the features of its implementation in systems for the production and transportation of heat agent during the development of geothermal fields are considered. The emergence of instability is associated with a spontaneous change in the momentum of the flow, expressed in a change in the mass flow rate, its development is associated with the presence of conditions in which a change in the momentum of a moving medium leads to similar in sign change of moving force. It is noted that the Ledinegg instability is one of the manifestations of this mechanism, which can also be realized in connection with a change in the gravitational force acting on the flow, due to a change in the density of the gas-liquid mixture with a change in flow rate. The features of the implementation of this mechanism in a steam-water well during the development of geothermal fields are considered and its connection with the completeness of practically determined productivity curves of wells is established. A condition for the manifestation of inversion of productivity curves is formulated. Conclusion. The gravitational instability of the flow in pipes is caused by a spontaneous change in the momentum of the flow and is associated with the presence of conditions in which a change in the momentum of the moving medium leads to a change in the force that causes the movement, which enhances the change in the momentum. In this case, the effective development of this instability in ascending flows is carried out upstream, in descending flows – downstream.http://izvestiya.tpu.ru/archive/article/view/3565/2731geothermal fieldgas-liquid flowproduction wellsteam-water mixturegravitational instabilityproductivity curve
spellingShingle Aleksandr N. Shulyupin
GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDS
Известия Томского политехнического университета: Инжиниринг георесурсов
geothermal field
gas-liquid flow
production well
steam-water mixture
gravitational instability
productivity curve
title GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDS
title_full GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDS
title_fullStr GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDS
title_full_unstemmed GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDS
title_short GRAVITATIONAL INSTABILITY OF GAS-LIQUID FLOW AT DEVELOPMENT OF GEOTHERMAL FIELDS
title_sort gravitational instability of gas liquid flow at development of geothermal fields
topic geothermal field
gas-liquid flow
production well
steam-water mixture
gravitational instability
productivity curve
url http://izvestiya.tpu.ru/archive/article/view/3565/2731
work_keys_str_mv AT aleksandrnshulyupin gravitationalinstabilityofgasliquidflowatdevelopmentofgeothermalfields