Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous Medium

Introduction. The analysis and interpretation of hydrodynamic research data are based on theoretical models and computational algorithms. Despite the demand for this topic, numerous issues related to unsteady fluid flows in oil reservoirs still require solutions. Therefore, mathematical setting of p...

Full description

Saved in:
Bibliographic Details
Main Author: A. A. Mazitov
Format: Article
Language:Russian
Published: Don State Technical University 2023-12-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/2112
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849250642491604992
author A. A. Mazitov
author_facet A. A. Mazitov
author_sort A. A. Mazitov
collection DOAJ
description Introduction. The analysis and interpretation of hydrodynamic research data are based on theoretical models and computational algorithms. Despite the demand for this topic, numerous issues related to unsteady fluid flows in oil reservoirs still require solutions. Therefore, mathematical setting of problems related to the account of unsteady fluid flow, the development of effective numerical methods and algorithms, their solution using modern web technologies are pressing. This study is aimed at developing a web application for mathematical modeling of the process of fluid filtration in single- porosity reservoirs when conducting a hydrodynamic study at a production well.Materials and Methods. To solve the problem, the methods of continuum mechanics and computational mathematics were applied. A model of oil flow in a single-porosity reservoir was presented. Python and JavaScript programming languages were used in the development of the application. The calculation results were stored in a relational database implemented using PostgreSQL tools.Results. A new web application has been developed for modeling the oil filtration process in single- porosity reservoirs. It is applicable for studying fluid dynamic processes and can be used to predict flowrates, production and calculation of optimal well operation modes.Discussion and Conclusion. The developed web application provides for building pressure and temperature fields in the reservoir near a flowing and shut-in production well and at various distances from it. This information makes it possible to urgently assess the duration of hydrodynamic studies, as well as to regulate the operation of wells. The application can be deployed in an existing network infrastructure and use all the functionality by connecting to a remote server. It is optimized for use on various platforms and has broad prospects for further development.
format Article
id doaj-art-82ded1ec55e94a2ea2dca771cbfbf4a7
institution Kabale University
issn 2687-1653
language Russian
publishDate 2023-12-01
publisher Don State Technical University
record_format Article
series Advanced Engineering Research
spelling doaj-art-82ded1ec55e94a2ea2dca771cbfbf4a72025-08-20T03:57:12ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532023-12-0123442243210.23947/2687-1653-2023-23-4-422-4321621Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous MediumA. A. Mazitov0Institute of Petrochemistry and Catalysis, Ufa Federal Research Centre, RASIntroduction. The analysis and interpretation of hydrodynamic research data are based on theoretical models and computational algorithms. Despite the demand for this topic, numerous issues related to unsteady fluid flows in oil reservoirs still require solutions. Therefore, mathematical setting of problems related to the account of unsteady fluid flow, the development of effective numerical methods and algorithms, their solution using modern web technologies are pressing. This study is aimed at developing a web application for mathematical modeling of the process of fluid filtration in single- porosity reservoirs when conducting a hydrodynamic study at a production well.Materials and Methods. To solve the problem, the methods of continuum mechanics and computational mathematics were applied. A model of oil flow in a single-porosity reservoir was presented. Python and JavaScript programming languages were used in the development of the application. The calculation results were stored in a relational database implemented using PostgreSQL tools.Results. A new web application has been developed for modeling the oil filtration process in single- porosity reservoirs. It is applicable for studying fluid dynamic processes and can be used to predict flowrates, production and calculation of optimal well operation modes.Discussion and Conclusion. The developed web application provides for building pressure and temperature fields in the reservoir near a flowing and shut-in production well and at various distances from it. This information makes it possible to urgently assess the duration of hydrodynamic studies, as well as to regulate the operation of wells. The application can be deployed in an existing network infrastructure and use all the functionality by connecting to a remote server. It is optimized for use on various platforms and has broad prospects for further development.https://www.vestnik-donstu.ru/jour/article/view/2112web applicationmathematical modelhydrodynamic studiesdatabasepressuretemperature
spellingShingle A. A. Mazitov
Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous Medium
Advanced Engineering Research
web application
mathematical model
hydrodynamic studies
database
pressure
temperature
title Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous Medium
title_full Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous Medium
title_fullStr Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous Medium
title_full_unstemmed Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous Medium
title_short Web Application for Mathematical Modeling of Unsteady Oil Flow in Porous Medium
title_sort web application for mathematical modeling of unsteady oil flow in porous medium
topic web application
mathematical model
hydrodynamic studies
database
pressure
temperature
url https://www.vestnik-donstu.ru/jour/article/view/2112
work_keys_str_mv AT aamazitov webapplicationformathematicalmodelingofunsteadyoilflowinporousmedium