Javascript must be enabled to continue!
Improving the efficiency of additional development of depleted gas reservoirs by displacing the residual gas with nitrogen
View through CrossRef
Based on the analysis of publications in domestic and foreign scientific and technical publications, the directions of increasing gas recovery from depleted gas reservoirs, which include the displacement of residual gas from the porous medium with nitrogen, are substantiated. Nitrogen can be obtained from the air in any oil and gas producing area using membrane, adsorption or cryogenic types of plants produced by the industry. The final gas recovery factor can be adjusted by choosing certain values of technological parameters that characterize the process of reservoir development. Using hypothetical digital models, the influence on the total final gas recovery factor and the residual gas recovery factor of the pressure of the beginning of nitrogen injection into the reservoir, the rate, duration and cyclicity of its injection, the system for locating production and injection wells on the gas-bearing area and the technological modes of their operation was investigated. The results of the studies are shown in the form of graphical dependencies of the final gas recovery factor and the gas recovery factor for residual gas on the investigated determining parameters. Using the research results, the optimal values of the parameters of the nitrogen injection process into a depleted gas reservoir of square and round shapes and the corresponding values of the gas recovery coefficient have been established. The results of the studies performed indicate a significant technological efficiency of the displacement of residual gas by nitrogen from depleted gas reservoirs. Depending on the system of placement of production and injection wells in the gas-bearing area and the technological parameters of the nitrogen injection process into the reservoir, the gas recovery factor for the residual gas varies on average within the range of 53,97 – 61,82 %.
Title: Improving the efficiency of additional development of depleted gas reservoirs by displacing the residual gas with nitrogen
Description:
Based on the analysis of publications in domestic and foreign scientific and technical publications, the directions of increasing gas recovery from depleted gas reservoirs, which include the displacement of residual gas from the porous medium with nitrogen, are substantiated.
Nitrogen can be obtained from the air in any oil and gas producing area using membrane, adsorption or cryogenic types of plants produced by the industry.
The final gas recovery factor can be adjusted by choosing certain values of technological parameters that characterize the process of reservoir development.
Using hypothetical digital models, the influence on the total final gas recovery factor and the residual gas recovery factor of the pressure of the beginning of nitrogen injection into the reservoir, the rate, duration and cyclicity of its injection, the system for locating production and injection wells on the gas-bearing area and the technological modes of their operation was investigated.
The results of the studies are shown in the form of graphical dependencies of the final gas recovery factor and the gas recovery factor for residual gas on the investigated determining parameters.
Using the research results, the optimal values of the parameters of the nitrogen injection process into a depleted gas reservoir of square and round shapes and the corresponding values of the gas recovery coefficient have been established.
The results of the studies performed indicate a significant technological efficiency of the displacement of residual gas by nitrogen from depleted gas reservoirs.
Depending on the system of placement of production and injection wells in the gas-bearing area and the technological parameters of the nitrogen injection process into the reservoir, the gas recovery factor for the residual gas varies on average within the range of 53,97 – 61,82 %.
Related Results
EXTRACTION OF THE RESIDUAL GAS DEPLETED GAS RESERVOIRS NITROGEN INJECTION
EXTRACTION OF THE RESIDUAL GAS DEPLETED GAS RESERVOIRS NITROGEN INJECTION
The relevance and feasibility of extracting residual gas from depleted gas deposits is shown. The possible directions of the extraction of residual gas from depleted gas deposits b...
Comparisons of Pore Structure for Unconventional Tight Gas, Coalbed Methane and Shale Gas Reservoirs
Comparisons of Pore Structure for Unconventional Tight Gas, Coalbed Methane and Shale Gas Reservoirs
Extended abstract
Tight sands gas, coalbed methane and shale gas are three kinds of typical unconventional natural gas. With the decrease of conventional oil and gas...
Understanding Unconventional Gas Reservoir Damages
Understanding Unconventional Gas Reservoir Damages
Abstract
It is estimated that there are large reserves of unconventional gas located throughout the world, including coalbed methane, shale gas and tight gas sand...
In-situ Redistribution of Dormant Gas Reservoir Energy to Maximise Oil Recovery
In-situ Redistribution of Dormant Gas Reservoir Energy to Maximise Oil Recovery
Abstract
This paper discusses a novel development concept of internal gas injection, in which the energy of gas reservoirs is used to maximise production and ultimat...
Unconventional Reservoirs: Basic Petrophysical Concepts for Shale Gas
Unconventional Reservoirs: Basic Petrophysical Concepts for Shale Gas
Abstract
Unconventional reservoirs have burst with considerable force in oil and gas production worldwide. Shale Gas is one of them, with intense activity taking pla...
Differences on Geochemical Characteristics and Their Implicating Significances of Nitrogen in Coal-Derived Gas and Oil-typed Gas in China
Differences on Geochemical Characteristics and Their Implicating Significances of Nitrogen in Coal-Derived Gas and Oil-typed Gas in China
Natural gases in China are mainly coal-derived gas, with assistance from oil-typed gas. At present, many genetic identification methods, from hydrocarbon composition and isotope to...
Screening of differentially expressed miRNAs and target genes in two potato varieties under nitrogen stress
Screening of differentially expressed miRNAs and target genes in two potato varieties under nitrogen stress
Abstract
Background: Nitrogen is an important element for potato growth and development, and improving nitrogen utilization efficiency is an effective way to reduce the amo...
Compositional Numerical Modelling In Naturally Fractured Reservoirs
Compositional Numerical Modelling In Naturally Fractured Reservoirs
Abstract
Recent improvements in the speed of numerical compositional simulators has made it possible to use a large number of gridblocks to model condensate reser...

