TY - GEN
T1 - Modelling the flow of a gas mixture through a porous medium, with account being taken of the modelling scale
AU - Tutak, Magdalena
N1 - Publisher Copyright:
© SGEM2018.
PY - 2018
Y1 - 2018
N2 - The flow of gases through porous media is a common physical phenomenon occurring not only in the natural environment but also in a number of technical applications, including the industry. The flow of gases through rock porous media takes place during exploitation of numerous energy resources – not only during the excavation of hard coal (the flow of a gas mixture through goaf with caving) but also in the course of exploiting crude oil and natural gas (the flow through shale rocks). The issue of gases flowing through porous media is also related to the underground sequestration of acid gases in the rock mass, including inactive headings of liquidated underground mines. During gas injection into the rock mass, gases with different physical properties, i.e. the gas being injected and the gas present in the rock mass, mix together. The mechanism responsible for this phenomenon is the physical dispersion in the porous medium. The article presents the results of numerical tests on the mixing process of gases with different physical properties in a porous medium for the flow defined by the N-S equations (the pore scale-microscale) and for flow defined by the Darcy’s model (the deposit scale-macroscale). The numerical tests conducted helped to determine the concentration distributions for the gases in the media under analysis.
AB - The flow of gases through porous media is a common physical phenomenon occurring not only in the natural environment but also in a number of technical applications, including the industry. The flow of gases through rock porous media takes place during exploitation of numerous energy resources – not only during the excavation of hard coal (the flow of a gas mixture through goaf with caving) but also in the course of exploiting crude oil and natural gas (the flow through shale rocks). The issue of gases flowing through porous media is also related to the underground sequestration of acid gases in the rock mass, including inactive headings of liquidated underground mines. During gas injection into the rock mass, gases with different physical properties, i.e. the gas being injected and the gas present in the rock mass, mix together. The mechanism responsible for this phenomenon is the physical dispersion in the porous medium. The article presents the results of numerical tests on the mixing process of gases with different physical properties in a porous medium for the flow defined by the N-S equations (the pore scale-microscale) and for flow defined by the Darcy’s model (the deposit scale-macroscale). The numerical tests conducted helped to determine the concentration distributions for the gases in the media under analysis.
KW - Gas flow
KW - Modelling scale
KW - Porous media
UR - https://www.scopus.com/pages/publications/85063108005
U2 - 10.5593//sgem2018v/1.5/s01.020
DO - 10.5593//sgem2018v/1.5/s01.020
M3 - Conference contribution
AN - SCOPUS:85063108005
SN - 9786197408355
T3 - International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM
SP - 163
EP - 170
BT - Micro and Nano Technologies, Space Technologies and Planetary Science
PB - International Multidisciplinary Scientific Geoconference
T2 - 18th International Multidisciplinary Scientific Geoconference, SGEM 2018
Y2 - 3 December 2018 through 6 December 2018
ER -