A New Model to Calculate Oil-Water Relative Permeability of Shaly Sandstone
Oil-water relative permeability curves are the basis of oil field development. In recent years, the calculation of oil-water relative permeability in sandstone reservoirs by resistivity logging data has received much attention from researchers. This article first analyzed the existing mathematical m...
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Online Access: | http://dx.doi.org/10.1155/2020/8842276 |
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doaj-8098173331444b4b9b2ab8d5e142e49f2020-11-25T03:29:04ZengHindawi-WileyGeofluids1468-81151468-81232020-01-01202010.1155/2020/88422768842276A New Model to Calculate Oil-Water Relative Permeability of Shaly SandstoneHuiyuan Bian0Kewen Li1Binchi Hou2Xiaorong Luo3College of Geology & Environment, Xi’an University of Science and Technology, Xi’an, Shaanxi 710054, ChinaSchool of Energy Resources, China University of Geosciences, Beijing, ChinaResearch Institute of Shaanxi Yanchang Petroleum (Group) Co., LTD, ChinaTuha Branch of China National Petroleum Corporation Logging, Tuha, Xinjiang 839009, ChinaOil-water relative permeability curves are the basis of oil field development. In recent years, the calculation of oil-water relative permeability in sandstone reservoirs by resistivity logging data has received much attention from researchers. This article first analyzed the existing mathematical models of the relationship between relative permeability and resistivity and found that most of them are based on Archie formula, which assumes the reservoir is clean sandstone. However, in view of the fact that sandstone reservoir is commonly mixed with shale contents, this research, based on the dual water conductivity model, Poiseuille’s equation, Darcy’s law, and capillary bundle model, derived a mathematical model (DW relative permeability model) for shaly sandstone reservoir, which calculates the oil-water relative permeability with resistivity. To test and verify the DW relative permeability model, we designed and assembled a multifunctional core displacement apparatus. The experiment of core oil-water relative permeability and resistivity was designed to prove the effectiveness of the DW relative permeability model in shaly sandstone reservoirs. The results show that the modified Li model can well express the transformational relation between resistivity and relative permeability in sandstone reservoir with low clay content. Compared with the modified Li model and the Pairoys model, the DW relative permeability model is more helpful to collect better results of relative permeability in shaly sand. These findings will play a significant role in the calculation of oil-water relative permeability in reservoirs based on resistivity logging data and will provide important data and theory support to the shaly sandstone reservoir characterized oil field development.http://dx.doi.org/10.1155/2020/8842276 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Huiyuan Bian Kewen Li Binchi Hou Xiaorong Luo |
spellingShingle |
Huiyuan Bian Kewen Li Binchi Hou Xiaorong Luo A New Model to Calculate Oil-Water Relative Permeability of Shaly Sandstone Geofluids |
author_facet |
Huiyuan Bian Kewen Li Binchi Hou Xiaorong Luo |
author_sort |
Huiyuan Bian |
title |
A New Model to Calculate Oil-Water Relative Permeability of Shaly Sandstone |
title_short |
A New Model to Calculate Oil-Water Relative Permeability of Shaly Sandstone |
title_full |
A New Model to Calculate Oil-Water Relative Permeability of Shaly Sandstone |
title_fullStr |
A New Model to Calculate Oil-Water Relative Permeability of Shaly Sandstone |
title_full_unstemmed |
A New Model to Calculate Oil-Water Relative Permeability of Shaly Sandstone |
title_sort |
new model to calculate oil-water relative permeability of shaly sandstone |
publisher |
Hindawi-Wiley |
series |
Geofluids |
issn |
1468-8115 1468-8123 |
publishDate |
2020-01-01 |
description |
Oil-water relative permeability curves are the basis of oil field development. In recent years, the calculation of oil-water relative permeability in sandstone reservoirs by resistivity logging data has received much attention from researchers. This article first analyzed the existing mathematical models of the relationship between relative permeability and resistivity and found that most of them are based on Archie formula, which assumes the reservoir is clean sandstone. However, in view of the fact that sandstone reservoir is commonly mixed with shale contents, this research, based on the dual water conductivity model, Poiseuille’s equation, Darcy’s law, and capillary bundle model, derived a mathematical model (DW relative permeability model) for shaly sandstone reservoir, which calculates the oil-water relative permeability with resistivity. To test and verify the DW relative permeability model, we designed and assembled a multifunctional core displacement apparatus. The experiment of core oil-water relative permeability and resistivity was designed to prove the effectiveness of the DW relative permeability model in shaly sandstone reservoirs. The results show that the modified Li model can well express the transformational relation between resistivity and relative permeability in sandstone reservoir with low clay content. Compared with the modified Li model and the Pairoys model, the DW relative permeability model is more helpful to collect better results of relative permeability in shaly sand. These findings will play a significant role in the calculation of oil-water relative permeability in reservoirs based on resistivity logging data and will provide important data and theory support to the shaly sandstone reservoir characterized oil field development. |
url |
http://dx.doi.org/10.1155/2020/8842276 |
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