LAPSE:2021.0449v1
Published Article
LAPSE:2021.0449v1
Methodology for Concurrent Multi-Parametric Physical Modeling of a Target Natural Unfractured Homogeneous Sandstone
Joseph Y. Fu, Xiang’an Yue, Bo Zhang
May 26, 2021
Abstract
In petroleum, geological and environmental science, flow through porous media is conventionally studied complementarily with numerical modeling/simulation and experimental corefloods. Despite advances in numerical modeling/simulation, experimental corefloods with actual samples are still desired for higher-specificity testing or more complex mechanistic studies. In these applications, the lack of advances in physical modeling is very apparent with the available options mostly unchanged for decades (e.g., sandpacks of unconsolidated packing materials, industry-accepted substitutes with fixed/mismatching petrophysical properties such as Berea sandstone). Renewable synthetic porous media with adjustable parameters are the most promising but have not advanced adequately. To address this, a methodology of advanced physical modeling of the fundamental parameters of dominant mineralogy, particle size distribution, packing, and cementation of a target natural porous media is introduced. Based upon the tight physical modeling of these four fundamental parameters, the other derived parameters of interests including wettability, porosity, pore throat size distribution, permeability, and capillary pressure can be concurrently modeled very close as well by further fine-tuning one of the fundamental parameters while holding the rest constant. Through this process, concurrent multi-parametric physical modeling of the primary petrophysical parameters including particle size distribution, wettability, porosity, pore throat size distribution, permeability, capillary pressure behavior in a target sandstone becomes possible.
Keywords
artificial sandstone, petrophysical modeling, physical modeling, pore throat size distribution modeling, synthetic sandstone
Suggested Citation
Fu JY, Yue X, Zhang B. Methodology for Concurrent Multi-Parametric Physical Modeling of a Target Natural Unfractured Homogeneous Sandstone. (2021). LAPSE:2021.0449v1
Author Affiliations
Fu JY: State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Fuxue Rd., No. 18, Beijing 102249, China; Key Laboratory of Petroleum Engineering Ministry of Education, China University of Petroleum (Beijing), Fuxue R
Yue X: State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Fuxue Rd., No. 18, Beijing 102249, China; Key Laboratory of Petroleum Engineering Ministry of Education, China University of Petroleum (Beijing), Fuxue R
Zhang B: State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Fuxue Rd., No. 18, Beijing 102249, China; Key Laboratory of Petroleum Engineering Ministry of Education, China University of Petroleum (Beijing), Fuxue R
Journal Name
Processes
Volume
8
Issue
11
Article Number
E1448
Year
2020
Publication Date
2020-11-12
ISSN
2227-9717
Version Comments
Original Submission
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PII: pr8111448, Publication Type: Journal Article
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LAPSE:2021.0449v1
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https://doi.org/10.3390/pr8111448
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May 26, 2021
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[v1] (Original Submission)
May 26, 2021
 
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May 26, 2021
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Calvin Tsay
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