A comparison of permeability prediction methods using core analysis data for sandstone and carbonate reservoirs
Autor: | Vi Dinh Lu, Vuong Thanh Ngo, Vu Minh Le |
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Rok vydání: | 2018 |
Předmět: |
0211 other engineering and technologies
Mineralogy Pore system 02 engineering and technology 010502 geochemistry & geophysics Geotechnical Engineering and Engineering Geology 01 natural sciences Coring Permeability (earth sciences) chemistry.chemical_compound General Energy Geophysics chemistry Prediction methods Data analysis Carbonate Carbonate rock Economic Geology Porosity Geology 021101 geological & geomatics engineering 0105 earth and related environmental sciences |
Zdroj: | Geomechanics and Geophysics for Geo-Energy and Geo-Resources. 4:129-139 |
ISSN: | 2363-8427 2363-8419 |
DOI: | 10.1007/s40948-017-0078-y |
Popis: | Permeability is one of the most important parameters of reservoir rocks, it illustrates the capacity of rock to transmit fluids (oil, gas, water) in pore spaces. Permeability data can be obtained from routine core analysis in laboratory on 1.5 in core plugs and sidewall core. However, most of the wells are not coring due to problems during coring and higher costs, so permeability prediction in uncored sections play a significantly important role. The variety of methods developed to estimate permeability at pore scale, such as Kozeny–Carman, Swanson and Pittman. In fact, those equations are applied individually to estimate permeability. In this research, permeability estimation methods will be used on the same rock (sandstone or carbonate rock) to detect the suitable method for each rock type. Porosity, permeability data from routine core analysis and pore throat size from mercury injection capillary pressure on sandstone and carbonate rocks from Cuu Long and Song Hong basins in Vietnam will be gathered and permeability estimation conducted by using Hydraulic Flow Unit, Mercury Injection Capillary Pressure and Pittman methods based on that data. Estimated permeability obtained from each method will be compared with core permeability, the method with the highest R-squared be selected. The research shows that Hydraulic Flow Unit is optimized method for permeability prediction on sandstone with R-squared > 0.9. Mercury injection capillary pressure is the most accurate method to estimate permeability on carbonate rocks related to heterogeneity and complicated pore system with R-squared > 0.96. That results will help engineers have a fast and accurate decision for permeability prediction methods selection on sandstone and carbonate rocks. In addition, the empirical equations were derived to predict permeability on sandstone and carbonate rocks with the highest coefficient of correlation in multiple regression analysis and based on the relationship between porosity, permeability and pore throat size. |
Databáze: | OpenAIRE |
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