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Bakry, A., Ghoneimi, A., Nabih, M., Abd Elaziz, M. (2023). Petrophysical and Rock Physics Analysis Using Well Log Data for Gas Detection in Scarab Gas Field, West Delta Deep Marine Concession, Egypt. Bulletin of Faculty of Science, Zagazig University, 2023(2), 91-112. doi: 10.21608/bfszu.2023.177130.1210
Ahmed Bakry; Ashraf Ghoneimi; Muhammad Nabih; Mohamed Abd Elaziz. "Petrophysical and Rock Physics Analysis Using Well Log Data for Gas Detection in Scarab Gas Field, West Delta Deep Marine Concession, Egypt". Bulletin of Faculty of Science, Zagazig University, 2023, 2, 2023, 91-112. doi: 10.21608/bfszu.2023.177130.1210
Bakry, A., Ghoneimi, A., Nabih, M., Abd Elaziz, M. (2023). 'Petrophysical and Rock Physics Analysis Using Well Log Data for Gas Detection in Scarab Gas Field, West Delta Deep Marine Concession, Egypt', Bulletin of Faculty of Science, Zagazig University, 2023(2), pp. 91-112. doi: 10.21608/bfszu.2023.177130.1210
Bakry, A., Ghoneimi, A., Nabih, M., Abd Elaziz, M. Petrophysical and Rock Physics Analysis Using Well Log Data for Gas Detection in Scarab Gas Field, West Delta Deep Marine Concession, Egypt. Bulletin of Faculty of Science, Zagazig University, 2023; 2023(2): 91-112. doi: 10.21608/bfszu.2023.177130.1210

Petrophysical and Rock Physics Analysis Using Well Log Data for Gas Detection in Scarab Gas Field, West Delta Deep Marine Concession, Egypt

Article 10, Volume 2023, Issue 2, June 2023, Page 91-112  XML PDF (5.24 MB)
Document Type: Original Article
DOI: 10.21608/bfszu.2023.177130.1210
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Authors
Ahmed Bakry email 1; Ashraf Ghoneimiorcid 2; Muhammad Nabih3; Mohamed Abd Elaziz4
1Department of Geology, Faculty of Science, Zagazig University, Zagazig 44519, Egypt
2Zagazig University, Faculty of Science, Geology Department, 44519, Zagazig, Egypt
3Geology Dept,Zagazig university, faculty of Science,egypt
4Faculty of Computer Science and Engineering, Galala University, Suez 435611, Egypt Department of Mathematics, Faculty of Science, Zagazig University, Zagazig 44519, Egypt
Abstract
The present study aims to detect the lithology and pore-fluid from well log data using the rock physics templates. The results show that we can potentially discriminate between different types of lithological facies and fluid type to predict the accumulations of the potential hydrocarbons. The cross-plotting technique of the rock properties is carried out using well log data from the Scrb field in the Western Offshore Nile Delta area. The available well log data; comprising the gamma-ray, resistivity, density, neutron and sonic logs were used. The interpretation of the log data shows a high resistivity, low GR, and low values of acoustic impedance, the gas-bearing interval is identified. To identify the rock attributes from the supplied log data, the petrophysical parameters are initially assessed before the conducting rock physics cross-plotting. This is achieved using the cross-plot of the Vp against Vs, density and Vp, Lambda-Rho and Mu-Rho, P-impedance and Poisson's ratio, P-impedance and Vp/Vs ratio, and Poisson's ratio and bulk modulus. The effective porosity (PHIE), shale volume (Vsh), water saturation (Sw), and hydrocarbon saturation (Sh) are used to color-code each cross plot. Cross-plotting is executed and Lambda Rho (λρ) cross-plots demonstrated to be more reliable for lithology determination than Vp against Vs cross-plots. The effective porosity average values are within the range from 24% to 30%, shale content within the range from 20% to 27%, water saturation within the range from 16% to 23%, hydrocarbon saturation ranges from 77% to 83%.
Keywords
Scarab Gas Field; Acoustic impedance; Poisson's ratio
Main Subjects
Basic and applied research of Geology
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