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Title: | 2D SEISMIC DATA INTERPRETATION INTEGRATED WELL DATA ,CHARACTERIZATION OF JOYA MAIR AND SEISMIC ATTRIBTES OF UPPER INDUS BASIN, PAKISTAN |
Authors: | EJAZ, MUHAMMAD USMAN |
Keywords: | Earth Sciences |
Issue Date: | 2020 |
Publisher: | Quaid-i-Azam University |
Abstract: | This dissertation is based on structural and stratigraphic interpretation of SEG-Y data format using seismic techniques and well log analysis. The Joya Mir area lies in the upper Indus Basin in south east of Salt Range Potwar Foreland Basin. It has hydrocarbon potential due to its anticlinal structures. For Seismic structural interpretation three horizons and two reverse faults were marked by using IHS Kingdom 8.8 version and construction of fault polygon, time contours and depth contours takes place. The marked horizons were recognized using formation tops from wells and their depths were confirmed through correlation with synthetic seismogram. The purpose of time and depth contour maps was to understand the spatial geometry of the structures and the nature of geological structures as identified by the seismic section of the area. Seismic interpretation of the 2D data reveals that the study area has undergone severe deformation illustrated by the development of thrusts and back thrusts forming a triangle zone in the subsurface.The general trend of these structures is northwest- southeast which indicated that the area lies in compressional regime. The reservoirs of Eocene occurs at depth of about 2020.48 m from well tops. The interpreted horizons are Chorgali Formation and Sakesar Formation, which has the major petroleum potential in the study area. Petrophysical analysis of Minwal X-1 well indicated the hydrocarbon potential in marked reservoirs and gave approximately 70% of hydrocarbon saturation. Seismic attributes are applied that also confirm the reservoir prospect zone |
URI: | http://hdl.handle.net/123456789/18438 |
Appears in Collections: | BS |
Files in This Item:
File | Description | Size | Format | |
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EAR 1901.pdf | EAR 1901 | 2.63 MB | Adobe PDF | View/Open |
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