Geophysical mapping of structures in Anza Basin, Northern Kenya

The study area is located at the Anza basin. It lies between latitudes of 380 05/ E& 380 25/ E and longitudes of 20 00/ N & 20 21/ N and covered an area of 1,687.5 km2. The area is important due to its thick sedimentary deposits that may be potential hydrocarbon sources. The study was initia...

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Main Author: Dhieu, Bec A
Format: Thesis
Language:English
Published: University of Nairobi 2012
Subjects:
Online Access:http://hdl.handle.net/11295/10012
id ftunivnairobi:oai:http://erepository.uonbi.ac.ke:11295/10012
record_format openpolar
spelling ftunivnairobi:oai:http://erepository.uonbi.ac.ke:11295/10012 2023-05-15T17:39:17+02:00 Geophysical mapping of structures in Anza Basin, Northern Kenya Dhieu, Bec A 2012 application/pdf http://hdl.handle.net/11295/10012 en eng University of Nairobi Master of Science in Geology (Applied Geophysics) http://hdl.handle.net/11295/10012 Geophysical mapping Anza Basin Northern Kenya Thesis 2012 ftunivnairobi 2022-12-28T09:33:19Z The study area is located at the Anza basin. It lies between latitudes of 380 05/ E& 380 25/ E and longitudes of 20 00/ N & 20 21/ N and covered an area of 1,687.5 km2. The area is important due to its thick sedimentary deposits that may be potential hydrocarbon sources. The study was initiated by processing and analyzing aeromagnetic data through specialized computer software (Geosoft Oasis Montaj V.6.4.2, 2007) and software EUL, by G.R.J. Copper of Witwatersrand University, South Africa for the profile data. The aeromagnetic data were plotted to produce total aeromagnetic intensity map and then reducing the total aeromagnetic intensity field to the north magnetic pole (RTP). The resultant maps of (RTP) and (TMI) shows the causative source bodies trending NW-SE, NS and NE-SW, constituting magnetic highs and lows. Different interpretation techniques were applied to aeromagnetic data including regionalresidual separation such as upward continuation, vertical derivative method for enhancing shallow bodies followed by depth determination along magnetic grid and profiles using 3D and 2D Euler de-convolution method respectively, and analytic signal method, to delineate the subsurface structures and to estimate the magnetic sources depth of the study area. This study intended to delineate and identify the possible subsurface structure of the area that may assist in locating hydrocarbon prospects by applying magnetic method as a tool for mapping. Results of 3D Euler de-convolution technique estimated the maximum depth in the study area to be about 7.0 km in southeastern part of the study area, where the depth varies along the graben and registered the average depth of 3.0 km. The lava flow bodies registered the shallowest depth of about 0.4 to 1.0 km in different parts In addition, the 2D Euler solutions of (19) aeromagnetic profiles in form of flight lines suggested that; the study area is structurally controlled and was affected by two tectonic events represented by; major striking NW-SE trends associated to ... Thesis North Magnetic Pole University of Nairobi Digital Repository
institution Open Polar
collection University of Nairobi Digital Repository
op_collection_id ftunivnairobi
language English
topic Geophysical mapping
Anza Basin
Northern Kenya
spellingShingle Geophysical mapping
Anza Basin
Northern Kenya
Dhieu, Bec A
Geophysical mapping of structures in Anza Basin, Northern Kenya
topic_facet Geophysical mapping
Anza Basin
Northern Kenya
description The study area is located at the Anza basin. It lies between latitudes of 380 05/ E& 380 25/ E and longitudes of 20 00/ N & 20 21/ N and covered an area of 1,687.5 km2. The area is important due to its thick sedimentary deposits that may be potential hydrocarbon sources. The study was initiated by processing and analyzing aeromagnetic data through specialized computer software (Geosoft Oasis Montaj V.6.4.2, 2007) and software EUL, by G.R.J. Copper of Witwatersrand University, South Africa for the profile data. The aeromagnetic data were plotted to produce total aeromagnetic intensity map and then reducing the total aeromagnetic intensity field to the north magnetic pole (RTP). The resultant maps of (RTP) and (TMI) shows the causative source bodies trending NW-SE, NS and NE-SW, constituting magnetic highs and lows. Different interpretation techniques were applied to aeromagnetic data including regionalresidual separation such as upward continuation, vertical derivative method for enhancing shallow bodies followed by depth determination along magnetic grid and profiles using 3D and 2D Euler de-convolution method respectively, and analytic signal method, to delineate the subsurface structures and to estimate the magnetic sources depth of the study area. This study intended to delineate and identify the possible subsurface structure of the area that may assist in locating hydrocarbon prospects by applying magnetic method as a tool for mapping. Results of 3D Euler de-convolution technique estimated the maximum depth in the study area to be about 7.0 km in southeastern part of the study area, where the depth varies along the graben and registered the average depth of 3.0 km. The lava flow bodies registered the shallowest depth of about 0.4 to 1.0 km in different parts In addition, the 2D Euler solutions of (19) aeromagnetic profiles in form of flight lines suggested that; the study area is structurally controlled and was affected by two tectonic events represented by; major striking NW-SE trends associated to ...
format Thesis
author Dhieu, Bec A
author_facet Dhieu, Bec A
author_sort Dhieu, Bec A
title Geophysical mapping of structures in Anza Basin, Northern Kenya
title_short Geophysical mapping of structures in Anza Basin, Northern Kenya
title_full Geophysical mapping of structures in Anza Basin, Northern Kenya
title_fullStr Geophysical mapping of structures in Anza Basin, Northern Kenya
title_full_unstemmed Geophysical mapping of structures in Anza Basin, Northern Kenya
title_sort geophysical mapping of structures in anza basin, northern kenya
publisher University of Nairobi
publishDate 2012
url http://hdl.handle.net/11295/10012
genre North Magnetic Pole
genre_facet North Magnetic Pole
op_relation Master of Science in Geology (Applied Geophysics)
http://hdl.handle.net/11295/10012
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