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An Approach To Well Placement And Production In A Green Field
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1.2 Objectives
The objectives of this study are to:
· Use geostatistical methods to distribute the petrophysical properties in building a 3D static model of the reservoir;
· Find the optimum number, type, and placement of wells required to develop the greenfield.
1.3 Methodology
The methods to be used include;
· Build a 3D static model of the green field by
o Digitization of structural and isopach maps of the A-1 reservoir
o Estimation and distribution of Porosity, Permeability, and Thickness at all
locations in the reservoir
o Estimation of Original Oil in Place (STOOIP)
· Construction of a 3D dynamic reservoir model
· Use of the 3D dynamic model to find the optimum number, type, and placement of wells to develop the reservoir.
1.4 Facilities and Resources
The facilities and resources used for this project include;
· AUST library and internet facilities
· Technical and academic expertise of supervisor
· Structure and Isopach maps of A-1 reservoir
· Isopermeability map of A-1 reservoir
· Isoporosity map of A-1 reservoir
· Computer software programs such as: GIS, SGeMS, Sensor Simulator
1.5 Organization of Report
This
report is organized into five chapters. Chapter one is the introductory
chapter giving general information about the entire project. Chapter
two gives in-depth information of the study area and reviews relevant
literature related to this work. Chapter three places emphasis on data.
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ABSRACT - [ Total Page(s): 1 ]Reservoir development planning and well placement significantly affect hydrocarbon recovery. Therefore, strategic well placement and development techniques are essential to minimize the risk of unproductive drilling and also to maximize production within the reservoir.This study presents an approach to well placement and production in a green field. A 3D static model of the green field was built using geostatistical techniques to distribute the various model petrophysical properties such as poro ... Continue reading---