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Tytuł pozycji:

Comparison Between Homogenous and Heterogeneous Reservoirs: A Parametric Study of Water Coning Phenomena

Tytuł:
Comparison Between Homogenous and Heterogeneous Reservoirs: A Parametric Study of Water Coning Phenomena
Autorzy:
Frzan F. Ali
Maha R. Hamoudi
Akram H. Abdul Wahab
Temat:
water coning
homogeneous reservoirs
heterogeneous reservoirs
production optimization
Technology
Science
Źródło:
UKH Journal of Science and Engineering, Vol 5, Iss 8, Pp 119-131 (2021)
Wydawca:
Univeristy of Kurdistan Hewler, 2021.
Rok publikacji:
2021
Kolekcja:
LCC:Technology
LCC:Science
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
2520-7792
Relacje:
https://journals.ukh.edu.krd/index.php/ukhjse/article/view/333/226; https://doaj.org/toc/2520-7792
DOI:
10.25079/ukhjse.v5n1y2021.pp119-131
Dostęp URL:
https://doaj.org/article/dbcca3332ba74dcea504c4b05d5e7af7  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.bcca3332ba74dcea504c4b05d5e7af7
Czasopismo naukowe
Water coning is the biggest production problem mechanism in Middle East oil fields, especially in the Kurdistan Region of Iraq. When water production starts to increase, the costs of operations increase. Water production from the coning phenomena results in a reduction in recovery factor from the reservoir. Understanding the key factors impacting this problem can lead to the implementation of efficient methods to prevent and mitigate water coning. The rate of success of any method relies mainly on the ability to identify the mechanism causing the water coning. This is because several reservoir parameters can affect water coning in both homogenous and heterogeneous reservoirs. The objective of this research is to identify the parameters contributing to water coning in both homogenous and heterogeneous reservoirs. A simulation model was created to demonstrate water coning in a single-vertical well in a radial cross-section model in a commercial reservoir simulator. The sensitivity analysis was conducted on a variety of properties separately for both homogenous and heterogeneous reservoirs. The results were categorized by time to water breakthrough, oil production rate and water oil ratio. The results of the simulation work led to a number of conclusions. Firstly, production rate, perforation interval thickness and perforation depth are the most effective parameters on water coning. Secondly, time of water breakthrough is not an adequate indicator on the economic performance of the well, as the water cut is also important. Thirdly, natural fractures have significant contribution on water coning, which leads to less oil production at the end of production time when compared to a conventional reservoir with similar properties.

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