Source modification for efficiency enhancement of marine controlled-source electromagnetic method

Author:

Rostami Amir1ORCID,Yahaya Noorhana2,Soleimani Hassan2,Rauf Muhammad3,Nyamasvisva Tadiwa E4,Shafie Afza2,Khosravi Vahid5,Ganeson Menaka1

Affiliation:

1. Research and Innovation, Universiti Teknologi PETRONAS, 32610 Seri Iskandar, Malaysia

2. Fundamental and Applied Sciences Department, Universiti Teknologi PETRONAS, 32610 Seri Iskandar, Malaysia

3. Electronic Engineering Department, Dawood University of Engineering & Technology, Karachi City, 74800 Sindh, Pakistan

4. Department of Networking, Faculty of Engineering Science and Technology, Infrastructure University Kuala Lumpur, 43000 Kajang, Malaysia

5. Petroleum Engineering Department, Universiti Teknologi PETRONAS, 32610 Seri Iskandar, Malaysia

Abstract

Abstract Controlled-source electromagnetics is a strongly efficient technique to explore deep-water marine hydrocarbon reservoirs. However, the shallow-water unsolved limitations of electromagnetic shooting methods still exist. In this regard, this work aims to alter the existing conventional electromagnetic source such that it can converge the down-going electromagnetic wave while simultaneously dispersing the up-going electromagnetic energy to minimise the airwave in shallow water. This work presents computed electric current distribution inside a modified transmitter, using a method of moments. Simulation and an experiment-based methodology are applied to this work. Finite element simulation of the response of the modified transmitter displayed the capability of the new transmitter in dispersing the airwave, by 15%. The experimental setup confirmed a better performance of the new transmitter, showing hydrocarbon delineation of up to 48%, compared to the existing conventional transmitter, with 25% oil delineation at the same depths in the same environment. Modification of the electromagnetic source to unbalance the up-down signals may have the potential to enhance the delineation magnitude of the target signal and, as a result, significantly improve oil detection capability.

Funder

YUTP

Publisher

Oxford University Press (OUP)

Subject

Management, Monitoring, Policy and Law,Industrial and Manufacturing Engineering,Geology,Geophysics

Reference47 articles.

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3. Simplification of Pocklington's integral equation for arbitrary bent thin wires;Barrera-Figueroa;WIT Transactions on Modelling Simulation,2005

4. Low-frequency internal friction in clamped-free thin wires;Cagnoli;Journal of Physics Letters A,1999

5. Ten years of marine CSEM for hydrocarbon exploration;Constable;Geophysics,2010

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