Magnitude vs Low frequency EM waves for sea bed logging applications

The new emerging technique for finding resistive layers in the subsurface which can be hydrocarbon-saturated reservoirs using Marine controlled source electromagnetic (CSEM) is called seabed logging (SBL). It uses a mobile horizontal electric dipole (HED) source which generates ultra low frequency (...

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Main Authors: Daud, H., Yahya, N., Sagayan, V., Talib, A. M.
Format: Conference or Workshop Item
Published: 2010
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Online Access:http://eprints.utp.edu.my/7324/
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spelling my.utp.eprints.73242014-04-01T06:27:56Z Magnitude vs Low frequency EM waves for sea bed logging applications Daud, H. Yahya, N. Sagayan, V. Talib, A. M. L Education (General) The new emerging technique for finding resistive layers in the subsurface which can be hydrocarbon-saturated reservoirs using Marine controlled source electromagnetic (CSEM) is called seabed logging (SBL). It uses a mobile horizontal electric dipole (HED) source which generates ultra low frequency (0.1 - 10 Hz) but powerful electromagnetic signal while being towed at about 30 - 40m above an array of seafloor electric field receivers. These arrays of receivers will receive signal in the form of direct waves, air waves, reflected waves and refracted waves and is measured in the form of amplitude and phase. The amplitude and phase of this signal depend on the resistivity of the mediums that they travel. Hydrocarbon is known to have high resistivity value of 30 - 500Ωm, in contrast to conductive sea water of 0.5 - 2 Ωm and sediments of 1 - 2Ωm. This paper will investigate and discuss the effect of these receivers readings in term of direct waves, air waves, reflected waves and guided waves as we increased the frequency value from 0.01Hz to 10Hz. Using simulator that has been developed using MATLAB software we will set up a forward model that contains air, sea water, sediments and hydrocarbon reservoir with their predefined resistivity values. From here we shall discuss the trend on wave amplitude obtained at different frequency values. © 2010 IEEE 2010 Conference or Workshop Item PeerReviewed Daud, H. and Yahya, N. and Sagayan, V. and Talib, A. M. (2010) Magnitude vs Low frequency EM waves for sea bed logging applications. In: 2010 IEEE Asia-Pacific Conference on Applied Electromagnetics, APACE 2010; Port Dickson; 9 November 2010 through 11 November 2010; Category number CFP10551-ART; Code 84329. http://eprints.utp.edu.my/7324/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
topic L Education (General)
spellingShingle L Education (General)
Daud, H.
Yahya, N.
Sagayan, V.
Talib, A. M.
Magnitude vs Low frequency EM waves for sea bed logging applications
description The new emerging technique for finding resistive layers in the subsurface which can be hydrocarbon-saturated reservoirs using Marine controlled source electromagnetic (CSEM) is called seabed logging (SBL). It uses a mobile horizontal electric dipole (HED) source which generates ultra low frequency (0.1 - 10 Hz) but powerful electromagnetic signal while being towed at about 30 - 40m above an array of seafloor electric field receivers. These arrays of receivers will receive signal in the form of direct waves, air waves, reflected waves and refracted waves and is measured in the form of amplitude and phase. The amplitude and phase of this signal depend on the resistivity of the mediums that they travel. Hydrocarbon is known to have high resistivity value of 30 - 500Ωm, in contrast to conductive sea water of 0.5 - 2 Ωm and sediments of 1 - 2Ωm. This paper will investigate and discuss the effect of these receivers readings in term of direct waves, air waves, reflected waves and guided waves as we increased the frequency value from 0.01Hz to 10Hz. Using simulator that has been developed using MATLAB software we will set up a forward model that contains air, sea water, sediments and hydrocarbon reservoir with their predefined resistivity values. From here we shall discuss the trend on wave amplitude obtained at different frequency values. © 2010 IEEE
format Conference or Workshop Item
author Daud, H.
Yahya, N.
Sagayan, V.
Talib, A. M.
author_facet Daud, H.
Yahya, N.
Sagayan, V.
Talib, A. M.
author_sort Daud, H.
title Magnitude vs Low frequency EM waves for sea bed logging applications
title_short Magnitude vs Low frequency EM waves for sea bed logging applications
title_full Magnitude vs Low frequency EM waves for sea bed logging applications
title_fullStr Magnitude vs Low frequency EM waves for sea bed logging applications
title_full_unstemmed Magnitude vs Low frequency EM waves for sea bed logging applications
title_sort magnitude vs low frequency em waves for sea bed logging applications
publishDate 2010
url http://eprints.utp.edu.my/7324/
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score 13.209306