Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80

Seismic analyses of methane hydrate data from the Blake Outer Ridge indicate high P-wave velocity and anomalously low S-wave velocity in sediments containing methane hydrates. In an attempt to explain this observed P-wave and S-wave velocity structure at the transition from gas to hydrates, the effe...

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Main Author: Christine Ecker
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
Published: 1994
Subjects:
Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.386.5063
http://sepwww.stanford.edu/data/media/public/docs/sep80/christine2.pdf
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author Christine Ecker
author2 The Pennsylvania State University CiteSeerX Archives
author_facet Christine Ecker
author_sort Christine Ecker
collection Unknown
description Seismic analyses of methane hydrate data from the Blake Outer Ridge indicate high P-wave velocity and anomalously low S-wave velocity in sediments containing methane hydrates. In an attempt to explain this observed P-wave and S-wave velocity structure at the transition from gas to hydrates, the effect of different hydrate models on elastic moduli and velocities are explored. After construction of an initial gas model, the properties of the hydrates are estimated using the bound averaging method together with the Voigt and Reuss bounds for elastic moduli. The result suggests that the hydrates becomes part of the rock matrix and softens the pores by fracturing. The additional formation of ice is required to obtain the desired P- to S-wave velocity ratio in the hydrate bearing sediments, indicating temperature conditions around the freezing point of water.
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genre Methane hydrate
genre_facet Methane hydrate
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.386.5063 2025-01-16T23:04:40+00:00 Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80 Christine Ecker The Pennsylvania State University CiteSeerX Archives 1994 application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.386.5063 http://sepwww.stanford.edu/data/media/public/docs/sep80/christine2.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.386.5063 http://sepwww.stanford.edu/data/media/public/docs/sep80/christine2.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://sepwww.stanford.edu/data/media/public/docs/sep80/christine2.pdf text 1994 ftciteseerx 2016-09-18T00:33:53Z Seismic analyses of methane hydrate data from the Blake Outer Ridge indicate high P-wave velocity and anomalously low S-wave velocity in sediments containing methane hydrates. In an attempt to explain this observed P-wave and S-wave velocity structure at the transition from gas to hydrates, the effect of different hydrate models on elastic moduli and velocities are explored. After construction of an initial gas model, the properties of the hydrates are estimated using the bound averaging method together with the Voigt and Reuss bounds for elastic moduli. The result suggests that the hydrates becomes part of the rock matrix and softens the pores by fracturing. The additional formation of ice is required to obtain the desired P- to S-wave velocity ratio in the hydrate bearing sediments, indicating temperature conditions around the freezing point of water. Text Methane hydrate Unknown
spellingShingle Christine Ecker
Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80
title Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80
title_full Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80
title_fullStr Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80
title_full_unstemmed Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80
title_short Methane hydrate rock physics models for the Blake Outer Ridge: SEP–80
title_sort methane hydrate rock physics models for the blake outer ridge: sep–80
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.386.5063
http://sepwww.stanford.edu/data/media/public/docs/sep80/christine2.pdf