3D seismic reflection and VSP for hydrogeology

Copyright © (2008) by the Society of Exploration Geophysicists All rights reserved. Modern hydrogeology is increasingly depending numerical modeling to simulate impacts of water resource projects tens or hundreds of years into the future. The validity of such numerical models is highly dependent on...

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Main Authors: Harris, Brett, Urosevic, Milovan, Kepic, Anton
Format: Conference Paper
Published: 2018
Online Access:http://hdl.handle.net/20.500.11937/74241
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author Harris, Brett
Urosevic, Milovan
Kepic, Anton
author_facet Harris, Brett
Urosevic, Milovan
Kepic, Anton
author_sort Harris, Brett
building Curtin Institutional Repository
collection Online Access
description Copyright © (2008) by the Society of Exploration Geophysicists All rights reserved. Modern hydrogeology is increasingly depending numerical modeling to simulate impacts of water resource projects tens or hundreds of years into the future. The validity of such numerical models is highly dependent on accurate distribution of key hydrogeological parameters. A combination of 3D seismic reflection and Vertical Seismic Profiling (VSP) offers the potential to create detailed, accurate, hydrostratigraphic frameworks within which physical, chemical and biological properties can be distributed. We provide the outline and outcomes from a systematic research program designed to develop and optimize 3D seismic reflection and VSP techniques tailored for hydrogeology. The test site is located at the Beenyup Waste Water Treatment Plant near a major freeway, where a long term high volume purified waste water injection trial will commence in 2009.
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spelling curtin-20.500.11937-742412019-02-19T04:16:18Z 3D seismic reflection and VSP for hydrogeology Harris, Brett Urosevic, Milovan Kepic, Anton Copyright © (2008) by the Society of Exploration Geophysicists All rights reserved. Modern hydrogeology is increasingly depending numerical modeling to simulate impacts of water resource projects tens or hundreds of years into the future. The validity of such numerical models is highly dependent on accurate distribution of key hydrogeological parameters. A combination of 3D seismic reflection and Vertical Seismic Profiling (VSP) offers the potential to create detailed, accurate, hydrostratigraphic frameworks within which physical, chemical and biological properties can be distributed. We provide the outline and outcomes from a systematic research program designed to develop and optimize 3D seismic reflection and VSP techniques tailored for hydrogeology. The test site is located at the Beenyup Waste Water Treatment Plant near a major freeway, where a long term high volume purified waste water injection trial will commence in 2009. 2018 Conference Paper http://hdl.handle.net/20.500.11937/74241 restricted
spellingShingle Harris, Brett
Urosevic, Milovan
Kepic, Anton
3D seismic reflection and VSP for hydrogeology
title 3D seismic reflection and VSP for hydrogeology
title_full 3D seismic reflection and VSP for hydrogeology
title_fullStr 3D seismic reflection and VSP for hydrogeology
title_full_unstemmed 3D seismic reflection and VSP for hydrogeology
title_short 3D seismic reflection and VSP for hydrogeology
title_sort 3d seismic reflection and vsp for hydrogeology
url http://hdl.handle.net/20.500.11937/74241