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2017 | OriginalPaper | Chapter

1. Acoustic Coring—The Rationale

Authors : Jacques Yves Guigné, Philippe Blondel

Published in: Acoustic Investigation of Complex Seabeds

Publisher: Springer International Publishing

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Abstract

The scope and ambition of marine geotechnical investigations have greatly evolved over the last years. Offshore foundations, dredging operations of harbours and channels, sub-seabed installations all place new demands on acquiring more reliable knowledge on the composition of the seabed to address cost-effectively the issues of buried geo-hazards, sediment property discontinuities and trapped pollutants. This chapter shows the potential of physical sampling and different remote sensing approaches, but also their limitations. The technology gap can be addressed by designing an Acoustic Sub-seabed Interrogator (ASI), ideally combining a range of low frequencies (to penetrate deeper into the seabed) and a range of high frequencies (to enable higher vertical resolutions closer to the surface). The use of a dense network of broadband receivers should allow capturing of specular and non-specular returns, and bespoke data acquisition and processing should give access to 3-D volumetric measurements. Its design should allow deployments at all depths. The resulting acoustic corer should expand the horizontal and vertical ranges of existing tools whilst preserving the best spatial resolutions currently achievable.

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Footnotes
1
Although there is no clear-cut and generally agreed definition, “seismic” techniques are generally meant to encompass all uses of acoustic waves with frequencies below 1 kHz (e.g. Telford et al. 1990) whereas “acoustic” techniques extend above 1 kHz, up to hundreds of kHz or higher (e.g. Lurton 2010).
 
2
The original quoted values of £7.5 M, £10 k and £75 k were converted to US dollars and are therefore estimates. The orders of magnitude will remain, although individual costs will of course depend on sites and marine environments.
 
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Metadata
Title
Acoustic Coring—The Rationale
Authors
Jacques Yves Guigné
Philippe Blondel
Copyright Year
2017
DOI
https://doi.org/10.1007/978-3-319-02579-7_1