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Composition and microstructure of magma bodies from effective medium theory ArchiMer
Taylor, Maj; Singh, Sc.
The extent and seismic properties of magma bodies beneath the subsurface are normally ascertained via seismic methods. The seismic properties of such bodies depend on the composition and microstructure of both melt and crystals. Using effective medium theory, we assess the effect of microstructure, geometry and orientation of melt and crystals on the seismic properties, namely P- and S-wave velocities and anisotropy. We find that S-wave velocity and anisotropy are key observables in determining the composition and microstructure of magma bodies.
Tipo: Text Palavras-chave: Composition; Effective medium; Inclusions; Magma bodies; Microstructure; Seismic properties.
Ano: 2002 URL: https://archimer.ifremer.fr/doc/00466/57763/60030.pdf
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Three-dimensional tomographic inversion of combined reflection and refraction seismic traveltime data ArchiMer
Hobro, Jwd; Singh, Sc; Minshull, Ta.
A tomographic inversion method is presented for the determination of 3-D velocity and interface structure from a wide range of body-wave seismic traveltime data types. It is applicable to refraction, wide-angle reflection, normal-incidence and multichannel seismic data, and is best suited to a combination of these that provides good independent constraints on seismic velocities and interface depths. The inversion process seeks a layer-interface minimum-structure model that is able to explain the given data satisfactorily by inverting to minimize data misfit and model roughness norms simultaneously. This regularized inversion, and the use of smooth functions to describe velocities and depths, allows the highly non-linear tomographic problem to be...
Tipo: Text Palavras-chave: Inversion; Ray tracing; Seismic modelling; Seismic structure; Tomography; Traveltime.
Ano: 2003 URL: https://archimer.ifremer.fr/doc/00466/57759/60044.pdf
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