Numerical Simulation in Applied Geophysics (Lecture Notes in Geosystems Mathematics and Computing)
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9783319484570 - Juan Enrique Santos, Patricia Mercedes Gauzellino: Numerical Simulation in Applied Geophysics (Lecture Notes in Geosystems Mathematics and Computing)
Juan Enrique Santos, Patricia Mercedes Gauzellino

Numerical Simulation in Applied Geophysics (Lecture Notes in Geosystems Mathematics and Computing) (2017)

Lieferung erfolgt aus/von: Deutschland EN NW FE EB DL

ISBN: 9783319484570 bzw. 3319484575, in Englisch, 309 Seiten, Birkhäuser, neu, Erstausgabe, E-Book, elektronischer Download.

Lieferung aus: Deutschland, E-Book zum Download, Versandkostenfrei.
This book presents the theory of waves propagation in a fluid-saturated porous medium (a Biot medium) and its application in Applied Geophysics. In particular, a derivation of absorbing boundary conditions in viscoelastic and poroelastic media is presented, which later is employed in the applications.   The partial differential equations describing the propagation of waves in Biot media are solved using the Finite Element Method (FEM).   Waves propagating in a Biot medium suffer attenuation and dispersion effects. In particular the fast compressional and shear waves are converted to slow diffusion-type waves at mesoscopic-scale heterogeneities (on the order of centimeters), effect usually occurring in the seismic range of frequencies.   In some cases, a Biot medium presents a dense set of fractures oriented in preference directions. When the average distance between fractures is much smaller than the wavelengths of the travelling fast compressional and shear waves, the medium behaves as an effective viscoelastic and anisotropic medium at the macroscale.   The book presents a procedure determine the coefficients of the effective medium employing a collection of time-harmonic compressibility and shear experiments, in the context of Numerical Rock Physics. Each experiment is associated with a boundary value problem, that is solved using the FEM.   This approach offers an alternative to laboratory observations with the advantages that they are inexpensive, repeatable and essentially free from experimental errors.   The different topics are followed by illustrative examples of application in Geophysical Exploration. In particular, the effects caused by mesoscopic-scale heterogeneities or the presence of aligned fractures are taking into account in the seismic wave propagation models at the macroscale.   The numerical simulations of wave propagation are presented with sufficient detail as to be easily implemented assuming the knowledge of scientific programming techniques. , Kindle Edition, Ausgabe: 1st ed. 2016, Format: Kindle eBook, Label: Birkhäuser, Birkhäuser, Produktgruppe: eBooks, Publiziert: 2017-01-20, Freigegeben: 2017-01-20, Studio: Birkhäuser.
2
9783319484570 - Juan Enrique Santos; Patricia Mercedes Gauzellino: Numerical Simulation in Applied Geophysics
Juan Enrique Santos; Patricia Mercedes Gauzellino

Numerical Simulation in Applied Geophysics

Lieferung erfolgt aus/von: Schweiz ~EN NW EB DL

ISBN: 9783319484570 bzw. 3319484575, vermutlich in Englisch, Springer Shop, neu, E-Book, elektronischer Download.

47,04 (Fr. 53,54)¹
unverbindlich
Lieferung aus: Schweiz, Lagernd, zzgl. Versandkosten.
This book presents the theory of waves propagation in a fluid-saturated porous medium (a Biot medium) and its application in Applied Geophysics. In particular, a derivation of absorbing boundary conditions in viscoelastic and poroelastic media is presented, which later is employed in the applications. The partial differential equations describing the propagation of waves in Biot media are solved using the Finite Element Method (FEM). Waves propagating in a Biot medium suffer attenuation and dispersion effects. In particular the fast compressional and shear waves are converted to slow diffusion-type waves at mesoscopic-scale heterogeneities (on the order of centimeters), effect usually occurring in the seismic range of frequencies. In some cases, a Biot medium presents a dense set of fractures oriented in preference directions. When the average distance between fractures is much smaller than the wavelengths of the travelling fast compressional and shear waves, the medium behaves as an effective viscoelastic and anisotropic medium at the macroscale. The book presents a procedure determine the coefficients of the effective medium employing a collection of time-harmonic compressibility and shear experiments, in the context of Numerical Rock Physics. Each experiment is associated with a boundary value problem, that is solved using the FEM. This approach offers an alternative to laboratory observations with the advantages that they are inexpensive, repeatable and essentially free from experimental errors. The different topics are followed by illustrative examples of application in Geophysical Exploration. In particular, the effects caused by mesoscopic-scale heterogeneities or the presence of aligned fractures are taking into account in the seismic wave propagation models at the macroscale. The numerical simulations of wave propagation are presented with sufficient detail as to be easily implemented assuming the knowledge of scientific programming techniques. eBook.
3
9783319484570 - Patricia Mercedes Gauzellino: Numerical Simulation in Applied Geophysics
Patricia Mercedes Gauzellino

Numerical Simulation in Applied Geophysics

Lieferung erfolgt aus/von: Deutschland ~EN NW EB DL

ISBN: 9783319484570 bzw. 3319484575, vermutlich in Englisch, Springer International Publishing, neu, E-Book, elektronischer Download.

Lieferung aus: Deutschland, Versandkostenfrei.
Numerical Simulation in Applied Geophysics: This book presents the theory of waves propagation in a fluid-saturated porous medium (a Biot medium) and its application in Applied Geophysics. In particular, a derivation of absorbing boundary conditions in viscoelastic and poroelastic media is presented, which later is employed in the applications. The partial differential equations describing the propagation of waves in Biot media are solved using the Finite Element Method (FEM). Waves propagating in a Biot medium suffer attenuation and dispersion effects. In particular the fast compressional and shear waves are converted to slow diffusion-type waves at mesoscopic-scale heterogeneities (on the order of centimeters), effect usually occurring in the seismic range of frequencies. In some cases, a Biot medium presents a dense set of fractures oriented in preference directions. When the average distance between fractures is much smaller than the wavelengths of the travelling fast compressional and shear waves, the medium behaves as an effective viscoelastic and anisotropic medium at the macroscale. The book presents a procedure determine the coefficients of the effective medium employing a collection of time-harmonic compressibility and shear experiments, in the context of Numerical Rock Physics. Each experiment is associated with a boundary value problem, that is solved using the FEM. This approach offers an alternative to laboratory observations with the advantages that they are inexpensive, repeatable and essentially free from experimental errors. The different topics are followed by illustrative examples of application in Geophysical Exploration. In particular, the effects caused by mesoscopic-scale heterogeneities or the presence of aligned fractures are taking into account in the seismic wave propagation models at the macroscale. The numerical simulations of wave propagation are presented with sufficient detail as to be easily implemented assuming the knowledge of scientific programming techniques. Englisch, Ebook.
4
9783319484570 - Numerical Simulation in Applied Geophysics (ebook)

Numerical Simulation in Applied Geophysics (ebook)

Lieferung erfolgt aus/von: Vereinigte Staaten von Amerika EN NW EB

ISBN: 9783319484570 bzw. 3319484575, in Englisch, (null), neu, E-Book.

71,10 ($ 79,99)¹
versandkostenfrei, unverbindlich
9783319484570, by Juan Enrique Santos, PRINTISBN: 9783319484563, E-TEXT ISBN: 9783319484570, edition 0.
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