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Titlebook: Numerical Simulation in Applied Geophysics; Juan Enrique Santos,Patricia Mercedes Gauzellino Textbook 2016 Springer International Publishi

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書(shū)目名稱Numerical Simulation in Applied Geophysics
編輯Juan Enrique Santos,Patricia Mercedes Gauzellino
視頻videohttp://file.papertrans.cn/670/669175/669175.mp4
概述This book deals with theoretical models for wave propagation in porous media.This volume presents finite element procedures developed to solve problems in Applied Geophysics.This work shows detailed e
叢書(shū)名稱Lecture Notes in Geosystems Mathematics and Computing
圖書(shū)封面Titlebook: Numerical Simulation in Applied Geophysics;  Juan Enrique Santos,Patricia Mercedes Gauzellino Textbook 2016 Springer International Publishi
描述This book presents the theory of waves propagation in a fluid-saturatedporous medium (a Biot medium) and its application in Applied Geophysics.In particular, a derivation of absorbing boundary conditions inviscoelastic and poroelastic media is presented, which later is employedin the applications..?.The partial differential equationsdescribing the propagation of waves in Biot media are solved using theFinite Element Method (FEM)..?.Waves propagating in a Biot mediumsuffer attenuation and dispersion effects. In particular the fastcompressional and shear waves are converted to slow diffusion-type wavesat mesoscopic-scale heterogeneities (on the order of centimeters),effect usually occurring in the seismic range of frequencies. .?.Insome cases, a Biot medium presents a dense set of fractures oriented inpreference directions. When the average distance between fractures ismuch smaller than the wavelengths of the travelling fast compressionaland shear waves, the medium behaves as an effective viscoelastic andanisotropic medium at the macroscale..?.The book presents aprocedure determine the coefficients of the effective medium employing acollection of time-harmonic compressibility and she
出版日期Textbook 2016
關(guān)鍵詞Poroelasticity; anisotropy; viscoelasticity; seismic waves; finite elements method; mesoscale; macroscale;
版次1
doihttps://doi.org/10.1007/978-3-319-48457-0
isbn_softcover978-3-319-48456-3
isbn_ebook978-3-319-48457-0Series ISSN 2730-5996 Series E-ISSN 2512-3211
issn_series 2730-5996
copyrightSpringer International Publishing AG 2016
The information of publication is updating

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Juan Enrique Santos,Patricia Mercedes Gauzellinost, the MFM-revealed microscopic magnetisation pattern do not show the corresponding toroidal order directly. Therefore, the chapter closes with ideas for uncovering contrast between different toroidal domain states using suitable image post-processing.
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2730-5996 n effective viscoelastic andanisotropic medium at the macroscale..?.The book presents aprocedure determine the coefficients of the effective medium employing acollection of time-harmonic compressibility and she978-3-319-48456-3978-3-319-48457-0Series ISSN 2730-5996 Series E-ISSN 2512-3211
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Solution of differential equations using the finite element method,ent spaces and defined over partitions of a bounded domain into triangular or rectangular elements in 2-D and tetrahedral or 3-rectangular elements in 3-D. These finite element spaces are used in the following Chapters to represent solid or fluid vector displacements in the boundary value problems to be formulated and solved using the FEM.
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Wave propagation in partially frozen porous media,d matrix and frequency correction factors in the mass and viscous coupling coefficients. First order absorbing boundary conditions are employed at the artificial boundaries of the computational domain. The algorithm is applied to simulate wave propagation in a sample of partially frozen Berea sandstone at ultrasonic frequencies.
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