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The Rock Physics Handbook: Tools for Seismic Analysis of Porous Media

TLDR
In this article, the authors present basic tools for elasticity and Hooke's law, effective media, granular media, flow and diffusion, and fluid effects on wave propagation for wave propagation.
Abstract
Preface 1. Basic tools 2. Elasticity and Hooke's law 3. Seismic wave propagation 4. Effective media 5. Granular media 6. Fluid effects on wave propagation 7. Empirical relations 8. Flow and diffusion 9. Electrical properties Appendices.

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Sensitivity of seismic properties to temperature variations in a geothermal reservoir

TL;DR: In this paper, the authors present the theory and sensitivity analysis based on rock's mechanical Burgers model including Arrhenius temperature equations, integrated with Gassmann model for fluid saturated porous rocks, pressure effects for bulk and shear moduli, as well as permeability and squirt flow effects.
Journal ArticleDOI

Numerical modelling of heterogeneous rock breakage behaviour based on texture images

TL;DR: In this paper, a texture-based finite element method (FEM) modeling technique has been developed to present a realistic modelling method for characterizing heterogeneous rock breakage behavior according to its actual microstructure using integrated microscopic observation, image analysis and numerical modelling.
Journal ArticleDOI

Estimating P- and S-wave inverse quality factors from observed seismic data using an attenuative elastic impedance

TL;DR: P- and S-wave inverse quality factors quantify seismic wave attenuation, which is related to several key reservoir parameters (porosity, saturation, and viscosity).
Journal ArticleDOI

Seismic properties of the upper crust in the central Friuli area (northeastern Italy) based on petrophysical data

TL;DR: In this paper, the authors measured the compressional and shear wave velocities at room temperature and pressure up to 450 MPa on 5sedimentary rock samples, representative of the most common lithologies of the upper crust in the central Friuli area (northeastern Italy).

Modeling of Fluid Transport in Geothermal Research

TL;DR: In this article, the governing equations underlying these hydro-mechanical, coupled problems were derived and analyzed for scenarios from well testing to propagation of elastic waves, and analytical and numerical solutions of the differential equations were analyzed.
References
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Book

An introduction to the bootstrap

TL;DR: This article presents bootstrap methods for estimation, using simple arguments, with Minitab macros for implementing these methods, as well as some examples of how these methods could be used for estimation purposes.
Book

Classical Electrodynamics

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Pattern Recognition and Machine Learning

TL;DR: Probability Distributions, linear models for Regression, Linear Models for Classification, Neural Networks, Graphical Models, Mixture Models and EM, Sampling Methods, Continuous Latent Variables, Sequential Data are studied.
Book

Theory of elasticity

TL;DR: The theory of the slipline field is used in this article to solve the problem of stable and non-stressed problems in plane strains in a plane-strain scenario.
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