0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R1,000 - R2,500 (2)
  • R2,500 - R5,000 (6)
  • R5,000 - R10,000 (1)
  • -
Status
Brand

Showing 1 - 9 of 9 matches in All Departments

Application of Fractals in Earth Sciences (Hardcover): V. P. Dimri Application of Fractals in Earth Sciences (Hardcover)
V. P. Dimri
R2,357 Discovery Miles 23 570 Ships in 12 - 17 working days

This text examines the emerging field of fractals and its applications in earth sciences. Topics covered include: concepts of fractal and multifractal chaos; the application of fractals in geophysics, geology, climate studies, and earthquake seismology.

Wavelets and Fractals in Earth System Sciences (Paperback): E. Chandrasekhar, V. P. Dimri, V. M. Gadre Wavelets and Fractals in Earth System Sciences (Paperback)
E. Chandrasekhar, V. P. Dimri, V. M. Gadre
R1,960 Discovery Miles 19 600 Ships in 12 - 17 working days

The subject of wavelet analysis and fractal analysis is fast developing and has drawn a great deal of attention in varied disciplines of science and engineering. Over the past couple of decades, wavelets, multiresolution, and multifractal analyses have been formalized into a thorough mathematical framework and have found a variety of applications with significant impact in several branches of earth system sciences. Wavelets and Fractals in Earth System Sciences highlights the role of advanced data processing techniques in present-day research in various fields of earth system sciences. The book consists of ten chapters, providing a well-balanced blend of information about the role of wavelets, fractals, and multifractal analyses with the latest examples of their application in various research fields. By combining basics with advanced material, this book introduces concepts as needed and serves as an excellent introductory material and also as an advanced reference text for students and researchers.

Wavelets and Fractals in Earth System Sciences (Hardcover, New): E. Chandrasekhar, V. P. Dimri, V. M. Gadre Wavelets and Fractals in Earth System Sciences (Hardcover, New)
E. Chandrasekhar, V. P. Dimri, V. M. Gadre
R5,352 Discovery Miles 53 520 Ships in 12 - 17 working days

The subject of wavelet analysis and fractal analysis is fast developing and has drawn a great deal of attention in varied disciplines of science and engineering. Over the past couple of decades, wavelets, multiresolution, and multifractal analyses have been formalized into a thorough mathematical framework and have found a variety of applications with significant impact in several branches of earth system sciences. Wavelets and Fractals in Earth System Sciences highlights the role of advanced data processing techniques in present-day research in various fields of earth system sciences. The book consists of ten chapters, providing a well-balanced blend of information about the role of wavelets, fractals, and multifractal analyses with the latest examples of their application in various research fields. By combining basics with advanced material, this book introduces concepts as needed and serves as an excellent introductory material and also as an advanced reference text for students and researchers.

Reservoir Characterization, Modeling and Quantitative Interpretation, Volume 1 - Recent Workflows to Emerging Technologies: V.... Reservoir Characterization, Modeling and Quantitative Interpretation, Volume 1 - Recent Workflows to Emerging Technologies
V. P. Dimri, Shib Sankar Ganguli
R3,304 Discovery Miles 33 040 Ships in 12 - 17 working days

Reservoir Characterization, Modeling and Quantitative Interpretation: Recent Workflows to Emerging Technologies offers a wide spectrum of reservoir characterization techniques and technologies, focusing on the latest breakthroughs and most efficient methodologies in hydrocarbon exploration and development. Topics covered include 4D seismic technologies, AVAz inversion, fracture characterization, multiscale imaging technologies, static and dynamic reservoir characterization, among others. The content is delivered through an inductive approach, which will help readers gain comprehensive insights on advanced practices and be able to relate them to other subareas of reservoir characterization, including CO2 storage and data-driven modeling. This will be especially useful for field scientists in collecting and analyzing field data, prospect evaluation, developing reservoir models, and adopting new technologies to mitigate exploration risk. They will be able to solve the practical and challenging problems faced in the field of reservoir characterization, as it will offer systematic industrial workflows covering every aspect of this branch of Earth Science, including subsurface geoscientific perspectives of carbon geosequestration. This resource is a 21st Century guide for exploration geologists, geoscience students at postgraduate level and above, and petrophysicists working in the oil and gas industry.

Fractal Solutions for Understanding Complex Systems in Earth Sciences (Paperback, Softcover reprint of the original 1st ed.... Fractal Solutions for Understanding Complex Systems in Earth Sciences (Paperback, Softcover reprint of the original 1st ed. 2016)
V. P. Dimri
R3,421 Discovery Miles 34 210 Ships in 10 - 15 working days

This book deals with fractals in understanding problems encountered in earth science, and their solutions. It starts with an analysis of two classes of methods (homogeneous fractals random models, and homogeneous source distributions or "one point" distributions) widely diffused in the geophysical community, especially for studying potential fields and their related source distributions. Subsequently, the use of fractals in potential fields is described by scaling spectral methods for estimation of curie depth. The book also presents an update of the use of the fractal concepts in geological understanding of faults and their significance in geological modelling of hydrocarbon reservoirs. Geophysical well log data provide a unique description of the subsurface lithology; here, the Detrended Fluctuation Analysis technique is presented in case studies located off the west-coast of India. Another important topic is the fractal model of continuum percolation which quantitatively reproduce the flow path geometry by applying the Poiseuille's equation. The pattern of fracture heterogeneity in reservoir scale of natural geological formations can be viewed as spatially distributed self-similar tree structures; here, the authors present simple analytical models based on the medium structural characteristics to explain the flow in natural fractures. The Fractal Differential Adjacent Segregation (F-DAS) is an unconventional approach for fractal dimension estimation using a box count method. The present analysis provides a better understanding of variability of the system (adsorbents - adsorbate interactions). Towards the end of book, the authors discuss multi-fractal scaling properties of seismograms in order to quantify the complexity associated with high-frequency seismic signals. Finally, the book presents a review on fractal methods applied to fire point processes and satellite time-continuous signals that are sensitive to fire occurrences.

Fractal Solutions for Understanding Complex Systems in Earth Sciences (Hardcover, 1st ed. 2016): V. P. Dimri Fractal Solutions for Understanding Complex Systems in Earth Sciences (Hardcover, 1st ed. 2016)
V. P. Dimri
R2,957 Discovery Miles 29 570 Ships in 10 - 15 working days

This book deals with fractals in understanding problems encountered in earth science, and their solutions. It starts with an analysis of two classes of methods (homogeneous fractals random models, and homogeneous source distributions or "one point" distributions) widely diffused in the geophysical community, especially for studying potential fields and their related source distributions. Subsequently, the use of fractals in potential fields is described by scaling spectral methods for estimation of curie depth. The book also presents an update of the use of the fractal concepts in geological understanding of faults and their significance in geological modelling of hydrocarbon reservoirs. Geophysical well log data provide a unique description of the subsurface lithology; here, the Detrended Fluctuation Analysis technique is presented in case studies located off the west-coast of India. Another important topic is the fractal model of continuum percolation which quantitatively reproduce the flow path geometry by applying the Poiseuille's equation. The pattern of fracture heterogeneity in reservoir scale of natural geological formations can be viewed as spatially distributed self-similar tree structures; here, the authors present simple analytical models based on the medium structural characteristics to explain the flow in natural fractures. The Fractal Differential Adjacent Segregation (F-DAS) is an unconventional approach for fractal dimension estimation using a box count method. The present analysis provides a better understanding of variability of the system (adsorbents - adsorbate interactions). Towards the end of book, the authors discuss multi-fractal scaling properties of seismograms in order to quantify the complexity associated with high-frequency seismic signals. Finally, the book presents a review on fractal methods applied to fire point processes and satellite time-continuous signals that are sensitive to fire occurrences.

Fractal Behaviour of the Earth System (Paperback, Softcover reprint of hardcover 1st ed. 2005): V. P. Dimri Fractal Behaviour of the Earth System (Paperback, Softcover reprint of hardcover 1st ed. 2005)
V. P. Dimri
R2,910 Discovery Miles 29 100 Ships in 10 - 15 working days

It is with pleasure that I write the foreword to this excellent book. A wide range of observations in geology and solid-earth geophysics can be - plained in terms of fractal distributions. In this volume a collection of - pers considers the fractal behavior of the Earth's continental crust. The book begins with an excellent introductory chapter by the editor Dr. V.P. Dimri. Surface gravity anomalies are known to exhibit power-law spectral behavior under a wide range of conditions and scales. This is self-affine fractal behavior. Explanations of this behavior remain controversial. In chapter 2 V.P. Dimri and R.P. Srivastava model this behavior using Voronoi tessellations. Another approach to understanding the structure of the continental crust is to use electromagnetic induction experiments. Again the results often exhibit power law spectral behavior. In chapter 3 K. Bahr uses a fractal based random resister network model to explain the observations. Other examples of power-law spectral observations come from a wide range of well logs using various logging tools. In chapter 4 M. Fedi, D. Fiore, and M. La Manna utilize multifractal models to explain the behavior of well logs from the main KTB borehole in Germany. In chapter 5 V.V. Surkov and H. Tanaka model the electrokinetic currents that may be as- ciated with seismic electric signals using a fractal porous media. In chapter 6 M. Pervukhina, Y. Kuwahara, and H. Ito use fractal n- works to correlate the elastic and electrical properties of porous media.

Fractal Behaviour of the Earth System (Hardcover, 2005 ed.): V. P. Dimri Fractal Behaviour of the Earth System (Hardcover, 2005 ed.)
V. P. Dimri
R3,092 Discovery Miles 30 920 Ships in 10 - 15 working days

It is with pleasure that I write the foreword to this excellent book. A wide range of observations in geology and solid-earth geophysics can be - plained in terms of fractal distributions. In this volume a collection of - pers considers the fractal behavior of the Earth's continental crust. The book begins with an excellent introductory chapter by the editor Dr. V.P. Dimri. Surface gravity anomalies are known to exhibit power-law spectral behavior under a wide range of conditions and scales. This is self-affine fractal behavior. Explanations of this behavior remain controversial. In chapter 2 V.P. Dimri and R.P. Srivastava model this behavior using Voronoi tessellations. Another approach to understanding the structure of the continental crust is to use electromagnetic induction experiments. Again the results often exhibit power law spectral behavior. In chapter 3 K. Bahr uses a fractal based random resister network model to explain the observations. Other examples of power-law spectral observations come from a wide range of well logs using various logging tools. In chapter 4 M. Fedi, D. Fiore, and M. La Manna utilize multifractal models to explain the behavior of well logs from the main KTB borehole in Germany. In chapter 5 V.V. Surkov and H. Tanaka model the electrokinetic currents that may be as- ciated with seismic electric signals using a fractal porous media. In chapter 6 M. Pervukhina, Y. Kuwahara, and H. Ito use fractal n- works to correlate the elastic and electrical properties of porous media.

Fractal Models in Exploration Geophysics, Volume 41 - Applications to Hydrocarbon Reservoirs (Hardcover): V. P. Dimri, R.P.... Fractal Models in Exploration Geophysics, Volume 41 - Applications to Hydrocarbon Reservoirs (Hardcover)
V. P. Dimri, R.P. Srivastava, Nimisha Vedanti
R3,392 R3,065 Discovery Miles 30 650 Save R327 (10%) Ships in 12 - 17 working days

Researchers in the field of exploration geophysics have developed new methods for the acquisition, processing and interpretation of gravity and magnetic data, based on detailed investigations of bore wells around the globe. "Fractal Models in Exploration Geophysics" describes fractal-based models for characterizing these complex subsurface geological structures.

The authors introduce the inverse problem using a fractal approach which they then develop with the implementation of a global optimization algorithm for seismic data: very fast simulated annealing (VFSA). This approach provides high-resolution inverse modeling results-particularly useful for reservoir characterization.

* Serves as a valuable resource for researchers studying the application of fractals in exploration, and for practitioners directly applying field data for geo-modeling * Discusses the basic principles and practical applications of time-lapse seismic reservoir monitoring technology-application rapidly advancing topic * Provides the fundamentals for those interested in reservoir geophysics and reservoir simulation study * Demonstrates an example of reservoir simulation for enhanced oil recovery using CO2 injection

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Elecstor B22 7W Rechargeable LED Bulb…
R399 R369 Discovery Miles 3 690
Multi Colour Animal Print Neckerchief
R119 Discovery Miles 1 190
Snappy Tritan Bottle (1.5L)(Blue)
R229 R179 Discovery Miles 1 790
Elastoplus Elastic Adhesive Bandage…
R70 Discovery Miles 700
Mutlifunctional Plank Core Training Set
R699 R279 Discovery Miles 2 790
Resoftables Mamma and Baby Bunny Pack
R529 R299 Discovery Miles 2 990
Loot
Nadine Gordimer Paperback  (2)
R398 R330 Discovery Miles 3 300
Professor Snape Wizard Wand - In…
 (8)
R832 Discovery Miles 8 320
Sudocrem Skin & Baby Care Barrier Cream…
R70 Discovery Miles 700
Baby Dove Soap Bar Rich Moisture 75g
R20 Discovery Miles 200

 

Partners