2 edition of **Mathematical methods in geophysical imaging II** found in the catalog.

Mathematical methods in geophysical imaging II

- 364 Want to read
- 24 Currently reading

Published
**1994**
by SPIE in Bellingham, Wash., USA
.

Written in English

- Imaging systems in geophysics -- Congresses.,
- Image processing -- Mathematics -- Congresses.

**Edition Notes**

Includes bibliographical references and author index.

Statement | Siamak Hassanzadeh, chair/editor ; sponsored and published by SPIE--the International Society for Optical Engineering ; cooperating organization, SEG--Society of Exploration Geophysicists. |

Series | Proceedings / SPIE--the International Society for Optical Engineering ;, v. 2301, Proceedings of SPIE--the International Society for Optical Engineering ;, v. 2301. |

Contributions | Hassanzadeh, Siamak., Society of Photo-optical Instrumentation Engineers., Society of Exploration Geophysicists. |

Classifications | |
---|---|

LC Classifications | QC808.5 .M38 1994 |

The Physical Object | |

Pagination | vii, 196 p. : |

Number of Pages | 196 |

ID Numbers | |

Open Library | OL1124906M |

ISBN 10 | 0819416258 |

LC Control Number | 94066452 |

OCLC/WorldCa | 31319672 |

Inverse Problems and Imaging publishes research articles of the highest quality that employ innovative mathematical and modeling techniques to study inverse and imaging problems arising in engineering and other sciences. Every published paper has a strong mathematical orientation employing methods from such areas as control theory, discrete. Some Mathematical Problems in Geophysical Fluid Dynamics. Special Volume: Computational Methods for the Atmosphere and the Oceans, () A new shallow water model with linear dependence on by:

Part II: Imaging Systems Modelling book relates the methods of processing and interpreting digital images to the ‘physics’ of imaging systems. Case studies reinforce the methods discussed, with examples of current research themes. Show less. This authoritative text (the second part of a complete MSc course) provides mathematical methods. The aim of this book is to summarize and synthesize the growing literature on combining various types of geophysical and other geoscientific data. The approaches that have been developed to date encompass joint inversion, cooperative inversion, and statistical post-inversion analysis methods, each with different benefits and assumptions.

The general theory of mathematical-physical computations in stratified media leads to computational techniques for two- and three-dimensionally heterogeneous media. A feature of the book is the use of partial differential equations for reflection seismic data processing in petroleum by: An Introduction to Applied and Environmental Geophysics, 2nd Edition, describes the rapidly developing field of near-surface geophysics. The book covers a range of applications including mineral, hydrocarbon and groundwater exploration, and emphasises the use of geophysics in civil engineering and in environmental investigations. Following on from the international popularity of the first.

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Experiments in imaging long-period seismic wavefields Author(s): Peter M. Shearer. An essential textbook on the mathematical methods used in geophysics and space physics. Graduate students in the natural sciences―including not only geophysics and space physics but also atmospheric and planetary physics, ocean sciences, and astronomy―need a broad-based mathematical toolbox to facilitate their by: 2.

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The Handbook of Mathematical Methods in Imaging provides a comprehensive treatment of the mathematical techniques used in imaging science. The material is grouped into two central themes, namely, Inverse Problems (Algorithmic Reconstruction) and Signal and Image Processing.

This book is available for preorder. This book is available for backorder. There are less than or equal to {{ vailable}} books remaining in stock. ii Overview 1. The course text book is: An Introduction to Geophysical Exploration, by P.

Kearey, M. Brooks and I. Hill, 3rd edition Blackwell Science,ISBN, cost new ~ £ For the Michaelmas Term you will be expected to read and study Chapters 1, 6 & 7. For the Easter Term you will be expected to read and study Chapters 3, 4 & 5. Geophysical methods are based on the study of different physical fields being propagated through the earth’s interior.

Part II: Methods of the Solution of Inverse Problems It’s the first book of its kind to treat many kinds of inversion and imaging techniques in a unified mathematical manner.

The book is divided in five parts. Introduction Of Geophysics. This book covers the following topics: Applied Geophysics, Engineering Geophysics, History Of Geophysics, Relation Between Geology And Geophysics, Magnetic Susceptibility Of Rock and Minerals, Elastic Properties Of Materials, Electrical Properties Of Rock, Electrical Conductivity, General Review Of Geophysical Methods.

In this book the author presents the state-of-the-art electromagnetic (EM) theories and methods employed in EM geophysical exploration. The book brings together the fundamental theory of EM fields and the practical aspects of EM exploration for mineral and energy resources.

Part II introduces the cutting edge: nonmodal instabilities, the relationship between instability and turbulence, self-organised criticality, and advanced numerical techniques. Featuring numerous exercises and projects, the book is ideal for advanced students and researchers wishing to understand flow instability and apply it to their own by: 6.

Mathematical methods in geophysical imaging II: JulySan Diego, California Author: Siamak Hassanzadeh ; Society of Photo-optical Instrumentation Engineers.

Search the world's most comprehensive index of full-text books. My library. The aim of this volume is to bring together research directions in theoretical signal and imaging processing developed rather independently in electrical engineering, theoretical physics, mathematics and the computer sciences.

In this book the author presents the state-of-the-art electromagnetic (EM)theories and methods employed in EM geophysical book brings together the fundamental theory of EM fields and the practicalaspects of EM exploration for mineral and energy text is unique in its breadth and completeness in providing anoverview of EM geophysical exploration technology.

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Providing an up-to-date overview of the most popular global optimization methods used in interpreting geophysical observations, this new edition includes a detailed description of the theoretical development underlying each method and a thorough explanation of the Author: Mrinal K.

Sen, Paul L. Stoffa. In constructing the theory for electromagnetic methods in geophysical exploration, simplified models of electromagnetic field behavior are widely used. Principal among these are the static, quasi-stationary, and wave models. In this chapter, we examine the features of each of these models of fields.

GEOPHYSICAL METHODS IN EXPLORATION AND MINERAL ENVIRONMENTAL INVESTIGATIONS by Donald B. Hoover, Douglas P. Klein, and David C. Campbell INTRODUCTION In the following discussion, the applicability of geophysical methods to geoenvironmental studies of.

The purpose of this workshop is to bring together pure and applied mathematicians, engineers, geoscientists and representatives from industry and government to pursue the common goals of (1) developing new methods for uncovering transport barriers in geophysical flows.

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This site is like a library, Use search box in the widget to get ebook that you want. Geophysical Methods [Sheriff, Robert E.] on *FREE* shipping on qualifying offers. Geophysical MethodsFormat: Hardcover.Mathematical Morphology in Geomorphology and GISci presents a multitude of mathematical morphological approaches for processing and analyzing digital images in quantitative geomorphology and geographic information science (GISci).

Covering many interdisciplinary applications, the book explains how to use mathematical morphology not only to perform quantitative morphologic and scaling Cited by: 9.Part II is an overview of all the basic elements of geophysical EM theory, from Maxwell's fundamental equations to modern methods of modeling the EM field in complex 3-D geoelectrical formations.

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