Geodesy And Physics Of The Earth


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Gravity Inversion and Integration


Gravity Inversion and Integration

Author: Lars E. Sjöberg

language: en

Publisher: Springer

Release Date: 2017-04-19


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This book contains theory and applications of gravity both for physical geodesy and geophysics. It identifies classical and modern topics for studying the Earth. Worked-out examples illustrate basic but important concepts of the Earth’s gravity field. In addition, coverage details the Geodetic Reference System 1980, a versatile tool in most applications of gravity data. The authors first introduce the necessary mathematics. They then review classic physical geodesy, including its integral formulas, height systems and their determinations. The next chapter presents modern physical geodesy starting with the original concepts of M.S. Molodensky. A major part of this chapter is a variety of modifying Stokes’ formula for geoid computation by combining terrestrial gravity data and an Earth Gravitational Model. Coverage continues with a discussion that compares today’s methods for modifying Stokes’ formulas for geoid and quasigeoid determination, a description of several modern tools in physical geodesy, and a review of methods for gravity inversion as well as analyses for temporal changes of the gravity field. This book aims to broaden the view of scientists and students in geodesy and geophysics. With a focus on theory, it provides basic and some in-depth knowledge about the field from a geodesist’s perspective. /div

Geophysical Geodesy


Geophysical Geodesy

Author: Kurt Lambeck

language: en

Publisher:

Release Date: 1988


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Geodetic measurements provide high-accuracy observations of the deformation of the Earth on time-scales ranging from a few hours to decades; they constitute an integral part of every study of the planet's dynamic behavior. This book describes geodetic methods and results that are relevant to the study of the Earth, along with the geophysical and geological implications of these observations. The measurement techniques include classical terrestrial observations in use since the late nineteenth century as well as modern methods based on space technology, interferometric observations of radio stars, the tracking of satellites, and laser-ranging to the Moon. Because a complete interpretation of the geodetic observations requires a discussion of Earth physics, geological processes, and meteorological and oceanographic phenomena, this book will be of interest to all geophysicists.

Atmospheric Effects in Space Geodesy


Atmospheric Effects in Space Geodesy

Author: Johannes Böhm

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-06-12


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Various effects of the atmosphere have to be considered in space geodesy and all of them are described and treated consistently in this textbook. Two chapters are concerned with ionospheric and tropospheric path delays of microwave and optical signals used by space geodetic techniques, such as the Global Navigation Satellite Systems (GNSS), Very Long Baseline Interferometry (VLBI), or Satellite Laser Ranging (SLR). It is explained how these effects are best reduced and modelled to improve the accuracy of space geodetic measurements. Other chapters are on the deformation of the Earth’s crust due to atmospheric loading, on atmospheric excitation of Earth rotation, and on atmospheric effects on gravity field measurements from special satellite missions such as CHAMP, GRACE, and GOCE. All chapters have been written by staff members of the Department of Geodesy and Geoinformation at TU Wien who are experts in the particular fields.