Encyclopedia of Geodesy
Erik Grafarend(Editor)
Springer (Publisher)
Will be published approx. on 2. August 2019
Book
Hardback
XX, 900 pages
978-3-319-01868-3 (ISBN)
Description
The past few decades have witnessed the explosive growth of Earth Sciences in the pursuit of knowledge and understanding the planet Earth. Such a development addresses the challenging endeavour to enrich human lives with bounding Nature as well as to preserve the Planet Earth, the Moon, the other planets, in total the Cosmos, for generations to come. Geodetic Sciences aspires to define and quantify the internal structure, the surface structure, the Oceans and the Atmosphere as well as the exterior - interior structure of the planets.Basic principles of Physics and Astronomy, namely the Static Gravity Field, the time-varying Gravity Field, in short Gravitodynamics, of the Earth and the other planets, the complex rotational motion for rigid bodies as well as deforming bodies of the Earth, The Moon, the Sun, and the planets and their moons and on top the time-varying Topography open a fascination Arena of Geodetic Sciences.
More details
Series
Edition
1st ed. 2019
Language
English
Place of publication
Cham
Switzerland
Publishing group
Springer International Publishing
Target group
Professional and scholarly
Research
Illustrations
200 farbige Abbildungen, 100 s/w Abbildungen
100 black & white illustrations, 200 colour illustrations, biography
Dimensions
Height: 279 mm
Width: 210 mm
ISBN-13
978-3-319-01868-3 (9783319018683)
Schweitzer Classification
Other editions
Additional editions
Complete work / Part of the work
Person
Erik W. Grafarend (Essen, 30-10-1939) is a German surveyor and Professor Emeritus at the University of Stuttgart. He has contributed significantly to the modern mathematical methods in geodesy, the regression analysis and the multi-dimensional spaces.
Content
From the Contents: Absolute Gravity Measurements.- Acceleration approach.- Advances in long-range kinematics.- Application of absolute gravity research.- Astrogeodetic Methods.- Astrometry; nutation/precession; celestial mechanics.- Atmospheric modelling.- Atmospheric, oceanic, and hydrologic loading effects.- Attitude determination.- Best Integer Prediction in mixed models.- Bureau International de Poids et Mesure (BIPM) - Section Time, Frequency and Gravimetry.- CHAMP-,GRACE-,GOCE-satellite projects.- Computational Methods.- Conventions and correction models.- Deformation analysis.- Deformations of the Earth's crust from InSAR.- Digital Terrain Models.