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System Earth via Geodetic-Geophysical Space Techniques

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Cover of 'System Earth via Geodetic-Geophysical Space Techniques'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 More Accurate and Faster Available CHAMP and GRACE Gravity Fields for the User Community
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    Chapter 2 The CHAMP/GRACE User Portal ISDC
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    Chapter 3 Improvements for the CHAMP and GRACE Observation Model
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    Chapter 4 The Release 04 CHAMP and GRACE EIGEN Gravity Field Models
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    Chapter 5 Orbit Predictions for CHAMP and GRACE
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    Chapter 6 Rapid Science Orbits for CHAMP and GRACE Radio Occultation Data Analysis
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    Chapter 7 Parallelization and High Performance Computation for Accelerated CHAMP and GRACE Data Analysis
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    Chapter 8 Improved GRACE Level-1 and Level-2 Products and Their Validation by Ocean Bottom Pressure
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    Chapter 9 The GRACE Gravity Sensor System
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    Chapter 10 Numerical Simulations of Short-Term Non-tidal Ocean Mass Anomalies
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    Chapter 11 Improved Non-tidal Atmospheric and Oceanic De-aliasing for GRACE and SLR Satellites
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    Chapter 12 Global Gravity Fields from Simulated Level-1 GRACE Data
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    Chapter 13 ITG-GRACE: Global Static and Temporal Gravity Field Models from GRACE Data
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    Chapter 14 Validation of GRACE Gravity Fields by In-Situ Data of Ocean Bottom Pressure
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    Chapter 15 Antarctic Circumpolar Current Transport Variability in GRACE Gravity Solutions and Numerical Ocean Model Simulations
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    Chapter 16 Gravity and Steady-State Ocean Circulation Explorer GOCE
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    Chapter 17 GOCE Data Analysis: From Calibrated Measurements to the Global Earth Gravity Field
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    Chapter 18 GOCE and Its Use for a High-Resolution Global Gravity Combination Model
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    Chapter 19 Spectral Approaches to Solving the Polar Gap Problem
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    Chapter 20 Regionally Refined Gravity Field Models from In-Situ Satellite Data
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    Chapter 21 Quality Evaluation of GOCE Gradients
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    Chapter 22 Validation of Satellite Gravity Field Models by Regional Terrestrial Data Sets
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    Chapter 23 Comparison of GRACE and Model-Based Estimates of Bottom Pressure Variations Against In Situ Bottom Pressure Measurements
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    Chapter 24 Sea Level Variations – Prospects from the Past to the Present (SEAVAR)
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    Chapter 25 Radar Altimetry Derived Sea Level Anomalies – The Benefit of New Orbits and Harmonization
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    Chapter 26 Combining GEOSAT and TOPEX/Poseidon Data by Means of Data Assimilation
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    Chapter 27 Reanalysis of GPS Data at Tide Gauges and the Combination for the IGS TIGA Pilot Project
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    Chapter 28 Sea Level Rise in North Atlantic Derived from Gap Filled Tide Gauge Stations of the PSMSL Data Set
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    Chapter 29 Using ARGO, GRACE and Altimetry Data to Assess the Quasi Stationary North Atlantic Circulation
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    Chapter 30 A 15-Year Reconstruction of Sea Level Anomalies Using Radar Altimetry and GPS-Corrected Tide Gauge Data
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    Chapter 31 Continental Water Storage Variations from GRACE Time-Variable Gravity Data
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    Chapter 32 Surface Mass Variability Surface mass variability from GRACE and Hydrological Models Hydrological model : Characteristic Periods Periods characteristic and the Reconstruction of Significant Signals Reconstruction of significant signals
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    Chapter 33 Time-Space Multiscale Analysis Time-Space Multiscale Analysis Multiscale analysis and Its Application to GRACE and Hydrology Data
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    Chapter 34 Mass Variation Signals in GRACE Products and in Crustal Deformations crustal deformation from GPS: A Comparison
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    Chapter 35 Monthly and Daily Variations of Continental Water Storage and Flows
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    Chapter 36 Calibration of a Global Hydrological Model global hydrological model with GRACE Data
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    Chapter 37 Near-Real-Time Provision and Usage of Global Atmospheric Data from CHAMP and GRACE (NRT-RO): Motivation and Introduction
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    Chapter 38 Global Atmospheric Data from CHAMP and GRACE-A: Overview and Results
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    Chapter 39 Near-Real Time Satellite Orbit Determination for GPS Radio Occultation with CHAMP and GRACE
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    Chapter 40 The Operational Processing System for GPS Radio Occultation Data from CHAMP and GRACE
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    Chapter 41 Assimilation of CHAMP and GRACE-A Radio Occultation Data in the GME Global Meteorological Model of the German Weather Service
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    Chapter 42 The Earth’s Magnetic Field at the CHAMP Satellite Epoch
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    Chapter 43 Integration of Space Geodetic Techniques as the Basis for a Global Geodetic-Geophysical Observing System (GGOS-D): An Overview
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    Chapter 44 GGOS-D Data Management – From Data to Knowledge
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    Chapter 45 GGOS-D Consistent, High-Accuracy Technique-Specific Solutions
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    Chapter 46 GGOS-D Global Terrestrial Reference Frame
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    Chapter 47 GGOS-D Consistent and Combined Time Series of Geodetic/Geophyical Parameters
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    Chapter 48 GGOS-D Integration with Low Earth Orbiters
Overall attention for this book and its chapters
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Title
System Earth via Geodetic-Geophysical Space Techniques
Published by
Springer Berlin Heidelberg, July 2010
DOI 10.1007/978-3-642-10228-8
ISBNs
978-3-64-210227-1, 978-3-64-210228-8
Editors

Flechtner, Frank M., Gruber, Thomas, Güntner, Andreas, Mandea, M., Rothacher, Markus, Schöne, Tilo, Wickert, Jens

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 618 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 618 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 3 <1%
Researcher 2 <1%
Unknown 613 99%
Readers by discipline Count As %
Earth and Planetary Sciences 4 <1%
Physics and Astronomy 1 <1%
Unknown 613 99%