Detlef Wolf / José Fernández (eds.)
Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism, and Climate Change
Herausgegeben von Wolf, Detlef; Fernández, José
Detlef Wolf / José Fernández (eds.)
Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism, and Climate Change
Herausgegeben von Wolf, Detlef; Fernández, José
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Most of the papers in this book were presented at the workshop on "Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism and Climate Change", which took place at the Casa de los Volcanes on Lanzarote, during March 1-4, 2005. Leading experts describe major developments in geodynamics, and record their views on internal and surface processes of the earth.
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Most of the papers in this book were presented at the workshop on "Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism and Climate Change", which took place at the Casa de los Volcanes on Lanzarote, during March 1-4, 2005. Leading experts describe major developments in geodynamics, and record their views on internal and surface processes of the earth.
Produktdetails
- Produktdetails
- Pageoph Topical Volumes
- Verlag: Springer, Basel / Springer, Berlin
- Artikelnr. des Verlages: 12038329
- 2007
- Seitenzahl: 256
- Erscheinungstermin: 21. Juni 2007
- Englisch
- Abmessung: 244mm x 170mm x 15mm
- Gewicht: 448g
- ISBN-13: 9783764384166
- ISBN-10: 3764384166
- Artikelnr.: 22773774
- Pageoph Topical Volumes
- Verlag: Springer, Basel / Springer, Berlin
- Artikelnr. des Verlages: 12038329
- 2007
- Seitenzahl: 256
- Erscheinungstermin: 21. Juni 2007
- Englisch
- Abmessung: 244mm x 170mm x 15mm
- Gewicht: 448g
- ISBN-13: 9783764384166
- ISBN-10: 3764384166
- Artikelnr.: 22773774
Detlef Wolf, Geoforschungszentrum Potsdam, Germany / José Fernández, Universidad de Madrid, Spain
Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism and Climate Change. Introduction.- Interpretation of 1992-1994 gravity changes in Mayon volcano, Philippines, using point sources.- Some insights about topographic, elastic and self-gravitation interaction in modelling ground deformation and gravity changes in active volcanic areas.-Shear-wave velocity structure at Teide volcano. Results using microtremors and the SPAC method. Implications for interpretation of geodetic results.- Steric sea level variations inferred from combined Topex/Poseidon altimetry and GRACE gravimetry.- Propagator-matrix technique for the viscoelastic response of a multi-layered sphere to surface toroidal traction.- Modeling of Stress Changes at Mayon Volcano, Philippines.- A hybrid model for the summit region of Merapi volcano, Java, Indonesia, derived from gravity changes and deformation measured between 2000 and 2002.- Glacial-isostatic adjustment and the viscosity structure underlying Iceland.- Vertical crustal motion along the Mediterranean and Black Seas coasts derived from ocean altimetry, tide gauge, and continuous GPS data.- An estimate of global sea-level rise inferred from tide-gauge measurements using glacial-isostatic models consistent with the relative sea-level record.- Using fuzzy-set classification for the analysis of sea-level indicators with respect to glacial-isostatic adjustment.- An overview of the Small BAseline Subset Algorithm: a DInSAR technique for surface deformation analysis.- Insight into the internal dynamics (plumbing) of Etna volcano through discrete and continuous microgravity observations.
Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism and Climate Change. Introduction.- An Overview of the Small BAseline Subset Algorithm: A DInSAR Technique for Surface Deformation Analysis.- Propagator-matrix Technique for the Viscoelastic Response of a Multi-layered Sphere to Surface Toroidal Traction.- Using Fuzzy Logic for the Analysis of Sea-level Indicators with Respect to Glacial-isostatic Adjustment: An Application to the Richmond-Gulf Region, Hudson Bay.- Shear-wave Velocity Structure around Teide Volcano: Results Using Microtremors with the SPAC Method and Implications for Interpretation of Geodetic Results.- Steric Sea-level Variations Inferred from Combined Topex/Poseidon Altimetry and GRACE Gravimetry.- Interpretation of 1992–1994 Gravity Changes around Mayon Volcano, Philippines, Using Point Sources.- Glacial-isostatic Adjustment and the Viscosity Structure Underlying the Vatnajökull Ice Cap, Iceland.- Review of Microgravity Observations at Mt. Etna: A Powerful Tool to Monitor and Study Active Volcanoes.- An Estimate of Global Mean Sea-level Rise Inferred from Tide-gauge Measurements Using Glacial-isostatic Models Consistent with the Relative Sea-level Record.- Modeling of Stress Changes at Mayon Volcano, Philippines.- A Hybrid Model for the Summit Region of Merapi Volcano, Java, Indonesia, Derived from Gravity Changes and Deformation Measured between 2000 and 2002.- Vertical Crustal Motion along the Mediterranean and Black Sea Coast Derived from Ocean Altimetry and Tide Gauge Data.- Some Insights into Topographic, Elastic and Self-gravitation Interaction in Modelling Ground Deformation and Gravity Changes in Active Volcanic Areas.
Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism and Climate Change. Introduction.- Interpretation of 1992-1994 gravity changes in Mayon volcano, Philippines, using point sources.- Some insights about topographic, elastic and self-gravitation interaction in modelling ground deformation and gravity changes in active volcanic areas.-Shear-wave velocity structure at Teide volcano. Results using microtremors and the SPAC method. Implications for interpretation of geodetic results.- Steric sea level variations inferred from combined Topex/Poseidon altimetry and GRACE gravimetry.- Propagator-matrix technique for the viscoelastic response of a multi-layered sphere to surface toroidal traction.- Modeling of Stress Changes at Mayon Volcano, Philippines.- A hybrid model for the summit region of Merapi volcano, Java, Indonesia, derived from gravity changes and deformation measured between 2000 and 2002.- Glacial-isostatic adjustment and the viscosity structure underlying Iceland.- Vertical crustal motion along the Mediterranean and Black Seas coasts derived from ocean altimetry, tide gauge, and continuous GPS data.- An estimate of global sea-level rise inferred from tide-gauge measurements using glacial-isostatic models consistent with the relative sea-level record.- Using fuzzy-set classification for the analysis of sea-level indicators with respect to glacial-isostatic adjustment.- An overview of the Small BAseline Subset Algorithm: a DInSAR technique for surface deformation analysis.- Insight into the internal dynamics (plumbing) of Etna volcano through discrete and continuous microgravity observations.
Deformation and Gravity Change: Indicators of Isostasy, Tectonics, Volcanism and Climate Change. Introduction.- An Overview of the Small BAseline Subset Algorithm: A DInSAR Technique for Surface Deformation Analysis.- Propagator-matrix Technique for the Viscoelastic Response of a Multi-layered Sphere to Surface Toroidal Traction.- Using Fuzzy Logic for the Analysis of Sea-level Indicators with Respect to Glacial-isostatic Adjustment: An Application to the Richmond-Gulf Region, Hudson Bay.- Shear-wave Velocity Structure around Teide Volcano: Results Using Microtremors with the SPAC Method and Implications for Interpretation of Geodetic Results.- Steric Sea-level Variations Inferred from Combined Topex/Poseidon Altimetry and GRACE Gravimetry.- Interpretation of 1992–1994 Gravity Changes around Mayon Volcano, Philippines, Using Point Sources.- Glacial-isostatic Adjustment and the Viscosity Structure Underlying the Vatnajökull Ice Cap, Iceland.- Review of Microgravity Observations at Mt. Etna: A Powerful Tool to Monitor and Study Active Volcanoes.- An Estimate of Global Mean Sea-level Rise Inferred from Tide-gauge Measurements Using Glacial-isostatic Models Consistent with the Relative Sea-level Record.- Modeling of Stress Changes at Mayon Volcano, Philippines.- A Hybrid Model for the Summit Region of Merapi Volcano, Java, Indonesia, Derived from Gravity Changes and Deformation Measured between 2000 and 2002.- Vertical Crustal Motion along the Mediterranean and Black Sea Coast Derived from Ocean Altimetry and Tide Gauge Data.- Some Insights into Topographic, Elastic and Self-gravitation Interaction in Modelling Ground Deformation and Gravity Changes in Active Volcanic Areas.