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The Study of Continental Lithosphere Electrical Conductivity, Temperature and Rheology

Bag om The Study of Continental Lithosphere Electrical Conductivity, Temperature and Rheology

This proceedings book investigates the possibilities for creating new models of the continental lithosphere structure by integrating methods from geothermodynamics and deep geoelectrics. It particularly focuses on the use of powerful controlled sources of electromagnetic field to study the nature of deep geophysical boundaries. It also presents research related to the transition boundary between the brittle and quasiplastic states of Earth¿s crust matter and the position of creep areas in Earth¿s crust, as well as geothermal and rheological studies in combination with the deep electromagnetic soundings ¿ a promising direction that allows the tectonophysical reconstruction of natural stresses in the lithosphere. The experimental study results and tectonophysical modeling are discussed in the context of the Fennoscandinavian shield, the Indian Craton, the Himalayas, Eastern Tibet and the Eurasian continent as a whole. The book appeals to researchers interested in solid Earth physics.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9783030359058
  • Indbinding:
  • Hardback
  • Sideantal:
  • 103
  • Udgivet:
  • 4. januar 2020
  • Udgave:
  • 12019
  • Størrelse:
  • 155x235x0 mm.
  • Vægt:
  • 454 g.
  • BLACK NOVEMBER
  Gratis fragt
Leveringstid: 8-11 hverdage
Forventet levering: 5. december 2024

Beskrivelse af The Study of Continental Lithosphere Electrical Conductivity, Temperature and Rheology

This proceedings book investigates the possibilities for creating new models of the continental lithosphere structure by integrating methods from geothermodynamics and deep geoelectrics. It particularly focuses on the use of powerful controlled sources of electromagnetic field to study the nature of deep geophysical boundaries. It also presents research related to the transition boundary between the brittle and quasiplastic states of Earth¿s crust matter and the position of creep areas in Earth¿s crust, as well as geothermal and rheological studies in combination with the deep electromagnetic soundings ¿ a promising direction that allows the tectonophysical reconstruction of natural stresses in the lithosphere. The experimental study results and tectonophysical modeling are discussed in the context of the Fennoscandinavian shield, the Indian Craton, the Himalayas, Eastern Tibet and the Eurasian continent as a whole. The book appeals to researchers interested in solid Earth physics.

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