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- 7000 pages
- 245 hours of reading
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Treaties on Core Dynamics, Volume 8 , provides a comprehensive review of the current state of understanding of core dynamics. The book begins by analyzing a subject of long-standing and on-going the gross energetics of the core. It then explains the important elements of dynamo theory; actual fluid motions in the core; the basic physical principles involved in thermochemical convection in the core and the basic equations governing the convection; and turbulence and the small-scale dynamics of the core. This is followed by discussions of the state of knowledge on rotation-induced core flows; the use of first-principles numerical models of self-sustaining fluid dynamos; and the behavior of polarity reversals in numerical dynamo models. The remaining chapters cover the various roles the inner core plays in core dynamics and the geodynamo; experiments that have shaped knowledge about the flows in the core that produce the geodynamo and govern its evolution; and ways the mantle can affect core dynamics, and corresponding ways the core can affect the mantle.
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Treatise on Geophysics, Peter Olson, Gerald Schubert
- Language
- Released
- 2009
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- (Paperback),
- Book condition
- Very Good
- Price
- €67.99
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- Title
- Treatise on Geophysics
- Subtitle
- Core Dynamics
- Language
- English
- Authors
- Peter Olson, Gerald Schubert
- Publisher
- Elsevier
- Released
- 2009
- Format
- Paperback
- Pages
- 7000
- ISBN10
- 0444534571
- ISBN13
- 9780444534576
- Series
- Tags
- Description
- Treaties on Core Dynamics, Volume 8 , provides a comprehensive review of the current state of understanding of core dynamics. The book begins by analyzing a subject of long-standing and on-going the gross energetics of the core. It then explains the important elements of dynamo theory; actual fluid motions in the core; the basic physical principles involved in thermochemical convection in the core and the basic equations governing the convection; and turbulence and the small-scale dynamics of the core. This is followed by discussions of the state of knowledge on rotation-induced core flows; the use of first-principles numerical models of self-sustaining fluid dynamos; and the behavior of polarity reversals in numerical dynamo models. The remaining chapters cover the various roles the inner core plays in core dynamics and the geodynamo; experiments that have shaped knowledge about the flows in the core that produce the geodynamo and govern its evolution; and ways the mantle can affect core dynamics, and corresponding ways the core can affect the mantle.


