Plate deformation from cradle to grave : seismic anisotropy and deformation at mid-ocean ridges and in the lowermost mantle /

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Bibliographic Details
Author / Creator:Nowacki, Andy.
Imprint:Berlin ; New York : Springer, c2013.
Description:1 online resource.
Language:English
Series:Springer theses, 2190-5053
Springer theses.
Subject:
Format: E-Resource Dissertations Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/9849328
Hidden Bibliographic Details
ISBN:9783642348426 (electronic bk.)
3642348424 (electronic bk.)
9783642348419
Notes:"Doctoral thesis accepted by the University of Bristol, United Kingdom."--t.p.
Thesis (PhD.)-- University of Bristol.
Includes bibliographical references.
Description
Summary:The Earth's rocky mantle convects to lose heat, which comes from the liquid iron core below. The mantle's interfaces - the core-mantle boundary, and the lithosphere - may hold the key to understanding mantle motion because of the seismic anisotropy present in these parts of the Earth. <br> <br> In this thesis, Andy Nowacki presents a precise but comprehensive review of the current state of the art in studying flow with anisotropy, mineral physics and geodynamics. New measurements of shear wave anisotropy in the lowermost mantle and at mid-ocean ridges are used to constrain mechanisms of creep and melt extraction in the mantle. A model of global flow is used to predict anisotropy in the deep Earth, and novel methods to forward model shear wave splitting are described. Future studies of mantle flow must incorporate the understanding gained in this thesis.<br> <br> The thesis contains a substantive introduction to the structure of the Earth, seismic anisotropy in general and in the core-mantle boundary region, and mid-ocean ridge processes. It also describes novel methods for forward modelling and interpreting shear wave splitting data. Three chapters present timely research into dynamics at divergent plate boundaries and at the core-mantle boundary.
Item Description:"Doctoral thesis accepted by the University of Bristol, United Kingdom."--t.p.
Physical Description:1 online resource.
Bibliography:Includes bibliographical references.
ISBN:9783642348426
3642348424
9783642348419
ISSN:2190-5053