Rheological and Seismic Properties of Solid-Melt Systems: A Mechanical Spectroscopy Study

Author:   Su-Ying Chien
Publisher:   Springer International Publishing AG
Edition:   2014 ed.
ISBN:  

9783319030975


Pages:   159
Publication Date:   10 December 2013
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Rheological and Seismic Properties of Solid-Melt Systems: A Mechanical Spectroscopy Study


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Overview

Our understanding of the rheological and seismic properties of the Earth’s interior relies on interpreting geophysical observations using mineral physics data. The complexity of natural materials complicates these interpretations, but here the key features of such materials in controlling the attenuation of seismic waves are determined by a set of careful experiments. This thesis clearly explains how dynamic mechanical spectroscopy has been used to determine the visco-elastic properties of igneous and sedimentary rocks containing geological fluids. These experiments highlight, for the first time, the importance of mineral and rock microstructures as controls on geophysical properties of solids, particularly near the melting point. The results have impacts in areas ranging from volcanic processes, through the structure of the deep Earth, to fluid-saturated porous media.

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Author:   Su-Ying Chien
Publisher:   Springer International Publishing AG
Imprint:   Springer International Publishing AG
Edition:   2014 ed.
Dimensions:   Width: 15.50cm , Height: 1.10cm , Length: 23.50cm
Weight:   3.967kg
ISBN:  

9783319030975


ISBN 10:   3319030973
Pages:   159
Publication Date:   10 December 2013
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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Su-Ying Chien studied Earth Sciences at National Cheng Kung University, Taiwan, carrying out Masters research on the properties of silica at high pressure and temperature by ultrasonic measurements. Her Ph.D. at the University of Cambridge developed her interests into the realms of low-frequency mechanics of Earth materials, as described here.

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