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Rheological and Seismic Properties of Solid-Melt Systems - A Mechanical Spectroscopy Study (Paperback, Softcover reprint of the... Rheological and Seismic Properties of Solid-Melt Systems - A Mechanical Spectroscopy Study (Paperback, Softcover reprint of the original 1st ed. 2014)
Su-Ying Chien
R3,459 Discovery Miles 34 590 Ships in 10 - 15 working days

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.

Rheological and Seismic Properties of Solid-Melt Systems - A Mechanical Spectroscopy Study (Hardcover, 2014 ed.): Su-Ying Chien Rheological and Seismic Properties of Solid-Melt Systems - A Mechanical Spectroscopy Study (Hardcover, 2014 ed.)
Su-Ying Chien
R3,703 Discovery Miles 37 030 Ships in 10 - 15 working days

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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