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Shallow geophysical mass flows down ...
~
Kuo, Chih-Yu.
Shallow geophysical mass flows down arbitrary topographymodel equations in topography-fitted coordinates, numerical simulation and back-calculations of disastrous events /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Shallow geophysical mass flows down arbitrary topographyby Ioana Luca, Yih-Chin Tai, Chih-Yu Kuo.
Reminder of title:
model equations in topography-fitted coordinates, numerical simulation and back-calculations of disastrous events /
Author:
Luca, Ioana.
other author:
Tai, Yih-Chin.
Published:
Cham :Springer International Publishing :2016.
Description:
xiv, 282 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Mass-wastingMathematical models.
Online resource:
http://dx.doi.org/10.1007/978-3-319-02627-5
ISBN:
9783319026275$q(electronic bk.)
Shallow geophysical mass flows down arbitrary topographymodel equations in topography-fitted coordinates, numerical simulation and back-calculations of disastrous events /
Luca, Ioana.
Shallow geophysical mass flows down arbitrary topography
model equations in topography-fitted coordinates, numerical simulation and back-calculations of disastrous events /[electronic resource] :by Ioana Luca, Yih-Chin Tai, Chih-Yu Kuo. - Cham :Springer International Publishing :2016. - xiv, 282 p. :ill. (some col.), digital ;24 cm. - Advances in geophysical and environmental mechanics and mathematics,1866-8348. - Advances in geophysical and environmental mechanics and mathematics..
Topography-fitted coordinate system -- An alternative of topography-fitted coordinates -- unified coordinate system -- Entrainment and deposition at the basal surface -- Continuum mechanical models in a topography-fitted coordinate system -- Numerical examples and experimental validation -- Back-calculation of natural disaster events.
Geophysical mass flows, such as landslides, avalanches or debris flows, are frequent mass movement processes in mountain areas and often cause disastrous damage. This book lays a foundation for formulating the depth-averaged equations describing the shallow geophysical mass flows over non-trivial topography. It consists of the detailed derivation of the model equations. The stimulating numerical examples demonstrate how the proposed models are applied. All this make this book accessible to a wide variety of readers, especially senior undergraduate and graduate students of fluid mechanics, civil engineering, applied mathematics, engineering geology, geophysics or engineers who are responsible for hazard management.
ISBN: 9783319026275$q(electronic bk.)
Standard No.: 10.1007/978-3-319-02627-5doiSubjects--Topical Terms:
740656
Mass-wasting
--Mathematical models.
LC Class. No.: QE598.2
Dewey Class. No.: 551.307
Shallow geophysical mass flows down arbitrary topographymodel equations in topography-fitted coordinates, numerical simulation and back-calculations of disastrous events /
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model equations in topography-fitted coordinates, numerical simulation and back-calculations of disastrous events /
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Topography-fitted coordinate system -- An alternative of topography-fitted coordinates -- unified coordinate system -- Entrainment and deposition at the basal surface -- Continuum mechanical models in a topography-fitted coordinate system -- Numerical examples and experimental validation -- Back-calculation of natural disaster events.
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Geophysical mass flows, such as landslides, avalanches or debris flows, are frequent mass movement processes in mountain areas and often cause disastrous damage. This book lays a foundation for formulating the depth-averaged equations describing the shallow geophysical mass flows over non-trivial topography. It consists of the detailed derivation of the model equations. The stimulating numerical examples demonstrate how the proposed models are applied. All this make this book accessible to a wide variety of readers, especially senior undergraduate and graduate students of fluid mechanics, civil engineering, applied mathematics, engineering geology, geophysics or engineers who are responsible for hazard management.
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EB QE598.2 L931 2016
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http://dx.doi.org/10.1007/978-3-319-02627-5
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