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Shallow Geophysical Mass Flows down Arbitrary Topography - Model Equations in Topography-fitted Coordinates, Numerical... Shallow Geophysical Mass Flows down Arbitrary Topography - Model Equations in Topography-fitted Coordinates, Numerical Simulation and Back-calculations of Disastrous Events (Hardcover, 1st ed. 2016)
Ioana Luca, Yih-Chin Tai, Chih-Yu Kuo
R3,658 R3,397 Discovery Miles 33 970 Save R261 (7%) Ships in 10 - 15 working days

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.

Shallow Geophysical Mass Flows down Arbitrary Topography - Model Equations in Topography-fitted Coordinates, Numerical... Shallow Geophysical Mass Flows down Arbitrary Topography - Model Equations in Topography-fitted Coordinates, Numerical Simulation and Back-calculations of Disastrous Events (Paperback, Softcover reprint of the original 1st ed. 2016)
Ioana Luca, Yih-Chin Tai, Chih-Yu Kuo
R2,653 Discovery Miles 26 530 Ships in 18 - 22 working days

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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