Geomorphology of Desert Dunes

Author:   Nicholas Lancaster
Publisher:   Cambridge University Press
Edition:   2nd Revised edition
ISBN:  

9781108420884


Pages:   350
Publication Date:   23 March 2023
Format:   Hardback
Availability:   In stock   Availability explained
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Geomorphology of Desert Dunes


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Overview

Sand dunes are a globally important depositional landform and sedimentary system. Their origins and dynamics are important in understanding how deserts have evolved in response to climate change and changes in sand supply and mobility, and how they will continue to evolve in the future. This book provides a state-of-the-art review of the characteristics of desert dunes and their sediments, and explores their dynamics on timescales from days to millennia as they respond to changes in wind speed and direction, precipitation and sand supply. This extensively revised edition reflects the advances in our understanding of desert dunes, their dynamics and history; and covers recent developments including the luminescence dating revolution, ground penetrating radar and advances in numerical modeling. Also covering dunes on Mars and Titan, this authoritative reference is a must-have for researchers and graduate students working on desert dunes and aeolian geomorphology.

Full Product Details

Author:   Nicholas Lancaster
Publisher:   Cambridge University Press
Imprint:   Cambridge University Press
Edition:   2nd Revised edition
Dimensions:   Width: 17.50cm , Height: 2.20cm , Length: 25.00cm
Weight:   0.820kg
ISBN:  

9781108420884


ISBN 10:   1108420885
Pages:   350
Publication Date:   23 March 2023
Audience:   College/higher education ,  Tertiary & Higher Education
Format:   Hardback
Publisher's Status:   Active
Availability:   In stock   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

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Reviews

'Studying desert dunes continues to be essential to our understanding of the geomorphology and climate of Earth and other worlds in the solar system. The update to this anchoring text seamlessly merges the significant advancements in aeolian science over the past few decades with core concepts from decades prior. This book will serve as the go-to source for any scientist needing a reference for wind-blown sand dunes and as the textbook for training the next generation of aeolian scientists.' Ryan Ewing, Texas A&M University 'Nick Lancaster's fifty-plus years of field research on desert dunes and his keen insights on the 'big-picture' of dune formation and change make him the best qualified person to write the definitive book on the subject. This thoroughly revised and updated second edition is a must-read for anyone seeking to understand desert sand dunes.' Jeff Lee, Department of Economics and Geography, Texas Tech University 'This fully updated new edition provides a masterly synthesis of the burgeoning research into desert dunes worldwide. Whether it is current dune processes, the evolution of dune systems in the past or extra-terrestrial aeolian features, this book has it all. It is an excellent testimony to Nick Lancaster's five decades of desert dune analysis, and will be the definitive 'go-to' text for a long time.' David Thomas, University of Oxford


Author Information

Nicholas Lancaster is a leading expert on desert sand dunes, and Emeritus Research Professor from the Desert Research Institute, USA. He has worked on desert dunes in Africa (Namib, Kalahari, northern and western Sahara), Arabia, Antarctica, and the western United States (Mojave and Sonoran Deserts). His research focuses on dune dynamics and morphology, the application of remote sensing, ground penetaring radar and optical dating, and the impacts of climate change on desert regions. He has won multiple awards including the Farouk El-Baz Award from the Quaternary Geology and Geomorphology Division of the Geological Society of America (2001), the NSHE Regent's Researcher Award (2007), and the Liu Tungshen Medal from the International Quaternary Association (INQUA, 2019).

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