Geomorphic Impacts of Earthquakes: Post-Seismic Landscape Evolution summarizes the full range of landscape alterations that can result from large earthquakes, ranging from slope instability and river aggradation to prograded coastlines. The book underpins the consequences of major earthquakes, which are increasing as Earth’s population burgeons and climate and anthropogenic effects are ongoing. Although the damage to society that results directly from the shaking and ground rupture in large earthquakes is well known, the consequential effects of seismicity on the landscape causes earth surface deformations and hazards that are only now being fully understood.
This book will help readers professionally engaged in the Earth sciences be better prepared to assess the full range of natural hazards that threaten particular locations, and to work out how to evaluate their contribution to societal risks.
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Tim Davies is a Professor in the School of Earth and Environment at the University of Canterbury (NZ). His research focusses on the application of geomorphology in prediction of landform response to disturbance, in particular in the context of natural hazard assessment and disaster impact reduction.
Prof Alexander Densmore, Deputy Head of the Department of Geography at Durham University, UK, is a leading expert in the dynamic processes shaping Earth's surface. Raised on the tectonically active west coast of North America, his fascination with mountain-building and erosion has driven his academic pursuits. After earning a PhD from the University of California, Santa Cruz, he held prestigious positions at Trinity College Dublin and ETH Zurich before joining Durham University in 2006. Currently, his research delves into the aftermath of earthquakes on mass wasting and sediment transfer in Nepal and China. He also focuses on utilizing scientific data to mitigate earthquake and monsoon-induced hazards, particularly in Nepal. Furthermore, his work extends to comprehending sediment routing systems, employing both field studies in northern India and advanced numerical modeling techniques. Professor Densmore's multidisciplinary approach enriches our understanding of geological phenomena and their societal impacts.
Geomorphic Impacts of Earthquakes: Post-Seismic Landscape Evolution summarises the full range of landscape alterations that can result from large earthquakes, ranging from slope instability and river aggradation to prograded coastlines. Although the damage to society that results directly from the shaking and ground rupture in large earthquakes is well known, the consequential effects of seismicity on the landscape causes earth surface deformations and hazards that are only now being fully understood. Many of these paraseismic consequences are subtle, and can take effect at large distances from, and long times after, the causative fault rupture. Geomorphic Impacts of Earthquakes: Post-Seismic Landscape Evolution underpins the consequences of major earthquakes, which are increasing as Earth’s population burgeons and climate and anthropogenic effects are ongoing. Readers professionally engaged in the Earth sciences will be better prepared to assess the full range of natural hazards that threaten particular locations, and to work out how to evaluate their contribution to societal risks.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
Vendeur : Brook Bookstore On Demand, Napoli, NA, Italie
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Vendeur : Revaluation Books, Exeter, Royaume-Uni
Paperback. Etat : Brand New. 410 pages. 9.25x7.50 inches. In Stock. N° de réf. du vendeur __0443403759
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