Provides critiques of current practices for environmental flow assessment and shows how they can be improved, using case studies.
In Environmental Flow Assessment: Methods and Applications, four leading experts critique methods used to manage flows in regulated streams and rivers to balance environmental (instream) and out-of-stream uses of water. Intended for managers as well as practitioners, the book dissects the shortcomings of commonly used approaches, and offers practical advice for selecting and implementing better ones.
The authors argue that methods for environmental flow assessment (EFA) can be defensible as well as practicable only if they squarely address uncertainty, and provide guidance for doing so. Introductory chapters describe the scientific and social reasons that EFA is hard, and provide a brief history. Because management of regulated streams starts with understanding freshwater ecosystems, Environmental Flow Assessment: Methods and Applications includes chapters on flow and organisms in streams. The following chapters assess standard and emerging methods, how they should be tested, and how they should (or should not) be applied. The book concludes with practical recommendations for implementing environmental flow assessment.
Environmental Flow Assessment: Methods and Applications is an excellent book for biologists and specialists in allied fields such as engineering, ecology, fluvial geomorphology, environmental planning, landscape architecture, along with river managers and decision makers.
Le informazioni nella sezione "Riassunto" possono far riferimento a edizioni diverse di questo titolo.
John G. Williams, PhD, is an independent scientist who has written influential papers on environmental flow assessment, as well as on a monograph on Chinook salmon, steelhead, and their habitats in California’s Central Valley. He served two terms as an elected director of a powerful water management district and was special master for an important legal case concerning environmental flows.
Peter B. Moyle, PhD, is Distinguished Professor Emeritus in the Department of Wildlife, Fish, and Conservation Biology and the Center for Watershed Sciences, University of California Davis. He has been studying the effects of altered flows on fish since the 1970s.
J. Angus Webb, PhD, is a senior lecturer in the Water, Environment and Agriculture Program within the Melbourne School of Engineering, University of Melbourne. He has particular expertise in the monitoring, evaluation, and adaptive management of environmental flow programs.
G. Mathias Kondolf, PhD, is a Professor in the Departments of Landscape Architecture & Environmental Planning and Geography, University of California Berkeley, and fellow of the Collegium, Institute of Advanced Studies, University of Lyon. His expertise is in fluvial geomorphology, environmental planning, and river restoration.
John G. Williams, PhD, is an independent scientist who has written influential papers on environmental flow assessment, as well as on a monograph on Chinook salmon, steelhead, and their habitats in California’s Central Valley. He served two terms as an elected director of a powerful water management district and was special master for an important legal case concerning environmental flows.
Peter B. Moyle, PhD, is Distinguished Professor Emeritus in the Department of Wildlife, Fish, and Conservation Biology and the Center for Watershed Sciences, University of California Davis. He has been studying the effects of altered flows on fish since the 1970s.
J. Angus Webb, PhD, is a senior lecturer in the Water, Environment and Agriculture Program within the Melbourne School of Engineering, University of Melbourne. He has particular expertise in the monitoring, evaluation, and adaptive management of environmental flow programs.
G. Mathias Kondolf, PhD, is a Professor in the Departments of Landscape Architecture & Environmental Planning and Geography, University of California Berkeley, and fellow of the Collegium, Institute of Advanced Studies, University of Lyon. His expertise is in fluvial geomorphology, environmental planning, and river restoration.
Provides critiques of current practices for environmental flow assessment and shows how they can be improved, using case studies.
In Environmental Flow Assessment: Methods and Applications, four leading experts critique methods used to manage flows in regulated streams and rivers to balance environmental (instream) and out-of-stream uses of water. Intended for managers as well as practitioners, the book dissects the shortcomings of commonly used approaches, and offers practical advice for selecting and implementing better ones.
The authors argue that methods for environmental flow assessment (EFA) can be defensible as well as practicable only if they squarely address uncertainty, and provide guidance for doing so. Introductory chapters describe the scientific and social reasons that EFA is hard, and provide a brief history. Because management of regulated streams starts with understanding freshwater ecosystems, Environmental Flow Assessment: Methods and Applications includes chapters on flow and organisms in streams. The following chapters assess standard and emerging methods, how they should be tested, and how they should (or should not) be applied. The book concludes with practical recommendations for implementing environmental flow assessment.
Environmental Flow Assessment: Methods and Applications is an excellent book for biologists and specialists in allied fields such as engineering, ecology, fluvial geomorphology, environmental planning, landscape architecture, along with river managers and decision makers.
Le informazioni nella sezione "Su questo libro" possono far riferimento a edizioni diverse di questo titolo.
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