Ecohydrological Interfaces

Ecohydrological Interfaces

Author: Stefan Krause

Publisher: John Wiley & Sons

Published: 2023-10-12

Total Pages: 437

ISBN-13: 1119489660

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Ecohydrological Interfaces Comprehensive overview of the process dynamics and interactions governing ecohydrological interfaces Summarizing the interdisciplinary investigation of ecohydrological interface functioning, Ecohydrological Interfaces advances the understanding of their dynamics across traditional subject boundaries. It offers a detailed explanation of the underlying mechanisms and process interactions governing ecohydrological interface functioning from the micro scale to the ecosystem and regional scale. The multidisciplinary team of authors integrates and synthesises the current understanding of process dynamics at different ecohydrological interfaces to develop a unifying concept of their ecosystem functions. The work introduces novel experimental and model-based methods for characterizing and quantifying ecohydrological interface processes, taking account of innovative sensing and tracing technologies as well as microbial and molecular biology approaches. Key questions addressed in the book include: Which conditions stimulate the transformative nature of ecohydrological interfaces? How are ecohydrological interfaces organized in space and time? How does interface activity propagate from small to large scales? How do ecohydrological interfaces react to environmental change and what is their role in processes of significant societal value? As a research level text on the functionality and performance of ecohydrological interfaces, Ecohydrological Interfaces is primarily aimed at academics and postgraduate researchers. It is also appropriate for university libraries as further reading on a range of geographical, environmental, biological, and engineering topics.


Ecohydrological Interfaces

Ecohydrological Interfaces

Author: Stefan Krause

Publisher: John Wiley & Sons

Published: 2023-10-16

Total Pages: 437

ISBN-13: 1119489679

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Ecohydrological Interfaces Comprehensive overview of the process dynamics and interactions governing ecohydrological interfaces Summarizing the interdisciplinary investigation of ecohydrological interface functioning, Ecohydrological Interfaces advances the understanding of their dynamics across traditional subject boundaries. It offers a detailed explanation of the underlying mechanisms and process interactions governing ecohydrological interface functioning from the micro scale to the ecosystem and regional scale. The multidisciplinary team of authors integrates and synthesises the current understanding of process dynamics at different ecohydrological interfaces to develop a unifying concept of their ecosystem functions. The work introduces novel experimental and model-based methods for characterizing and quantifying ecohydrological interface processes, taking account of innovative sensing and tracing technologies as well as microbial and molecular biology approaches. Key questions addressed in the book include: Which conditions stimulate the transformative nature of ecohydrological interfaces? How are ecohydrological interfaces organized in space and time? How does interface activity propagate from small to large scales? How do ecohydrological interfaces react to environmental change and what is their role in processes of significant societal value? As a research level text on the functionality and performance of ecohydrological interfaces, Ecohydrological Interfaces is primarily aimed at academics and postgraduate researchers. It is also appropriate for university libraries as further reading on a range of geographical, environmental, biological, and engineering topics.


Groundwater-Surface Water Interactions

Groundwater-Surface Water Interactions

Author: Habil. Jörg Lewandowski

Publisher: MDPI

Published: 2020-12-10

Total Pages: 438

ISBN-13: 3039289055

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Recent years have seen a paradigm shift in our understanding of groundwater–surface water interactions: surface water and aquifers were long considered discrete, separate entities; they are now understood as integral components of a surface–subsurface continuum. This book provides an overview of current research advances and innovative approaches in groundwater–surface water interactions. The 20 research articles and 1 communication cover a wide range of thematic scopes, scales, and experimental and modelling methods across different disciplines (hydrology, aquatic ecology, biogeochemistry, and environmental pollution). The book identifies current knowledge gaps and reveals the challenges in establishing standardized measurement, observation, and assessment approaches. It includes current hot topcis with environmental and societal relevance such as eutrophication, retention of legacy, and emerging pollutants (e.g., pharmaceuticals and microplastics), urban water interfaces, and climate change impacts. The book demonstrates the relevance of processes at groundwater–surface water interfaces for (1) regional water balances and (2) quality and quantity of drinking water resources. As such, this book represents the long-awaited transfer of the above-mentioned paradigm shift in understanding of groundwater–surface water interactions from science to practice.


Eco-hydrology

Eco-hydrology

Author: Andrew J. Baird

Publisher: Psychology Press

Published: 1999

Total Pages: 421

ISBN-13: 0415162726

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Leading ecologists and hydrologists present reviews of the eco-hydrology of drylands, wetlands, temperate and tropical rain forests, rivers and lakes, to offer an overview of the complex relationships between plants and water.


Ecohydrology

Ecohydrology

Author: Amilcare Porporato

Publisher: Cambridge University Press

Published: 2022-02-17

Total Pages: 397

ISBN-13: 110884054X

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Rigorous yet accessible textbook on ecohydrology for advanced students, and a reference for researchers, professionals, and engineers.


River Networks as Ecological Corridors

River Networks as Ecological Corridors

Author: Andrea Rinaldo

Publisher: Cambridge University Press

Published: 2020-10-22

Total Pages: 457

ISBN-13: 1108477828

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A summary of state-of-the-art research on how the river environment impacts biodiversity, species invasions, population dynamics, and the spread of waterborne disease. Blending laboratory, field and theoretical studies, it is the go-to reference for graduate students and researchers in river ecology, hydrology, and epidemiology.


Hydroecology and Ecohydrology

Hydroecology and Ecohydrology

Author: Paul J. Wood

Publisher: John Wiley & Sons

Published: 2008-02-28

Total Pages: 460

ISBN-13: 9780470010181

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This state-of-the-art, research level text considers the growing volume of research at the interface of hydrology and ecology and focuses on: the evolution of hydroecology / ecohydrology process understanding hydroecological interactions, dynamics and linkages methodological approaches detailed case studies future research needs The editors and contributors are internationally recognised experts in hydrology and ecology from institutions across North America, South America, Australia, and Europe. Chapters provide a broad geographical coverage and bridge the traditional subject divide between hydrology and ecology. The book considers a range of organisms (plants, invertebrates and fish), provides a long-term perspective on contemporary and palaeo-systems, and emphasises wider research implications with respect to environmental and water resource management. Hydroecology and Ecohydrology is an indispensable resource for academics and postgraduate researchers in departments of physical geography, earth sciences, environmental science, environmental management, civil engineering, water resource management, biology, zoology, botany and ecology. It is also of interest to professionals working within environmental consultancies, organizations and national agencies.


Ecohydrology

Ecohydrology

Author: Amilcare Porporato

Publisher:

Published: 2021

Total Pages:

ISBN-13: 9781108886321

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"Ecohydrology is the study of the two-way interaction between the hydrological cycle and ecosystems. More broadly, it is the science of the linkages between life and water on Earth. On the one hand, the space and time variability of the hydrological cycle controls the water availability for ecosystems; on the other hand, ecosystems, especially through transpiration by vegetation, control the main pathway by which water returns to the atmosphere from land. The terrestrial water cycle also drives some of the dynamics of soil organic matter, 7 8 CHAPTER INTRO DUCTION Abiotic processes (water and energy cycles) Biotic processes (carbon and nutrient cycles, vegetation and soil microbes) 2-way interaction Society Agroecosystems (60% of rainfall goes in transpiration in agricultural land Rule of thumb: 1 kg of bread requires 1 m3 of water) 2-way interaction Figure 1.1: Ecohydrology is characterized by the feedbacks between hydrological and ecological processes, involving numerous biotic and abiotic components, as well as by the growing interactions with the social components, especially ftwowayg through agroecosystems. microbial biomass, and the related nutrient cycling. These in turn not only a ect the vegetation dynamics but also impact the hydraulic and thermodynamic properties of soil, thereby directly acting on the partitioning of water and energy uxes at the land-atmosphere interface. The interaction between water balance and plants is responsible for some of the fundamental di erences among biomes (e.g., forests, grasslands, savannas) and for the developments of their space-time patterns. Thus one of the rst objectives of ecohydrology is to understand the intertwined dynamics of climate, soil, and vegetation. This interaction is especially interesting in water-limited ecosystems, where water is a limiting factor not only because of its scarcity but also because of its intermittent and unpredictable appearance. Many important practical issues depend on the quantitative understanding of the ecohydrological processes, including environmental preservation and proper management of soil and water resources. A solid scientic foundation of sustainable development and eco-agriculture must take into account the two-way interaction between biosphere and hydrosphere, as well as include a quantitative description of the human interference with these processes (see Fig. 1.1)"--