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Forests cover 30% of the Earth’s land area, or nearly four billion hectares. Enhancing the benefits and ecosystem services of forests has been increasingly recognized as an essential part of nature-based solutions for solving many emerging global environmental problems today. A core science supporting forest management is understanding the interactions of forests, water, and people. These interactions have become increasingly complex under climate change and its associated impacts, such as the increases in the intensity and frequency of drought and floods, increasing population and deforestation, and a rise in global demands for multiple ecosystem services including clean water supply and carbon sequestration. Forest watershed managers have recognized that water management is an essential component of forest management. Global environmental change is posing more challenges for managing forests and water toward sustainable development. New science on forest and water is critically needed across the globe. The International Forests and Water Conference 2018, Valdivia, Chile (http://forestsandwater2018.cl/), a joint effort of the 5th IUFRO International Conference on Forests and Water in a Changing Environment and the Second Latin American Conference on Forests and Water provided a unique forum to examine forest and water issues in Latin America under a global context. This book represents a collection of some of the peer-reviewed papers presented at the conference that were published in a Special Issue of Forests.
afforestation --- soil moisture --- precipitation gradient --- restoration strategy --- Loess Plateau --- post-fire hydrology --- source water protection --- drinking-water security --- multi-criteria analysis --- “Forests to Faucets” --- community drinking-water --- compound wildfire-water risk --- land use change --- forests --- ecosystem services --- hydrological modeling --- Mekong --- Cambodia --- native forest --- forest plantation --- shrubland --- grassland --- water provision --- water supply --- land use and land cover change --- NDC --- Chile --- land use change --- SWAT model --- Nenjiang River --- hydrology --- forest --- wetland --- timber harvesting --- forest operations --- nutrient concentrations --- load --- water quality --- water management --- participatory monitoring --- forest watersheds --- social capital --- water governance --- native forests --- forest plantations --- agricultural lands --- catchment management --- dissolved organic matter --- streamside native buffer --- riparian vegetation --- forest and water policy --- sustainability --- climate change --- forest hydrology --- SDGs --- climate change --- forest ecosystem management --- riparian buffer zones --- density management harvest --- aquatic-riparian ecosystems --- connectivity --- heat: moisture index --- Rhyacotriton --- Oregon --- US Pacific Northwest --- forestry --- ecohydrology --- watershed management --- global change --- sustainability
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This book gathers recent international research on the association between aggressive rainfall and soil loss and landscape degradation. Different contributions explore these complex relationships and highlight the importance of the spatial patterns of precipitation intensity on land flow under erosive storms, with the support of observational and modelling data. This is a large and multifaceted area of research of growing importance that outlines the challenge of protecting land from natural hazards. The increase in the number of high temporal resolution rainfall records together with the development of new modelling capabilities has opened up new opportunities for the use of large-scale planning and risk prevention methods. These new perspectives should no longer be considered as an independent research topic, but should, above all, support comprehensive land use planning, which is at the core of environmental decision-making and operations. Textbooks such as this one demonstrate the significance of how hydrological science can enable tangible progress in understanding the complexity of water management and its current and future challenges.
rainfall erosivity --- Central Asia --- GCMs --- soil erosion --- climate change --- raindrop energy --- soil aggregate --- splash distance --- fractal dimension --- Loess Plateau --- erosive rainfall --- parsimonious modeling --- river basin --- soil erosion --- erosion control --- full-scale testing --- runoff --- simulated rainfall --- water quality --- rainfall peak --- morphological characteristics --- runoff --- sediment yield --- rainfall erosivity --- soil erosion --- spatial and temporal pattern --- Mann–Kendall test --- Tibetan Plateau --- erosion control --- laboratory-scale testing --- simulated rainfall --- runoff --- rainfall erosivity --- erosivity density --- climate change --- regional climate models --- quantile regression forests --- Greece --- erosion control --- mulching --- net soil erosion --- raindrop energy --- rainfall erosivity --- runoff --- sediment yield
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