The future of hydrology: An evolving science for a changing world
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A decade of Predictions in Ungauged Basins (PUB)—a review“Panta Rhei—Everything Flows”: Change in hydrology and society—The IAHS Scientific Decade 2013–2022Interdisciplinary Collaboration between Natural and Social Sciences - Status and Trends Exemplified in Groundwater Research.Regulation of snow-fed rivers affects flow regimes more than climate changeModel-based analysis of the influence of catchment properties on hydrologic partitioning across five mountain headwater subcatchments.Water level fluctuations in a tropical reservoir: the impact of sediment drying, aquatic macrophyte dieback, and oxygen availability on phosphorus mobilization.Unexpected release of phosphate and organic carbon to streams linked to declining nitrogen depositions.Patterns of change in high frequency precipitation variability over North America.A New Assessment Framework for Transience in Hydrogeological Systems.Designing flows to resolve human and environmental water needs in a dam-regulated river.Forest ecohydrological research in the 21st century: what are the critical needs?Hydrological response to changing climate conditions: Spatial streamflow variability in the boreal regionHydroclimatic and hydrochemical controls on Plecoptera diversity and distribution in northern freshwater ecosystemsSpecific discharge variability in a boreal landscapeDisturbance hydrology: challenges and opportunitiesContinental U.S. streamflow trends from 1940 to 2009 and their relationships with watershed spatial characteristicsSocio-hydrology: A new science of people and waterTime scale interactions and the coevolution of humans and waterProgress in socio-hydrology: a meta-analysis of challenges and opportunitiesEvaluating Water Supply Risk in the Middle and Lower Reaches of Hanjiang River Basin Based on an Integrated Optimal Water Resources Allocation ModelTracing Temporal Changes of Model Parameters in Rainfall-Runoff Modeling via a Real-Time Data AssimilationThe Court of Miracles of Hydrology: can failure stories contribute to hydrological science?Panta Rhei 2013–2015: global perspectives on hydrology, society and changeA coupled human-natural systems analysis of irrigated agriculture under changing climateA framework for testing the ability of models to project climate change and its impactsRecent progresses in incorporating human land-water management into global land surface models toward their integration into Earth system modelsFunctional model of water balance variability at the catchment scale: 2. Elasticity of fast and slow runoff components to precipitation change in the continental United StatesPatterns, puzzles and people: implementing hydrologic synthesisSpatial scale dependence of ecohydrologically mediated water balance partitioning: A synthesis framework for catchment ecohydrologyWater cycle dynamics in a changing environment: Improving predictability through synthesisA one-parameter Budyko model for water balance captures emergent behavior in darwinian hydrologic modelsQuantifying the relative contribution of the climate and direct human impacts on mean annual streamflow in the contiguous United StatesDrought in the AnthropocenePredicting the resilience and recovery of aquatic systems: A framework for model evolution within environmental observatoriesThe Growth of Hydrological Understanding: Technologies, Ideas, and Societal Needs Shape the FieldiSAW: Integrating Structure, Actors, and Water to study socio-hydro-ecological systemsWhich catchment characteristics control the temporal dependence structure of daily river flows?Correlation and causation in tree-ring-based reconstruction of paleohydrology in cold semiarid regionsA vulnerability driven approach to identify adverse climate and land use change combinations for critical hydrologic indicator thresholds: Application to a watershed in Pennsylvania, USAHydrological impacts of climate change in gauged and ungauged watersheds of the Olifants basin: a trading-space-for-time approach
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The future of hydrology: An evolving science for a changing world
description
im Mai 2010 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в травні 2010
@uk
name
The future of hydrology: An evolving science for a changing world
@en
The future of hydrology: An evolving science for a changing world
@nl
type
label
The future of hydrology: An evolving science for a changing world
@en
The future of hydrology: An evolving science for a changing world
@nl
prefLabel
The future of hydrology: An evolving science for a changing world
@en
The future of hydrology: An evolving science for a changing world
@nl
P2093
P2860
P50
P356
P1476
The future of hydrology: An evolving science for a changing world
@en
P2093
Brian L. McGlynn
Ciaran J. Harman
Jennifer S. Wilson
P. Suresh C. Rao
Peter A. Troch
P2860
P356
10.1029/2009WR008906
P577
2010-05-01T00:00:00Z