Saltar al contenido principal

ETHNOS_APP

Inicio • Búsqueda • Revistas • Lista 0

The potential for snow to supply human water demand in the present and future

Datos Bibliográficos

ID15549566
AutoresJustin S Mankin (0000-0003-2520-4555, Lamont-Doherty Earth Observatory, autor de correspondencia), Daniel Viviroli (0000-0002-1214-8657, University of Zurich, autor de correspondencia), Deepti Singh (0000-0001-5736-8699, Stanford University, autor de correspondencia), Arjen Y Hoekstra (0000-0002-4769-5239, University of Twente, autor de correspondencia), Noah S Diffenbaugh (0000-0002-8856-4964, Palo Alto Institute, autor de correspondencia)
Año2015
Volumen10
Número11
Páginas114016-114016
Fecha de publicación2015-11-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaEnvironmental Research Letters (JOURNAL)
Identificadores de la revistaISSN: 1748-9326 • E-ISSN: 1748-9326
EditorialIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/10/11/114016
OpenAlexW2171761316
IdiomaEN
Citas recibidas13
Referencias citadas45

Runoff from snowmelt is regarded as a vital water source for people and ecosystems throughout the Northern Hemisphere (NH). Numerous studies point to the threat global warming poses to the timing and magnitude of snow accumulation and melt. But analyses focused on snow supply do not show where changes to snowmelt runoff are likely to present the most pressing adaptation challenges, given sub-annual patterns of human water consumption and water availability from rainfall. We identify the NH basins where present spring and summer snowmelt has the greatest potential to supply the human water demand that would otherwise be unmet by instantaneous rainfall runoff. Using a multi-model ensemble of climate change projections, we find that these basins—which together have a present population of ∼2 billion people—are exposed to a 67% risk of decreased snow supply this coming century. Further, in the multi-model mean, 68 basins (with a present population of >300 million people) transition from having sufficient rainfall runoff to meet all present human water demand to having insufficient rainfall runoff. However, internal climate variability creates irreducible uncertainty in the projected future trends in snow resource potential, with about 90% of snow-sensitive basins showing potential for either increases or decreases over the near-term decades. Our results emphasize the importance of snow for fulfilling human water demand in many NH basins, and highlight the need to account for the full range of internal climate variability in developing robust climate risk management decisions

Climate change · Geography · Global warming · Hydrology (agriculture · Meteorology · Population · Snow · Snowmelt · Surface runoff · Water resources · Water supply · Climate change and permafrost · Cryospheric studies and observations · Environmental Science · Hydrology and Watershed Management Studies · Ecology · Environmental Engineering · Geology

  • Evaluating cross-sectoral impacts of climate change and adaptations on the energy-water nexus

    Open Access•Julia Szinai, Ranjit Deshmukh et al.•Environmental Research Letters•2020

  • Influence of internal variability on population exposure to hydroclimatic changes

    Open Access•Justin S Mankin, Daniel Viviroli et al.•Environmental Research Letters•2017

  • A role for water markets in enhancing water security in the western United States

    Open Access•Elizabeth A Koebele, Loretta Singletary et al.•Water Policy•2022

  • Increasing dependence of lowland populations on mountain water resources

    Open Access•Daniel Viviroli, Matti Kummu et al.•Nature Sustainability•2020

  • Controlling Factors and Characteristics of Peak Runoff in an Alpine Headwater Under the Asian Monsoon Climate

    Open Access•Koichi Sakakibara, Keisuke Suzuki•Mountain Research and Development•2022

  • Snowpack signals in North American tree rings

    Open Access•Bethany Coulthard, Bethany L Coulthard et al.•Environmental Research Letters•2020

  • Seasonal variability in the global relevance of mountains to satisfy lowland water demand

    Open Access•Sarah Hanus, Peter Burek et al.•Environmental Research Letters•2024

  • Testing the recent snow drought as an analog for climate warming sensitivity of Cascades snowpacks

    Open Access•Matthew G Cooper, A W Nolin et al.•Environmental Research Letters•2016

  • From dwindling ice to headwater lakes

    Open Access•Daniel Farinotti, Alberto Pistocchi et al.•Environmental Research Letters•2016

  • Global competing water uses for food and energy

    Open Access•Yue Qin•Environmental Research Letters•2021

  • Different sensitivities of snowpacks to warming in Mediterranean climate mountain areas

    Open Access•J I López-Moreno, Simon Gascoin et al.•Environmental Research Letters•2017

  • Contrasting warming and drought in snowmelt-dominated agricultural basins

    Open Access•James M Gilbert, R M Maxwell•Environmental Research Letters•2018

  • The signature of internal variability in the terrestrial carbon cycle

    Open Access•Gordon B Bonan, Danica Lombardozzi et al.•Environmental Research Letters•2020

  • Stationarity Is Dead

    Open Access•P C D Milly, Julio L Betancourt et al.•Science•2008

  • Global Monthly Water Scarcity

    Open Access•Arjen Y Hoekstra, Mesfin M Mekonnen et al.•PLoS ONE•2012

  • Investigating soil moisture–climate interactions in a changing climate

    Open Access•Sonia I Seneviratne, Thierry Corti et al.•Earth-Science Reviews•2010

  • The Community Earth System Model (Cesm) Large Ensemble Project

    Open Access•Jennifer E Kay, Clara Deser et al.•Bulletin of the American…•2015

  • Warming and Earlier Spring Increase Western U.S. Forest Wildfire Activity

    Open Access•A L Westerling, Hugo G Hidalgo et al.•Science•2006

  • Managing the Risk of Uncertain Threshold Responses

    Open Access•Robert J Lempert, Myles T Collins•Risk Analysis•2007

  • The Global Land Data Assimilation System

    Matthew Rodell, Paul R Houser et al.•Bulletin of the American…•2004

  • Uncertainty in climate change projections

    Open Access•Clara Deser, Adam Phillips et al.•Climate Dynamics•2012

  • Mountain pine beetle and forest carbon feedback to climate change

    Open Access•Werner A Kurz, Caren C Dymond et al.•Nature•2008

  • The water footprint of humanity

    Open Access•Arjen Y Hoekstra, Mesfin M Mekonnen•Proceedings of the National…•2012

  • Mountains of the world, water towers for humanity

    Open Access•Daniel Viviroli, Hans H Dürr et al.•Water Resources Research•2007

  • Potential impacts of a warming climate on water availability in snow-dominated regions

    Open Access•T P Barnett, J C Adams et al.•Nature•2005

  • RCP 8.5—A scenario of comparatively high greenhouse gas emissions

    Open Access•Keywan Riahi, Shilpa Rao et al.•Climatic Change•2011

Obras citantes distintas13
Citas por año1,3
Intervalo de citas2016 - 2024 (9)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 13
Ethnos_APP • Proyecto Open Source • Licencia MIT • Frontend v2.0.0 • Privacidad y Cookies • Documentación de la API: api.ethnos.app/docs • Código de la API: GitHub • DOI: 10.5281/zenodo.17049435 • Código del Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae