Now showing items 1-7 of 7

  • Fettweis, Xavier; Hofer, Stefan; Séférian, Roland; Amory, Charles; Delhasse, Alison; Doutreloup, Sébastien; Kittel, Christoph; Lang, Charlotte; Van Bever, Joris; Veillon, Florent; Irvine, Peter J. (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2021)
    The Greenland Ice Sheet (GrIS) will be losing mass at an accelerating pace throughout the 21st century, with a direct link between anthropogenic greenhouse gas emissions and the magnitude of Greenland mass loss. Currently, ...
  • Kravitz, Ben; Rasch, Philip J.; Forster, Piers M.; Andrews, Timothy; Cole, Jason N.S.; Irvine, Peter J.; Ji, Duoying; Kristjansson, Jon Egill; Moore, John C.; Muri, Helene Østlie; Niemeier, Ulrike; Robock, Alan; Singh, Balwinder; Tilmes, Simone; Watanabe, Shingo; Yoon, Jin-Ho (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2013)
    [1] Analysis of surface and atmospheric energy budget responses to CO2 and solar forcings can be used to reveal mechanisms of change in the hydrological cycle. We apply this energetic perspective to output from 11 fully ...
  • Tilmes, Simone; Fasullo, John; Lamarque, Jean-Francois; Marsh, Daniel R.; Mills, Michael G L; Alterskjær, Kari; Muri, Helene; Kristjansson, Jon Egill; Boucher, Olivier; Schulz, Michael; Cole, Jason N.S.; Curry, Charles L.; Jones, Andy; Haywood, Jim M.; Irvine, Peter J.; Ji, Duoying; Moore, John C.; Karam, Diana Bou; Kravitz, Ben; Rasch, Philip J.; Singh, Baldwinder; Yoon, Yin-ho; Niemeier, Ulrike; Schmidt, Hauke; Robock, Alan; Yang, Shuting; Watanabe, Shingo (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2013)
    [1] The hydrological impact of enhancing Earth's albedo by solar radiation management is investigated using simulations from 12 Earth System models contributing to the Geoengineering Model Intercomparison Project (GeoMIP). ...
  • Irvine, Peter J.; Boucher, Olivier; Kravitz, Ben; Alterskjær, Kari; Cole, Jason N.S.; Ji, Duoying; Jones, Andy; Lunt, Daniel J.; Moore, John C.; Muri, Helene; Niemeier, Ulrike; Robock, Alan; Singh, Baldwinder; Tilmes, Simone; Watanabe, Shingo; Yang, Shuting; Yoon, Jin-Ho (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2014)
    Climate model studies of the consequences of solar geoengineering are central to evaluating whether such approaches may help to reduce the harmful impacts of global warming. In this study we compare the sunshade solar ...
  • Kravitz, Ben; MacMartin, Douglas G.; Robock, Alan; Rasch, Philip J.; Ricke, Katharine L.; Cole, Jason N.S.; Curry, Charles L.; Irvine, Peter J.; Ji, Duoying; Keith, David W.; Kristjansson, Jon Egill; Moore, John C.; Muri, Helene Østlie; Singh, Balwinder; Tilmes, Simone; Watanabe, Shingo; Yang, Shuting; Yoon, Jin-Ho (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2014)
    Global-scale solar geoengineering is the deliberate modification of the climate system to offset some amount of anthropogenic climate change by reducing the amount of incident solar radiation at the surface. These changes ...
  • Kravitz, Ben; Robock, Alan; Tilmes, Simone; Boucher, Olivier; English, Jason. M.; Irvine, Peter J.; Jones, Andy; Lawrence, Mark G.; MacCracken, Michael; Muri, Helene; Moore, John C.; Niemeier, Ulrike; Phipps, Steven J.; Sillmann, Jana; Storelvmo, Trude; Wang, Hailong; Watanabe, Shingo (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2015)
    We present a suite of new climate model experiment designs for the Geoengineering Model Intercomparison Project (GeoMIP). This set of experiments, named GeoMIP6 (to be consistent with the Coupled Model Intercomparison ...
  • Irvine, Peter J.; Kravitz, Ben; Lawrence, Mark G.; Gerten, Dieter; Caminade, Cyril; Gosling, Simon; Hendy, Erica; Kassie, Belay; Kissling, W. Daniel; Muri, Helene; Oschlies, Andreas; Smith, Steven J. (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2017)
    Despite a growing literature on the climate response to solar geoengineering—proposals to cool the planet by increasing the planetary albedo—there has been little published on the impacts of solar geoengineering on natural ...