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Laura J Wilcox

Dados Biográficos

ID7997459
NOMELaura J Wilcox
PRENOMESLaura J
SOBRENOMEWilcox
ASSINATURAWILCOX L J
AFILIAÇÕESNational Centre for Atmospheric Science
ORCID0000-0001-5691-1493
VERIFICADOSim
TOTAL DE OBRAS5
TOTAL DE CITAÇÕES0
TOTAL COMO AUTOR5
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2013
ANO MAIS RECENTE DE PUBLICAÇÃO2024
ÍNDICE H0
  • An uncertain future change in aridity over the tropics

    Open Access•Paul‐Arthur Monerie, Robin Chadwick et al.•ARTICLE•Environmental Research Letters•2024

    An ensemble of climate models from phase six of the Coupled Model Intercomparison Project shows that temperature and potential evapotranspiration (PET) are projected to increase globally towards the end of the 21st century. However, climate models show a spatially heterogeneous change in precipitation over the tropics. Consequently, future changes in aridity (a measure of water availability) are complex and location-dependent. We assess future ch…

  • The contribution of global aviation to anthropogenic climate forcing for 2000 to 2018

    Open Access•David S Lee, D W Fahey et al.•ARTICLE•Atmospheric Environment (1967)•2021

  • Nonlinear response of Asian summer monsoon precipitation to emission reductions in South and East Asia

    Open Access•Ross Herbert, Laura J Wilcox et al.•ARTICLE•Environmental Research Letters•2021

    Anthropogenic aerosols over South and East Asia currently have a stronger impact on the Asian summer monsoon (ASM) than greenhouse gas emissions, yet projected aerosol emission changes in these regions are subject to considerable uncertainties such as timescale, location, or emission type. We use a circulation/climate model with idealised aerosol distributions to demonstrate that the sum of ASM responses to aerosol emission reductions in each reg…

  • Projected near-term changes of temperature extremes in Europe and China under different aerosol emissions

    Open Access•Feifei Luo, Laura J Wilcox et al.•ARTICLE•Environmental Research Letters•2020

    This study assesses near-term future changes in temperature extremes over China and Europe in scenarios with two very different anthropogenic aerosol (AA) pathways from 2016 to 2049: a maximum technically feasible aerosol reduction (MTFR), and a current legislation aerosol scenario (CLE), both with greenhouses gas forcing following RCP 4.5. Simulations with a fully coupled atmosphere-ocean model HadGEM3-GC2 show that there is an increase in hot e…

  • The influence of anthropogenic aerosol on multi-decadal variations of historical global climate

    Open Access•Laura J Wilcox, E J Highwood et al.•ARTICLE•Environmental Research Letters•2013

    Analysis of single forcing runs from CMIP5 (the fifth Coupled Model Intercomparison Project) simulations shows that the mid-twentieth century temperature hiatus, and the coincident decrease in precipitation, is likely to have been influenced strongly by anthropogenic aerosol forcing. Models that include a representation of the indirect effect of aerosol better reproduce inter-decadal variability in historical global-mean near-surface temperatures…

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  • The influence of anthropogenic aerosol on multi-decadal variations of historical global climate

    Open Access•Laura J Wilcox, E J Highwood et al.•ARTICLE•Environmental Research Letters•2013

    Analysis of single forcing runs from CMIP5 (the fifth Coupled Model Intercomparison Project) simulations shows that the mid-twentieth century temperature hiatus, and the coincident decrease in precipitation, is likely to have been influenced strongly by anthropogenic aerosol forcing. Models that include a representation of the indirect effect of aerosol better reproduce inter-decadal variability in historical global-mean near-surface temperatures…

  • Projected near-term changes of temperature extremes in Europe and China under different aerosol emissions

    Open Access•Feifei Luo, Laura J Wilcox et al.•ARTICLE•Environmental Research Letters•2020

    This study assesses near-term future changes in temperature extremes over China and Europe in scenarios with two very different anthropogenic aerosol (AA) pathways from 2016 to 2049: a maximum technically feasible aerosol reduction (MTFR), and a current legislation aerosol scenario (CLE), both with greenhouses gas forcing following RCP 4.5. Simulations with a fully coupled atmosphere-ocean model HadGEM3-GC2 show that there is an increase in hot e…

  • The contribution of global aviation to anthropogenic climate forcing for 2000 to 2018

    Open Access•David S Lee, D W Fahey et al.•ARTICLE•Atmospheric Environment (1967)•2021

  • Nonlinear response of Asian summer monsoon precipitation to emission reductions in South and East Asia

    Open Access•Ross Herbert, Laura J Wilcox et al.•ARTICLE•Environmental Research Letters•2021

    Anthropogenic aerosols over South and East Asia currently have a stronger impact on the Asian summer monsoon (ASM) than greenhouse gas emissions, yet projected aerosol emission changes in these regions are subject to considerable uncertainties such as timescale, location, or emission type. We use a circulation/climate model with idealised aerosol distributions to demonstrate that the sum of ASM responses to aerosol emission reductions in each reg…

  • An uncertain future change in aridity over the tropics

    Open Access•Paul‐Arthur Monerie, Robin Chadwick et al.•ARTICLE•Environmental Research Letters•2024

    An ensemble of climate models from phase six of the Coupled Model Intercomparison Project shows that temperature and potential evapotranspiration (PET) are projected to increase globally towards the end of the 21st century. However, climate models show a spatially heterogeneous change in precipitation over the tropics. Consequently, future changes in aridity (a measure of water availability) are complex and location-dependent. We assess future ch…

Climatology (5 obras) · Environmental Science (5 obras) · Geography (5 obras) · Aerosol (4 obras) · Atmospheric chemistry and aerosols (4 obras) · Atmospheric sciences (4 obras) · Climate variability and models (4 obras) · Geology (4 obras) · Meteorology (4 obras) · Climate change (3 obras)

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