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Oliver Angélil

Biographic Data

ID7992785
NAMEOliver Angélil
GIVEN NAMESOliver
FAMILY NAMEAngélil
SIGNATUREANGÉLIL O
AFFILIATIONSARC Centre of Excellence for Climate System Science
ORCID0000-0003-0186-0283
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2017
LATEST PUBLICATION YEAR2019
H-INDEX0
  • Intensification of precipitation extremes in the world’s humid and water-limited regions

    Open Access•Markus G Donat, Oliver Angélil et al.•ARTICLE•Environmental Research Letters•2019

    Changes in precipitation totals and extremes are among the most relevant consequences of climate change, but in particular regional changes remain uncertain. While aggregating over larger regions reduces the noise in time series and typically shows increases in the intensity of precipitation extremes, it has been argued that this may not be the case in water-limited regions. Here we investigate long-term changes in annual precipitation totals and…

  • The influence of internal climate variability on heatwave frequency trends

    Open Access•Sarah Perkins‐Kirkpatrick, S E Perkins-Kirkpatrick et al.•ARTICLE•Environmental Research Letters•2017

    Understanding what drives changes in heatwaves is imperative for all systems impacted by extreme heat. We examine short- (13 yr) and long-term (56 yr) heatwave frequency trends in a 21-member ensemble of a global climate model (Community Earth System Model; CESM), where each member is driven by identical anthropogenic forcings. To estimate changes dominantly due to internal climate variability, trends were calculated in the corresponding pre-indu…

  • Attribution of the July–August 2013 heat event in Central and Eastern China to anthropogenic greenhouse gas emissions

    Open Access•Shuangmei Ma, Tianjun Zhou et al.•ARTICLE•Environmental Research Letters•2017

    In the midsummer of 2013, Central and Eastern China (CEC) was hit by an extraordinary heat event, with the region experiencing the warmest July-August on record. To explore how human-induced greenhouse gas emissions and natural internal variability contributed to this heat event, we compare observed July-August mean surface air temperature with that simulated by climate models. We find that both atmospheric natural variability and anthropogenic f…

No prominent works on this page.

  • The influence of internal climate variability on heatwave frequency trends

    Open Access•Sarah Perkins‐Kirkpatrick, S E Perkins-Kirkpatrick et al.•ARTICLE•Environmental Research Letters•2017

    Understanding what drives changes in heatwaves is imperative for all systems impacted by extreme heat. We examine short- (13 yr) and long-term (56 yr) heatwave frequency trends in a 21-member ensemble of a global climate model (Community Earth System Model; CESM), where each member is driven by identical anthropogenic forcings. To estimate changes dominantly due to internal climate variability, trends were calculated in the corresponding pre-indu…

  • Attribution of the July–August 2013 heat event in Central and Eastern China to anthropogenic greenhouse gas emissions

    Open Access•Shuangmei Ma, Tianjun Zhou et al.•ARTICLE•Environmental Research Letters•2017

    In the midsummer of 2013, Central and Eastern China (CEC) was hit by an extraordinary heat event, with the region experiencing the warmest July-August on record. To explore how human-induced greenhouse gas emissions and natural internal variability contributed to this heat event, we compare observed July-August mean surface air temperature with that simulated by climate models. We find that both atmospheric natural variability and anthropogenic f…

  • Intensification of precipitation extremes in the world’s humid and water-limited regions

    Open Access•Markus G Donat, Oliver Angélil et al.•ARTICLE•Environmental Research Letters•2019

    Changes in precipitation totals and extremes are among the most relevant consequences of climate change, but in particular regional changes remain uncertain. While aggregating over larger regions reduces the noise in time series and typically shows increases in the intensity of precipitation extremes, it has been argued that this may not be the case in water-limited regions. Here we investigate long-term changes in annual precipitation totals and…

Climate change (3 works) · Climate variability and models (3 works) · Climatology (3 works) · Environmental Science (3 works) · Geology (3 works) · Atmospheric and Environmental Gas Dynamics (2 works) · Atmospheric sciences (2 works) · Climate model (2 works) · Forcing (mathematics (2 works) · Anomaly (physics (1 works)

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