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Chantal Donnelly

Biographic Data

ID6015366
NAMEChantal Donnelly
GIVEN NAMESChantal
FAMILY NAMEDonnelly
SIGNATUREDONNELLY C
AFFILIATIONSSwedish Meteorological and Hydrological Institute
ORCID0000-0002-0086-4453
VERIFIEDYes
TOTAL WORKS6
TOTAL CITATIONS26
AUTHOR COUNT6
EDITOR COUNT0
FIRST PUBLICATION YEAR2012
LATEST PUBLICATION YEAR2025
H-INDEX3
  • Digital Health Solutions & innovation - exploration of Robotic Process Automation (RPA)

    Open Access•Chantal Donnelly, Sarah Crehan et al.•ARTICLE•International Journal of…•2025

    Introduction - What we did The team was tasked with the following: Identify top 10 administratively time consuming processes currently in place in CHN which could be supported by robotic process automation (RPA). Deep dive into 3 processes. Provide recommendations including benefit analysis of implementing RPA. Outcomes and what was achieved: The team successfully identified 3 processes, which could be suitable for RPA and where efficiency and ac…

  • Future socioeconomic conditions may have a larger impact than climate change on nutrient loads to the Baltic Sea

    Open Access•Alena Bartosova, René Capell et al.•ARTICLE•AMBIO•2019•Cited by: 9•References: 33

    The Baltic Sea is suffering from eutrophication caused by nutrient discharges from land to sea, and these loads might change in a changing climate. We show that the impact from climate change by mid-century is probably less than the direct impact of changing socioeconomic factors such as land use, agricultural practices, atmospheric deposition, and wastewater emissions. We compare results from dynamic modelling of nutrient loads to the Baltic Sea…

  • Sources of uncertainty in hydrological climate impact assessment

    Open Access•Fred F Hattermann, Thomas Vetter et al.•ARTICLE•Environmental Research Letters•2017

    Climate change impacts on water availability and hydrological extremes are major concerns as regards the Sustainable Development Goals. Impacts on hydrology are normally investigated as part of a modelling chain, in which climate projections from multiple climate models are used as inputs to multiple impact models, under different greenhouse gas emissions scenarios, which are resulting in different amounts of global temperature rise. While the go…

  • Ensemble Modeling of the Baltic Sea Ecosystem to Provide Scenarios for Management

    Open Access•H E Markus Meier, Helén C Andersson et al.•ARTICLE•AMBIO•2014•Cited by: 5•References: 34

    We present a multi-model ensemble study for the Baltic Sea, and investigate the combined impact of changing climate, external nutrient supply, and fisheries on the marine ecosystem. The applied regional climate system model contains state-of-the-art component models for the atmosphere, sea ice, ocean, land surface, terrestrial and marine biogeochemistry, and marine food-web. Time-dependent scenario simulations for the period 1960-2100 are perform…

  • Comparing reconstructed past variations and future projections of the Baltic Sea ecosystem—first results from multi-model ensemble simulations

    Open Access•H E Markus Meier, Helén C Andersson et al.•ARTICLE•Environmental Research Letters•2012

    Multi-model ensemble simulations for the marine biogeochemistry and food web of the Baltic Sea were performed for the period 1850–2098, and projected changes in the future climate were compared with the past climate environment. For the past period 1850–2006, atmospheric, hydrological and nutrient forcings were reconstructed, based on historical measurements. For the future period 1961–2098, scenario simulations were driven by regionalized global…

  • Climate Change Impact on Riverine Nutrient Load and Land-Based Remedial Measures of the Baltic Sea Action Plan

    Open Access•Berit Arheimer, Joel Dahné et al.•ARTICLE•AMBIO•2012•Cited by: 12•References: 16

  • Climate Change Impact on Riverine Nutrient Load and Land-Based Remedial Measures of the Baltic Sea Action Plan

    Open Access•Berit Arheimer, Joel Dahné et al.•ARTICLE•AMBIO•2012•Cited by: 12•References: 16

  • Future socioeconomic conditions may have a larger impact than climate change on nutrient loads to the Baltic Sea

    Open Access•Alena Bartosova, René Capell et al.•ARTICLE•AMBIO•2019•Cited by: 9•References: 33

    The Baltic Sea is suffering from eutrophication caused by nutrient discharges from land to sea, and these loads might change in a changing climate. We show that the impact from climate change by mid-century is probably less than the direct impact of changing socioeconomic factors such as land use, agricultural practices, atmospheric deposition, and wastewater emissions. We compare results from dynamic modelling of nutrient loads to the Baltic Sea…

  • Ensemble Modeling of the Baltic Sea Ecosystem to Provide Scenarios for Management

    Open Access•H E Markus Meier, Helén C Andersson et al.•ARTICLE•AMBIO•2014•Cited by: 5•References: 34

    We present a multi-model ensemble study for the Baltic Sea, and investigate the combined impact of changing climate, external nutrient supply, and fisheries on the marine ecosystem. The applied regional climate system model contains state-of-the-art component models for the atmosphere, sea ice, ocean, land surface, terrestrial and marine biogeochemistry, and marine food-web. Time-dependent scenario simulations for the period 1960-2100 are perform…

  • Comparing reconstructed past variations and future projections of the Baltic Sea ecosystem—first results from multi-model ensemble simulations

    Open Access•H E Markus Meier, Helén C Andersson et al.•ARTICLE•Environmental Research Letters•2012

    Multi-model ensemble simulations for the marine biogeochemistry and food web of the Baltic Sea were performed for the period 1850–2098, and projected changes in the future climate were compared with the past climate environment. For the past period 1850–2006, atmospheric, hydrological and nutrient forcings were reconstructed, based on historical measurements. For the future period 1961–2098, scenario simulations were driven by regionalized global…

  • Climate Change Impact on Riverine Nutrient Load and Land-Based Remedial Measures of the Baltic Sea Action Plan

    Open Access•Berit Arheimer, Joel Dahné et al.•ARTICLE•AMBIO•2012•Cited by: 12•References: 16

  • Ensemble Modeling of the Baltic Sea Ecosystem to Provide Scenarios for Management

    Open Access•H E Markus Meier, Helén C Andersson et al.•ARTICLE•AMBIO•2014•Cited by: 5•References: 34

    We present a multi-model ensemble study for the Baltic Sea, and investigate the combined impact of changing climate, external nutrient supply, and fisheries on the marine ecosystem. The applied regional climate system model contains state-of-the-art component models for the atmosphere, sea ice, ocean, land surface, terrestrial and marine biogeochemistry, and marine food-web. Time-dependent scenario simulations for the period 1960-2100 are perform…

  • Sources of uncertainty in hydrological climate impact assessment

    Open Access•Fred F Hattermann, Thomas Vetter et al.•ARTICLE•Environmental Research Letters•2017

    Climate change impacts on water availability and hydrological extremes are major concerns as regards the Sustainable Development Goals. Impacts on hydrology are normally investigated as part of a modelling chain, in which climate projections from multiple climate models are used as inputs to multiple impact models, under different greenhouse gas emissions scenarios, which are resulting in different amounts of global temperature rise. While the go…

  • Future socioeconomic conditions may have a larger impact than climate change on nutrient loads to the Baltic Sea

    Open Access•Alena Bartosova, René Capell et al.•ARTICLE•AMBIO•2019•Cited by: 9•References: 33

    The Baltic Sea is suffering from eutrophication caused by nutrient discharges from land to sea, and these loads might change in a changing climate. We show that the impact from climate change by mid-century is probably less than the direct impact of changing socioeconomic factors such as land use, agricultural practices, atmospheric deposition, and wastewater emissions. We compare results from dynamic modelling of nutrient loads to the Baltic Sea…

  • Digital Health Solutions & innovation - exploration of Robotic Process Automation (RPA)

    Open Access•Chantal Donnelly, Sarah Crehan et al.•ARTICLE•International Journal of…•2025

    Introduction - What we did The team was tasked with the following: Identify top 10 administratively time consuming processes currently in place in CHN which could be supported by robotic process automation (RPA). Deep dive into 3 processes. Provide recommendations including benefit analysis of implementing RPA. Outcomes and what was achieved: The team successfully identified 3 processes, which could be suitable for RPA and where efficiency and ac…

Ecology (5 works) · Environmental Science (5 works) · Baltic sea (4 works) · Climate change (4 works) · Climatology (4 works) · Oceanography (4 works) · Ecology (3 works) · Geography (3 works) · Geology (3 works) · Marine and coastal ecosystems (3 works)

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