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Short-Lived Climate Forcers

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Presentation on theme: "Short-Lived Climate Forcers"— Presentation transcript:

1 Short-Lived Climate Forcers
Department of Meteorology Short-Lived Climate Forcers Ideas for a SPARC Activity

2 Motivation SLCFs are currently barely addressed in WCRP
There was a placeholder in the Biogeochemical Cycle Grand Challenge. - ended up being entirely carbon-cycle. Given importance of SLCFs there should be a place for them in WCRP. The most obvious WCRP project is SPARC → SPARC activity?

3 Climate impacts AerChemMIP/PDRMIP CCMI /Aerocom Evaporation / runoff
Emissions CH4 NOX CO VOC NH3 SO2 OCaer BCaer Atmospheric Chemistry & Microphysics Evaporation / runoff ERF ΔCH4 ΔO3 S + N + SOA + OC + BC aerosols Surface Temperature Biosphere Interactions Feedbacks Cloud Interactions Additional ERF ΔBio ΔCH4 ΔCO2 ΔN2O Δclouds Precipitation From Michael Prather AerChemMIP/PDRMIP CCMI /Aerocom

4 Chain of effects Complex chain from SLCF emission to climate response
Decades of research on first two steps Recent individual studies on the rapid and slow responses Few coordinated studies (PDRMIP) There is a community need to coordinate this. Emissions Chemistry transport Composition Absorption scattering Cloud physics Radiative effect Meteorology adjustments Rapid response Climate feedbacks Slow response

5 Science Questions 1) How does the atmosphere adjust to changes in SLCFs, and what is the effect of these rapid adjustments on the ERFs? 2) How does the climate respond to different patterns of these ERFs globally, spatially, temporally temperature, precipitation,…

6 Experimental structure
Shindell and Faluvegi (2009) used GISS slab model ΔF in 4 latitude bands →ΔT in 4 latitude bands 4×4 matrix, 4 species This needs to be updated with range of models and extended beyond temperature to precipitation… Extend the AerChemMIP/PDRMIP protocols Prescribe concentrations, and aerosol radiative properties? by region N. Amer, S. Amer, Europe, S. Asia, E. Asia, Africa or latitude bands? Fixed-SST runs – year simulations Coupled-ocean runs – need years to see signal

7 Timeline HTAP2 PDRMIP AerChemMIP SLCF Activity Design Experiments
Analysis 2017 2018 2019 2020

8 Grand Challenges Societal benefits
Clouds, circulation and climate sensitivity Some mention of aerosol-cloud interactions in this Carbon feedbacks in the climate system Some mention of short-lived species in biogeochemical cycles Regionality of SLCF climate impacts important for C-cycle Near-term climate prediction SLCFs crucial to near-term climate prediction. Scope for interactions here. Near-term climate change – particularly regional Climate impacts of air quality policies Societal benefits

9 Summary There already exist coordinated projects on the chemistry and physical processing of SLCFs Research into their climate impacts is ready for coordinated activities Rapid adjustments in meteorology to changes in SLCFs Surface temperature (and precipitation) responses to heterogeneous forcing Great opportunity for WCRP/SPARC activity


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