Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings have been used to project the evolution of stratospheric ozone throughout the 21st century. The model-to-model agreement in projected temperature trends is good, and all CCMs predict continued, global mean cooling of the stratosphere over the next 5 decades, increasing from around 0.25 K/decade at 50 hPa to around 1 K/ decade at 1 hPa under the Intergovernmental Panel on Climate Change (IPCC) Special Report on Emissions Scenarios (SRES) A1B scenario. In general, the simulated ozone evolution is mainly determined by decreases in halogen concentrations and continued cooling of the global stratosphere due to increases in greenhouse gases...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings ...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings ...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
Projections of stratospheric ozone from a suite of chemistry-climate models (CCMs) have been analyze...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings ...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings ...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
International audienceThe evolution of stratospheric ozone from 1960 to 2100 is examined in simulati...
The evolution of stratospheric ozone from 1960 to 2100 is examined in simulations from 14 chemistry-...
Projections of stratospheric ozone from a suite of chemistry-climate models (CCMs) have been analyze...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...