The simulated influence of Arctic sea ice on the variability of the North Atlantic climate is discussed in the context of a global coupled ice–ocean–atmosphere model. This coupled system incorporates a general circulation ocean model, an atmospheric energy moisture balance model, and a dynamic–thermodynamic sea ice model. Under steady seasonal forcing, an equilibrium solution is obtained with very little variability. To induce variability in the model, daily varying stochastic anomalies are applied to the wind forcing of the Northern Hemisphere sea ice cover. These stochastic anomalies have observed spatial patterns but are random in time. Model simulations are run for 1000 yr from an equilibrium state and the variability in the system is a...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
[1] The response of the thermohaline circulation (THC), as well as the freshwater and heat budgets o...
A 1200-yr unforced control run and future climate change simulations using the Parallel Climate Mode...
Analyses of a 500-yr control integration with the non-flux-adjusted coupled atmosphere–sea ice–ocean...
Low-frequency variability in large scale North Atlantic/Arctic properties like Meridional Overturnin...
The heat and moisture transports by transient eddies in the EMBM are parameterized by diffusion. The...
The Atlantic thermohaline circulation (THC) is an important part of the earth’s climate system. Prev...
A long-term simulation performed with a coarse-resolution, global, atmosphere-ocean-sea-ice model di...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
[1] The response of the thermohaline circulation (THC), as well as the freshwater and heat budgets o...
A 1200-yr unforced control run and future climate change simulations using the Parallel Climate Mode...
Analyses of a 500-yr control integration with the non-flux-adjusted coupled atmosphere–sea ice–ocean...
Low-frequency variability in large scale North Atlantic/Arctic properties like Meridional Overturnin...
The heat and moisture transports by transient eddies in the EMBM are parameterized by diffusion. The...
The Atlantic thermohaline circulation (THC) is an important part of the earth’s climate system. Prev...
A long-term simulation performed with a coarse-resolution, global, atmosphere-ocean-sea-ice model di...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...
International audienceThe IPSL‐CM6‐LR atmosphere‐ocean coupled model exhibits a pronounced multi‐cen...