Climate models simulate a strong land–ocean contrast in the response of near-surface relative humidity to global warming; relative humidity tends to increase slightly over oceans but decrease substantially over land. Surface energy balance arguments have been used to understand the response over ocean but are difficult to apply over more complex land surfaces. Here, a conceptual box model is introduced, involving atmospheric moisture transport between the land and ocean and surface evapotranspiration, to investigate the decreases in land relative humidity as the climate warms. The box model is applied to simulations with idealized and full-complexity (CMIP5) general circulation models, and it is found to capture many of the features of the ...
23 Pags.- 13 Figs. © Author(s) 2018. This work is distributed under the Creative Commons Attributi...
Climate model simulations consistently show that surface temperature over land increases more rapidl...
The response of the terrestrial water cycle to global warming is central to issues including water r...
Climate models simulate a strong land–ocean contrast in the response of near-surface relative humidi...
Climate models simulate a strong land–ocean contrast in the response of near-surface relative humidi...
Simulations of warming climates with coupled climate models exhibit strong land‐ocean contrasts in c...
In recent decades, the land surface has warmed substantially more than the ocean surface, and relati...
Thesis: Ph. D. in Climate Physics and Chemistry, Massachusetts Institute of Technology, Department o...
Simulations with climate models show a land–ocean contrast in the response of P − E (precipitation m...
Abstract The dryness of terrestrial climate can be measured by the ratio of annual precipitation (P)...
The land/sea warming contrast is a phenomenon of both equilibrium and transient simulations of clima...
International audienceProjected changes in near-surface relative humidity (RH) remain highly model-d...
Relative humidity (RH) over land has declined steeply since 2000. This drying is broadly consistent ...
Simulations with climate models show a land-ocean contrast in the response of P-E (precipitation min...
Surface temperatures increase at a greater rate over land than ocean in simulations and observations...
23 Pags.- 13 Figs. © Author(s) 2018. This work is distributed under the Creative Commons Attributi...
Climate model simulations consistently show that surface temperature over land increases more rapidl...
The response of the terrestrial water cycle to global warming is central to issues including water r...
Climate models simulate a strong land–ocean contrast in the response of near-surface relative humidi...
Climate models simulate a strong land–ocean contrast in the response of near-surface relative humidi...
Simulations of warming climates with coupled climate models exhibit strong land‐ocean contrasts in c...
In recent decades, the land surface has warmed substantially more than the ocean surface, and relati...
Thesis: Ph. D. in Climate Physics and Chemistry, Massachusetts Institute of Technology, Department o...
Simulations with climate models show a land–ocean contrast in the response of P − E (precipitation m...
Abstract The dryness of terrestrial climate can be measured by the ratio of annual precipitation (P)...
The land/sea warming contrast is a phenomenon of both equilibrium and transient simulations of clima...
International audienceProjected changes in near-surface relative humidity (RH) remain highly model-d...
Relative humidity (RH) over land has declined steeply since 2000. This drying is broadly consistent ...
Simulations with climate models show a land-ocean contrast in the response of P-E (precipitation min...
Surface temperatures increase at a greater rate over land than ocean in simulations and observations...
23 Pags.- 13 Figs. © Author(s) 2018. This work is distributed under the Creative Commons Attributi...
Climate model simulations consistently show that surface temperature over land increases more rapidl...
The response of the terrestrial water cycle to global warming is central to issues including water r...