The fidelity of the simulated Indian summer monsoon is analysed in the UK Met Office Unified Model Global Ocean Mixed Layer configuration (MetUM-GOML2.0) in terms of its boreal summer mean state and propagation of the boreal summer intraseasonal oscillation (BSISO). The model produces substantial biases in mean June–September precipitation, especially over India, in common with other MetUM configurations. Using a correction technique to constrain the mean seasonal cycle of ocean temperature and salinity, the effects of regional air–sea coupling and atmospheric horizontal resolution are investigated. Introducing coupling in the Indian Ocean degrades the atmospheric basic state compared with prescribing the observed seasonal cycle of sea surf...
The intraseasonal variability (ISV) of the Indian summer monsoon is dominated by a 30–50 day oscilla...
For the first time for CORDEX-South Asia, a high-resolution regional earth system model (ROM) is adop...
The Indian summer monsoon (ISM) simulated over the 1989-2009 period with a new 0.75A degrees ocean-a...
The fidelity of the simulated Indian summer monsoon is analysed in the UK Met Office Unified Model G...
A new high-resolution Regional Earth System Model, namely ROM, has been implemented over CORDEX-SA t...
Boreal summer sub-seasonal variability in the Asian monsoon, otherwise known as the monsoon intra-se...
The roles of air–sea coupling and horizontal resolution in the representation of Indian monsoon low ...
International audienceIn this study, the impact of the ocean-atmosphere coupling on the atmospheric ...
Daily initialized coupled and uncoupled numerical weather prediction (NWP) forecasts from the globa...
The link between realism in simulation of the seasonal mean precipitation and summer tropical intras...
The new HadKPP atmosphere–ocean coupled model is described and then used to determine the effects of...
International audienceThe Indian summer monsoon (ISM) simulated over the 1989–2009 period with a new...
A 150 year-long numerical simulation of present-day climate using the Max-Planck Institute's coupled...
The intraseasonal variability (ISV) of the Indian summer monsoon is dominated by a 30–50 day oscilla...
For the first time for CORDEX-South Asia, a high-resolution regional earth system model (ROM) is adop...
The Indian summer monsoon (ISM) simulated over the 1989-2009 period with a new 0.75A degrees ocean-a...
The fidelity of the simulated Indian summer monsoon is analysed in the UK Met Office Unified Model G...
A new high-resolution Regional Earth System Model, namely ROM, has been implemented over CORDEX-SA t...
Boreal summer sub-seasonal variability in the Asian monsoon, otherwise known as the monsoon intra-se...
The roles of air–sea coupling and horizontal resolution in the representation of Indian monsoon low ...
International audienceIn this study, the impact of the ocean-atmosphere coupling on the atmospheric ...
Daily initialized coupled and uncoupled numerical weather prediction (NWP) forecasts from the globa...
The link between realism in simulation of the seasonal mean precipitation and summer tropical intras...
The new HadKPP atmosphere–ocean coupled model is described and then used to determine the effects of...
International audienceThe Indian summer monsoon (ISM) simulated over the 1989–2009 period with a new...
A 150 year-long numerical simulation of present-day climate using the Max-Planck Institute's coupled...
The intraseasonal variability (ISV) of the Indian summer monsoon is dominated by a 30–50 day oscilla...
For the first time for CORDEX-South Asia, a high-resolution regional earth system model (ROM) is adop...
The Indian summer monsoon (ISM) simulated over the 1989-2009 period with a new 0.75A degrees ocean-a...