Abstract Based on 10 pairs of atmospheric general circulation models from the Coupled Model Intercomparison Project Phase 6 High Resolution Model Intercomparison Project, we find that high‐resolution models (HRMs, ∼50 km) perform better than low‐resolution models (LRMs, ∼100 km) in simulating the East Asian summer monsoon (EASM) rain belt. We attribute the increased rainfall to enhanced vertical advection of water vapor in the HRMs which is mainly contributed by enhanced vertical motion. Based on moist static energy analyses, the stronger vertical motion in the HRMSs is mainly balanced by enhanced net energy flux into the atmosphere column in the “Meiyu‐Baiu” (MB) region due to the increase of air‐sea turbulent latent heat fluxes along the ...
The East Asian summer monsoon (EASM) circulation and summer rainfall over East China have experience...
International audienceThe mid-Piacenzian (~3.3-3.0 Ma), which was characterized by high pCO 2 (~400 ...
International audienceThe mid-Piacenzian (~3.3-3.0 Ma), which was characterized by high pCO 2 (~400 ...
Atmospheric heat and moisture over land are fundamental drivers of monsoon circulations. However, th...
The East Asian summer monsoon (EASM) is unique among monsoon systems that it features meridional evo...
The performance of the regional atmosphere-ocean coupled model ROM (REMO-OASIS-MPIOM) is compared wi...
In this study, an improved planetary boundary layer (PBL) scheme (YSU scheme) is implemented in a re...
In this study, the severe flood case over East Asia during the 1998 summer was simulated using a reg...
In this study, the relationship between the ability to simulate air-sea interactions over the wester...
Impacts of coupled air-sea interaction and large-scale nudging were examined through regional climat...
The decadal-centennial variations of East Asian summer monsoon (EASM) and the associated rainfall ch...
The decadal-centennial variations of East Asian summer monsoon (EASM) and the associated rainfall ch...
The early summer regional climate change of the East Asian summer monsoon (EASM) is investigated in ...
In this paper, a regional climate model (Seoul National University Regional Climate Model (SNURCM)) ...
circulation and summer rainfall over East China have experienced large decadal changes during the la...
The East Asian summer monsoon (EASM) circulation and summer rainfall over East China have experience...
International audienceThe mid-Piacenzian (~3.3-3.0 Ma), which was characterized by high pCO 2 (~400 ...
International audienceThe mid-Piacenzian (~3.3-3.0 Ma), which was characterized by high pCO 2 (~400 ...
Atmospheric heat and moisture over land are fundamental drivers of monsoon circulations. However, th...
The East Asian summer monsoon (EASM) is unique among monsoon systems that it features meridional evo...
The performance of the regional atmosphere-ocean coupled model ROM (REMO-OASIS-MPIOM) is compared wi...
In this study, an improved planetary boundary layer (PBL) scheme (YSU scheme) is implemented in a re...
In this study, the severe flood case over East Asia during the 1998 summer was simulated using a reg...
In this study, the relationship between the ability to simulate air-sea interactions over the wester...
Impacts of coupled air-sea interaction and large-scale nudging were examined through regional climat...
The decadal-centennial variations of East Asian summer monsoon (EASM) and the associated rainfall ch...
The decadal-centennial variations of East Asian summer monsoon (EASM) and the associated rainfall ch...
The early summer regional climate change of the East Asian summer monsoon (EASM) is investigated in ...
In this paper, a regional climate model (Seoul National University Regional Climate Model (SNURCM)) ...
circulation and summer rainfall over East China have experienced large decadal changes during the la...
The East Asian summer monsoon (EASM) circulation and summer rainfall over East China have experience...
International audienceThe mid-Piacenzian (~3.3-3.0 Ma), which was characterized by high pCO 2 (~400 ...
International audienceThe mid-Piacenzian (~3.3-3.0 Ma), which was characterized by high pCO 2 (~400 ...