Hamburg atmospheric general circulation model ECHAM3 at T106 resolution (1.125' lat.Aon.) has considerable skill in reproducing the observed seasonal reversal of mean sea level pressure, the location of the summer heat low as well as the position of the monsoon trough over the Indian subcontinent. The present-day climate and its seasonal cycle are realistically simulated by the model over this region. The model simulates the structure, intensity, frequency, movement and lifetime of monsoon depressions remarkably well. The number of monsoon depressions/storms simulated by the model in a year ranged from 5 to 12 with an average frequency of 8.4 yr-', not significantly different from the observed climatology. The model also simulates th...
97-103Using a General Circulation Model (GCM), the role of seasonal cycle surface boundary condition...
A suite of Regional Climate Model (RegCM) experiments are performed over south Asia to examine the s...
The potential predictability of the Indian summer monsoon due to slowly varying sea surface temperat...
The Hamburg atmospheric general circulation model ECHAM3 at T106 resolution (1.125* lat./lon.) has c...
The monsoon depressions that form over India during the summer are analyzed using simulations from ...
This paper discusses the simulations of Indian summer monsoon (ISM) using a high-resolution National...
A 150 year-long numerical simulation of present-day climate using the Max-Planck institute's coupled...
The paper presents the results of simulation experiments aimed at predicting the characteristic feat...
We assessed the present and future climatologies of mean summer monsoon over South Asia using a high...
The paper is devoted to examine the ability of a high-resolution National Center for Environmental P...
The regional climate model HIRHAM has been applied over the Asian continent from 0°N to 50°N and 42°...
South Asian summer monsoon precipitation and its variability are examined from the outputs of the co...
Monsoon depressions (MDs) are synoptic-scale storms that exist embedded within the planetary-scale s...
The performance of ECHAM5 atmospheric general circulation model (AGCM) is evaluated to simulate the ...
The performance of ECHAM5 atmospheric general circulation model (AGCM) is evaluated to simulate the ...
97-103Using a General Circulation Model (GCM), the role of seasonal cycle surface boundary condition...
A suite of Regional Climate Model (RegCM) experiments are performed over south Asia to examine the s...
The potential predictability of the Indian summer monsoon due to slowly varying sea surface temperat...
The Hamburg atmospheric general circulation model ECHAM3 at T106 resolution (1.125* lat./lon.) has c...
The monsoon depressions that form over India during the summer are analyzed using simulations from ...
This paper discusses the simulations of Indian summer monsoon (ISM) using a high-resolution National...
A 150 year-long numerical simulation of present-day climate using the Max-Planck institute's coupled...
The paper presents the results of simulation experiments aimed at predicting the characteristic feat...
We assessed the present and future climatologies of mean summer monsoon over South Asia using a high...
The paper is devoted to examine the ability of a high-resolution National Center for Environmental P...
The regional climate model HIRHAM has been applied over the Asian continent from 0°N to 50°N and 42°...
South Asian summer monsoon precipitation and its variability are examined from the outputs of the co...
Monsoon depressions (MDs) are synoptic-scale storms that exist embedded within the planetary-scale s...
The performance of ECHAM5 atmospheric general circulation model (AGCM) is evaluated to simulate the ...
The performance of ECHAM5 atmospheric general circulation model (AGCM) is evaluated to simulate the ...
97-103Using a General Circulation Model (GCM), the role of seasonal cycle surface boundary condition...
A suite of Regional Climate Model (RegCM) experiments are performed over south Asia to examine the s...
The potential predictability of the Indian summer monsoon due to slowly varying sea surface temperat...