Variability of the Indian Monsoon in the ECHAM3 Model: Sensitivity to Sea Surface Temperature, Soil Moisture, and the Stratospheric Quasi-Biennial Oscillation
Open Access
- 1 August 1998
- journal article
- Published by American Meteorological Society in Journal of Climate
- Vol. 11 (8) , 1837-1858
- https://doi.org/10.1175/1520-0442-11.8.1837
Abstract
The variability of the monsoon is investigated using a set of 90-day forecasts [MONEG (Tropical Ocean Global Atmosphere Monsoon Numerical Experimentation Group) experiments] and a set of AMIP-type (Atmospheric Model Intercomparison Project) long-term simulations of the atmospheric circulation with the ECHAM3 model. The large-scale aspects of the summer monsoon circulation as represented by differences of dynamical quantities between the two extreme years 1987 and 1988 were reproduced well by the model in both kinds of experiments forced with observed sea surface temperature (SST). At the regional scale the difference of precipitation over India during summer 1987 and 1988 was well reproduced by the model in the 90-day forecasts using interannually varying SSTs; however, similarly good results were achieved in forecasts using climatological SSTs. The long-term simulations forced with interannually varying SST at the lower boundary of the atmosphere over a period of 14 years, on the other hand, onl... Abstract The variability of the monsoon is investigated using a set of 90-day forecasts [MONEG (Tropical Ocean Global Atmosphere Monsoon Numerical Experimentation Group) experiments] and a set of AMIP-type (Atmospheric Model Intercomparison Project) long-term simulations of the atmospheric circulation with the ECHAM3 model. The large-scale aspects of the summer monsoon circulation as represented by differences of dynamical quantities between the two extreme years 1987 and 1988 were reproduced well by the model in both kinds of experiments forced with observed sea surface temperature (SST). At the regional scale the difference of precipitation over India during summer 1987 and 1988 was well reproduced by the model in the 90-day forecasts using interannually varying SSTs; however, similarly good results were achieved in forecasts using climatological SSTs. The long-term simulations forced with interannually varying SST at the lower boundary of the atmosphere over a period of 14 years, on the other hand, onl...Keywords
This publication has 29 references indexed in Scilit:
- Relationship of El Niño–Southern Oscillation and Pacific Sea Surface Temperature with Rainfall in Various Regions of the GlobeMonthly Weather Review, 1997
- Climate predictability experiments with a general circulation modelClimate Dynamics, 1996
- The Asian summer monsoon and ENSOQuarterly Journal of the Royal Meteorological Society, 1995
- Validation of Large-Scale Precipitation Fields in General Circulation ModelsPublished by Springer Nature ,1994
- The Hydrological Cycle in the ECHAM3 Simulations of the Atmospheric CirculationPublished by Springer Nature ,1994
- AMIP: The Atmospheric Model Intercomparison ProjectBulletin of the American Meteorological Society, 1992
- Influence of the Stratospheric QBO on ENSO VariabilityJournal of the Meteorological Society of Japan. Ser. II, 1992
- Rainfall variations in the tropics during 1986–1989, as estimated from observations of cloud‐top temperatureJournal of Geophysical Research: Oceans, 1991
- The Effect of Eurasian Snow Cover on Regional and Global Climate VariationsJournal of the Atmospheric Sciences, 1989
- Some simple analytical solutions to the problem of forced equatorial long wavesQuarterly Journal of the Royal Meteorological Society, 1984