Variability of Indian summer monsoon rainfall is examined with respect to variability of surface wind stresses over Indian Ocean. The Indian Ocean region extending from 40°-120° E, and 30° S-25° N, has been divided into 8 homogeneous subregions, viz (1) Arabian Sea (AS), (2) Bay of Bengal (BB), (3) West-equatorial Indian Ocean (WEIO), (4) Central-equatorial Indian Ocean (CEIO), (5) East-equatorial Indian Ocean (EEIO), (6) South-west Indian Ocean (SWIO), (7) South-central Indian Ocean (SCIO), and (8) South-east Indian Ocean (SEIO). The period of study extends for 13 years from 1982-1994. Monthly NCEP surface wind stress data of five months - May through September, have been used in the study. The spatial variability of seasonal and month...
A better understanding of the factors responsible for the variability in Indian summer monsoon rainf...
Three key issues of moisture supply and Indian summer monsoon rainfall (ISMR) variability are discus...
Using QuikScat-based vector wind data for 1999–2003, surface wind stress and turbulent heat (Q) have...
300-314This paper investigates the regional characteristics of the surface fields in the tropical ...
The influence of the surface marine meteorological parameters and air-sea fluxes of heat and moistur...
The interannual variability of the monthly mean upper layer thickness for the central Arabian Sea (5...
Regional characteristics of Indian Summer Monsoon Rainfall (ISMR) during dry and wet monsoon years a...
With an objective to understand the influence of surface marine meteorological parameters in relatio...
The combined influence of tropical Indian Ocean (TIO) and Pacific Ocean (TPO) sea surface temperatur...
The inter-annual variability of the Indian summer monsoon rainfall (ISMR) has been examined in assoc...
The present study examines the long term trend in sea surface temperatures (SSTs) of the Arabian Sea...
The Indian summer monsoon (ISM) is one of the main components of the Asian summer monsoon. It is wel...
The study is undertaken with an objective to investigate the linkage between air-sea fluxes in the I...
The Indo-Pacific Ocean (i.e. region between 30E and 150E) has been experiencing a spread warming sin...
We examine the relationship between the state of the equatorial Indian Ocean, ENSO, and the Indian s...
A better understanding of the factors responsible for the variability in Indian summer monsoon rainf...
Three key issues of moisture supply and Indian summer monsoon rainfall (ISMR) variability are discus...
Using QuikScat-based vector wind data for 1999–2003, surface wind stress and turbulent heat (Q) have...
300-314This paper investigates the regional characteristics of the surface fields in the tropical ...
The influence of the surface marine meteorological parameters and air-sea fluxes of heat and moistur...
The interannual variability of the monthly mean upper layer thickness for the central Arabian Sea (5...
Regional characteristics of Indian Summer Monsoon Rainfall (ISMR) during dry and wet monsoon years a...
With an objective to understand the influence of surface marine meteorological parameters in relatio...
The combined influence of tropical Indian Ocean (TIO) and Pacific Ocean (TPO) sea surface temperatur...
The inter-annual variability of the Indian summer monsoon rainfall (ISMR) has been examined in assoc...
The present study examines the long term trend in sea surface temperatures (SSTs) of the Arabian Sea...
The Indian summer monsoon (ISM) is one of the main components of the Asian summer monsoon. It is wel...
The study is undertaken with an objective to investigate the linkage between air-sea fluxes in the I...
The Indo-Pacific Ocean (i.e. region between 30E and 150E) has been experiencing a spread warming sin...
We examine the relationship between the state of the equatorial Indian Ocean, ENSO, and the Indian s...
A better understanding of the factors responsible for the variability in Indian summer monsoon rainf...
Three key issues of moisture supply and Indian summer monsoon rainfall (ISMR) variability are discus...
Using QuikScat-based vector wind data for 1999–2003, surface wind stress and turbulent heat (Q) have...