Low Level Jet stream of Asian Summer Monsoon and its Variability


Autoria(s): Sijikumar,S; Dr.Mohan Kumar, K
Data(s)

26/05/2008

26/05/2008

2003

Resumo

The main objective of the of present study are to study the intraseasonal variability of LLJ and its relation with convective heating of the atmosphere, to establish whether LLJ splits into two branches over the Arabian sea as widely believed, the role of horizonatal wind shear of LLJ in the episodes of intense rainfall events observed over the west coast of India, to perform atmospheric modeling work to test whether small (meso) scale vortices form during intense rainfall events along the west coast; and to study the relation between LLJ and monsoon depression genesis. The results of a study on the evolution of Low Level Jetstream (LLJ) prior to the formation of monsoon depressions are presented. A synoptic model of the temporal evolution of monsoon depression has been produced. There is a systematic temporal evolution of the field of deep convection strength and position of the LLJ axis leading to the genesis of monsoon depression. One of the significant outcomes of the present thesis is that the LLJ plays an important role in the intraseasonal and the interannual variability of Indian monsoon activity. Convection and rainfall are dependent mainly on the cyclonic vorticity in the boundary layer associated with LLJ. Monsoon depression genesis and the episodes of very heavy rainfall along the west coast of India are closely related to the cyclonic shear of the LLJ in the boundary layer and the associated deep convection. Case studies by a mesoscale numerical model (MM5) have shown that the heavy rainfall episodes along the west coast of India are associated with generation of mesoscale cyclonic vortices in the boundary layer.

Identificador

http://dyuthi.cusat.ac.in/purl/64

Idioma(s)

en

Publicador

Department of Atmospheric Sciences

Palavras-Chave #Low Level Jetstream (LLJ) #Asian summer monsoon #Climatology #Temporal evolution #Synoptic model #Boundary layer #Monsoon activity #Monsoon depression
Tipo

Thesis