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Author
Ali, M.M. ; Bhowmick, S.A. ; Sharma, R. ; Chaudhury, A. ; Pezzullo, J.C. ; Bourassa, M.A. ; Ramana, I.V. ; Niharika, K.
Title
An Artificial Neural Network Model Function (AMF) for SARAL-Altika Winds
Type
$loc['typeJournal Article']
Year
2015
Publication
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
Abbreviated Journal
IEEE J. Sel. Top. Appl. Earth Observations Remote Sensing
Volume
8
Issue
11
Pages
5317-5323
Keywords
AltiKa ; artificial neural network (ANN) ; geophysical data records ; wind speed
Abstract
Address
Corporate Author
Thesis
Publisher
Place of Publication
Editor
Language
Summary Language
Original Title
Series Editor
Series Title
Abbreviated Series Title
Series Volume
Series Issue
Edition
ISSN
1939-1404
ISBN
Medium
Area
Expedition
Conference
Funding
Approved
$loc['no']
Call Number
COAPS @ mfield @
Serial
118
Permanent link to this record
Author
Ali, M.M. ; Bourassa, M.A. ; Bhowmick, S.A. ; Sharma, R. ; Niharika, K.
Title
Retrieval of Wind Stress at the Ocean Surface From AltiKa Measurements
Type
$loc['typeJournal Article']
Year
2016
Publication
IEEE Geoscience and Remote Sensing Letters
Abbreviated Journal
IEEE Geosci. Remote Sensing Lett.
Volume
13
Issue
6
Pages
821-825
Keywords
AltiKa ; artificial neural networks (ANNs) ; wind stress
Abstract
Address
Corporate Author
Thesis
Publisher
Place of Publication
Editor
Language
Summary Language
Original Title
Series Editor
Series Title
Abbreviated Series Title
Series Volume
Series Issue
Edition
ISSN
1545-598X
ISBN
Medium
Area
Expedition
Conference
Funding
Approved
$loc['no']
Call Number
COAPS @ mfield @
Serial
29
Permanent link to this record
Author
Bhowmick, S. A. ; Agarwal, N. ; Ali, M. M. ; Kishtawal, C. M. ; Sharma, R.
Title
Role of ocean heat content in boosting post-monsoon tropical storms over Bay of Bengal during La-Nina events
Type
$loc['typeJournal Article']
Year
2019
Publication
Climate Dynamics
Abbreviated Journal
Volume
52
Issue
12
Pages
7225-7234
Keywords
La-Niña ; Bay of Bengal ; Tropical cyclones ; Ocean heat content
Abstract
This study aims to analyze the role of ocean heat content in boosting the post-monsoon cyclonic activities over Bay of Bengal during La-Niña events. In strong La-Niña years, accumulated cyclone energy in Bay of Bengal is much more as compared to any other year. It is observed that during late June to October of moderate to strong La-Nina years, western Pacific is warmer. Sea surface temperature anomaly of western Pacific Ocean clearly indicates the presence of relatively warmer water mass in the channel connecting the Indian Ocean and Pacific Ocean, situated above Australia. Ocean currents transport the heat zonally from Pacific to South eastern Indian Ocean. Excess heat of the southern Indian Ocean is eventually transported to eastern equatorial Indian Ocean through strong geostrophic component of ocean current. By September the northward transport of this excess heat from eastern equatorial Indian Ocean to Bay of Bengal takes place during La-Nina years boosting the cyclonic activities thereafter.
Address
Corporate Author
Thesis
Publisher
Place of Publication
Editor
Language
Summary Language
Original Title
Series Editor
Series Title
Abbreviated Series Title
Series Volume
Series Issue
Edition
ISSN
ISBN
Medium
Area
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Funding
Approved
$loc['no']
Call Number
COAPS @ mfield @
Serial
71
Permanent link to this record
Author
Chakraborty, A. ; Sharma, R. ; Kumar, R. ; Basu, S.
Title
An OGCM assessment of blended OSCAT winds
Type
$loc['typeJournal Article']
Year
2014
Publication
Journal of Geophysical Research: Oceans
Abbreviated Journal
J. Geophys. Res. Oceans
Volume
119
Issue
1
Pages
173-186
Keywords
scatterometer ; ocean modeling ; EOF ; OSCAR ; MSLA ; EnOI
Abstract
Address
Corporate Author
Thesis
Publisher
Place of Publication
Editor
Language
Summary Language
Original Title
Series Editor
Series Title
Abbreviated Series Title
Series Volume
Series Issue
Edition
ISSN
2169-9275
ISBN
Medium
Area
Expedition
Conference
Funding
Approved
$loc['no']
Call Number
COAPS @ mfield @
Serial
157
Permanent link to this record