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    ASIRI: An Ocean–Atmosphere Initiative for Bay of Bengal

    Source: Bulletin of the American Meteorological Society:;2016:;volume( 097 ):;issue: 010::page 1859
    Author:
    Wijesekera, Hemantha W.
    ,
    Shroyer, Emily
    ,
    Tandon, Amit
    ,
    Ravichandran, M.
    ,
    Sengupta, Debasis
    ,
    Jinadasa, S. U. P.
    ,
    Fernando, Harindra J. S.
    ,
    Agrawal, Neeraj
    ,
    Arulananthan, K.
    ,
    Bhat, G. S.
    ,
    Baumgartner, Mark
    ,
    Buckley, Jared
    ,
    Centurioni, Luca
    ,
    Conry, Patrick
    ,
    Farrar, J. Thomas
    ,
    Gordon, Arnold L.
    ,
    Hormann, Verena
    ,
    Jarosz, Ewa
    ,
    Jensen, Tommy G.
    ,
    Johnston, Shaun
    ,
    Lankhorst, Matthias
    ,
    Lee, Craig M.
    ,
    Leo, Laura S.
    ,
    Lozovatsky, Iossif
    ,
    Lucas, Andrew J.
    ,
    Mackinnon, Jennifer
    ,
    Mahadevan, Amala
    ,
    Nash, Jonathan
    ,
    Omand, Melissa M.
    ,
    Pham, Hieu
    ,
    Pinkel, Robert
    ,
    Rainville, Luc
    ,
    Ramachandran, Sanjiv
    ,
    Rudnick, Daniel L.
    ,
    Sarkar, Sutanu
    ,
    Send, Uwe
    ,
    Sharma, Rashmi
    ,
    Simmons, Harper
    ,
    Stafford, Kathleen M.
    ,
    St. Laurent, Louis
    ,
    Venayagamoorthy, Karan
    ,
    Venkatesan, Ramasamy
    ,
    Teague, William J.
    ,
    Wang, David W.
    ,
    Waterhouse, Amy F.
    ,
    Weller, Robert
    ,
    Whalen, Caitlin B.
    DOI: 10.1175/BAMS-D-14-00197.1
    Publisher: American Meteorological Society
    Abstract: ir?Sea Interactions in the Northern Indian Ocean (ASIRI) is an international research effort (2013?17) aimed at understanding and quantifying coupled atmosphere?ocean dynamics of the Bay of Bengal (BoB) with relevance to Indian Ocean monsoons. Working collaboratively, more than 20 research institutions are acquiring field observations coupled with operational and high-resolution models to address scientific issues that have stymied the monsoon predictability. ASIRI combines new and mature observational technologies to resolve submesoscale to regional-scale currents and hydrophysical fields. These data reveal BoB?s sharp frontal features, submesoscale variability, low-salinity lenses and filaments, and shallow mixed layers, with relatively weak turbulent mixing. Observed physical features include energetic high-frequency internal waves in the southern BoB, energetic mesoscale and submesoscale features including an intrathermocline eddy in the central BoB, and a high-resolution view of the exchange along the periphery of Sri Lanka, which includes the 100-km-wide East India Coastal Current (EICC) carrying low-salinity water out of the BoB and an adjacent, broad northward flow (?300 km wide) that carries high-salinity water into BoB during the northeast monsoon. Atmospheric boundary layer (ABL) observations during the decaying phase of the Madden?Julian oscillation (MJO) permit the study of multiscale atmospheric processes associated with non-MJO phenomena and their impacts on the marine boundary layer. Underway analyses that integrate observations and numerical simulations shed light on how air?sea interactions control the ABL and upper-ocean processes.
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      ASIRI: An Ocean–Atmosphere Initiative for Bay of Bengal

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/4215738
    Collections
    • Bulletin of the American Meteorological Society

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    contributor authorWijesekera, Hemantha W.
    contributor authorShroyer, Emily
    contributor authorTandon, Amit
    contributor authorRavichandran, M.
    contributor authorSengupta, Debasis
    contributor authorJinadasa, S. U. P.
    contributor authorFernando, Harindra J. S.
    contributor authorAgrawal, Neeraj
    contributor authorArulananthan, K.
    contributor authorBhat, G. S.
    contributor authorBaumgartner, Mark
    contributor authorBuckley, Jared
    contributor authorCenturioni, Luca
    contributor authorConry, Patrick
    contributor authorFarrar, J. Thomas
    contributor authorGordon, Arnold L.
    contributor authorHormann, Verena
    contributor authorJarosz, Ewa
    contributor authorJensen, Tommy G.
    contributor authorJohnston, Shaun
    contributor authorLankhorst, Matthias
    contributor authorLee, Craig M.
    contributor authorLeo, Laura S.
    contributor authorLozovatsky, Iossif
    contributor authorLucas, Andrew J.
    contributor authorMackinnon, Jennifer
    contributor authorMahadevan, Amala
    contributor authorNash, Jonathan
    contributor authorOmand, Melissa M.
    contributor authorPham, Hieu
    contributor authorPinkel, Robert
    contributor authorRainville, Luc
    contributor authorRamachandran, Sanjiv
    contributor authorRudnick, Daniel L.
    contributor authorSarkar, Sutanu
    contributor authorSend, Uwe
    contributor authorSharma, Rashmi
    contributor authorSimmons, Harper
    contributor authorStafford, Kathleen M.
    contributor authorSt. Laurent, Louis
    contributor authorVenayagamoorthy, Karan
    contributor authorVenkatesan, Ramasamy
    contributor authorTeague, William J.
    contributor authorWang, David W.
    contributor authorWaterhouse, Amy F.
    contributor authorWeller, Robert
    contributor authorWhalen, Caitlin B.
    date accessioned2017-06-09T16:45:37Z
    date available2017-06-09T16:45:37Z
    date copyright2016/10/01
    date issued2016
    identifier issn0003-0007
    identifier otherams-73605.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4215738
    description abstractir?Sea Interactions in the Northern Indian Ocean (ASIRI) is an international research effort (2013?17) aimed at understanding and quantifying coupled atmosphere?ocean dynamics of the Bay of Bengal (BoB) with relevance to Indian Ocean monsoons. Working collaboratively, more than 20 research institutions are acquiring field observations coupled with operational and high-resolution models to address scientific issues that have stymied the monsoon predictability. ASIRI combines new and mature observational technologies to resolve submesoscale to regional-scale currents and hydrophysical fields. These data reveal BoB?s sharp frontal features, submesoscale variability, low-salinity lenses and filaments, and shallow mixed layers, with relatively weak turbulent mixing. Observed physical features include energetic high-frequency internal waves in the southern BoB, energetic mesoscale and submesoscale features including an intrathermocline eddy in the central BoB, and a high-resolution view of the exchange along the periphery of Sri Lanka, which includes the 100-km-wide East India Coastal Current (EICC) carrying low-salinity water out of the BoB and an adjacent, broad northward flow (?300 km wide) that carries high-salinity water into BoB during the northeast monsoon. Atmospheric boundary layer (ABL) observations during the decaying phase of the Madden?Julian oscillation (MJO) permit the study of multiscale atmospheric processes associated with non-MJO phenomena and their impacts on the marine boundary layer. Underway analyses that integrate observations and numerical simulations shed light on how air?sea interactions control the ABL and upper-ocean processes.
    publisherAmerican Meteorological Society
    titleASIRI: An Ocean–Atmosphere Initiative for Bay of Bengal
    typeJournal Paper
    journal volume97
    journal issue10
    journal titleBulletin of the American Meteorological Society
    identifier doi10.1175/BAMS-D-14-00197.1
    journal fristpage1859
    journal lastpage1884
    treeBulletin of the American Meteorological Society:;2016:;volume( 097 ):;issue: 010
    contenttypeFulltext
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