id ftfloridastunidc:oai:fsu.digital.flvc.org:fsu_366099
record_format openpolar
institution Open Polar
collection Florida State University Digital Library (FSUDL)
op_collection_id ftfloridastunidc
language English
topic Atmospheric sciences
Meteorology
spellingShingle Atmospheric sciences
Meteorology
Sea-Ice, Clouds and Atmospheric Conditions in the Arctic and Their Interactions as Derived from a Merged C3M Data Product
topic_facet Atmospheric sciences
Meteorology
description The polar regions of the world constitute an important sector in the global energy balance. Among other effects responsible for the change in the sea-ice cover like ocean circulation and ice-albedo feedback, the cloud-radiation feedback also plays a vital role in modulation of the Arctic environment. However the annual cycle of the clouds is very poorly represented in current global circulation models. This study aimed to explore the atmospheric conditions in the Arctic on an unprecedented spatial coverage spanning 70°N to 80°N through the use of a merged data product, C3MData (derived from NASA's A-Train Series). The following three topics provide outline on how this dataset can be used to accomplish a detailed analysis of the Arctic environment and provide the modelling community with first information to update their models aimed at better forecasts. (1)The three properties of the Arctic climate system to be studied using the C3MData are sea-ice, clouds, and the atmospheric conditions. The first topic is to document the present states of the three properties and also their time evolutions or their seasonal cycles. (2)The second topic is aimed at the interactions or the feedbacks processes among the three properties. For example, the immediate alteration in the fluxes and the feedbacks arising from the change in the sea-ice cover is investigated. Seasonal and regional variations are also studied. (3)The third topics is aimed at the processes in native spatial resolution that drive or accompany with sea ice melting and sea ice growth. Using a composite approach based on a classification due to surface type, it is found that limitation of the water vapour influx from the surface due to change in phase at the surface featuring open oceans or marginal sea-ice cover to complete sea-ice cover is a major determinant in the modulation of the atmospheric moisture. The impact of the cloud-radiative effects in the Arctic is found to vary with sea-ice cover and seasonally. The effect of the marginal sea-ice cover becomes more and more pronounced in the winter. The seasonal variation of the dependence of the atmospheric moisture on the surface and the subsequent feedback effects is controlled by the atmospheric stability measured as a difference between the potential temperature at the surface and the 700hPa level. A regional analysis of the same suggests that most of the depiction of the variations observed is contributed from the North Atlantic region. A Dissertation submitted to the Geophysical Fluid Dynamics Institute in partial fulfillment of the requirements for the degree of Doctor of Philosophy. Summer Semester 2016. May 2, 2016. C3MData, Cloud, Feedback, Interaction, Sea-Ice, Stabillity Includes bibliographical references. Ming Cai, Professor Directing Dissertation; Christopher Tam, University Representative; Allan Clarke, Committee Member; Guosheng Liu, Committee Member; Kevin Speer, Committee Member.
author2 Nag, Bappaditya (authoraut)
Cai, Ming, 1957- (professor directing dissertation)
Tam, Christopher K. W. (university representative)
Clarke, Allan J. (committee member)
Liu, Guosheng (committee member)
Speer, Kevin G. (Kevin George) (committee member)
Florida State University (degree granting institution)
College of Arts and Sciences (degree granting college)
Program in Geophysical Fluid Dynamics (degree granting department)
format Text
title Sea-Ice, Clouds and Atmospheric Conditions in the Arctic and Their Interactions as Derived from a Merged C3M Data Product
title_short Sea-Ice, Clouds and Atmospheric Conditions in the Arctic and Their Interactions as Derived from a Merged C3M Data Product
title_full Sea-Ice, Clouds and Atmospheric Conditions in the Arctic and Their Interactions as Derived from a Merged C3M Data Product
title_fullStr Sea-Ice, Clouds and Atmospheric Conditions in the Arctic and Their Interactions as Derived from a Merged C3M Data Product
title_full_unstemmed Sea-Ice, Clouds and Atmospheric Conditions in the Arctic and Their Interactions as Derived from a Merged C3M Data Product
title_sort sea-ice, clouds and atmospheric conditions in the arctic and their interactions as derived from a merged c3m data product
publisher Florida State University
url http://purl.flvc.org/fsu/fd/FSU_2016SU_Nag_fsu_0071E_13367
http://fsu.digital.flvc.org/islandora/object/fsu%3A366099/datastream/TN/view/Sea-Ice,%20Clouds%20and%20Atmospheric%20Conditions%20in%20the%20Arctic%20and%20Their%20Interactions%20as%20Derived%20from%20a%20Merged%20C3M%20Data%20Product.jpg
geographic Arctic
geographic_facet Arctic
genre albedo
Arctic
North Atlantic
Sea ice
genre_facet albedo
Arctic
North Atlantic
Sea ice
op_rights This Item is protected by copyright and/or related rights. You are free to use this Item in any way that is permitted by the copyright and related rights legislation that applies to your use. For other uses you need to obtain permission from the rights-holder(s). The copyright in theses and dissertations completed at Florida State University is held by the students who author them.
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spelling ftfloridastunidc:oai:fsu.digital.flvc.org:fsu_366099 2023-05-15T13:11:41+02:00 Sea-Ice, Clouds and Atmospheric Conditions in the Arctic and Their Interactions as Derived from a Merged C3M Data Product Nag, Bappaditya (authoraut) Cai, Ming, 1957- (professor directing dissertation) Tam, Christopher K. W. (university representative) Clarke, Allan J. (committee member) Liu, Guosheng (committee member) Speer, Kevin G. (Kevin George) (committee member) Florida State University (degree granting institution) College of Arts and Sciences (degree granting college) Program in Geophysical Fluid Dynamics (degree granting department) 1 online resource (92 pages) computer application/pdf http://purl.flvc.org/fsu/fd/FSU_2016SU_Nag_fsu_0071E_13367 http://fsu.digital.flvc.org/islandora/object/fsu%3A366099/datastream/TN/view/Sea-Ice,%20Clouds%20and%20Atmospheric%20Conditions%20in%20the%20Arctic%20and%20Their%20Interactions%20as%20Derived%20from%20a%20Merged%20C3M%20Data%20Product.jpg English eng eng Florida State University This Item is protected by copyright and/or related rights. You are free to use this Item in any way that is permitted by the copyright and related rights legislation that applies to your use. For other uses you need to obtain permission from the rights-holder(s). The copyright in theses and dissertations completed at Florida State University is held by the students who author them. Atmospheric sciences Meteorology Text ftfloridastunidc 2020-08-10T21:48:55Z The polar regions of the world constitute an important sector in the global energy balance. Among other effects responsible for the change in the sea-ice cover like ocean circulation and ice-albedo feedback, the cloud-radiation feedback also plays a vital role in modulation of the Arctic environment. However the annual cycle of the clouds is very poorly represented in current global circulation models. This study aimed to explore the atmospheric conditions in the Arctic on an unprecedented spatial coverage spanning 70°N to 80°N through the use of a merged data product, C3MData (derived from NASA's A-Train Series). The following three topics provide outline on how this dataset can be used to accomplish a detailed analysis of the Arctic environment and provide the modelling community with first information to update their models aimed at better forecasts. (1)The three properties of the Arctic climate system to be studied using the C3MData are sea-ice, clouds, and the atmospheric conditions. The first topic is to document the present states of the three properties and also their time evolutions or their seasonal cycles. (2)The second topic is aimed at the interactions or the feedbacks processes among the three properties. For example, the immediate alteration in the fluxes and the feedbacks arising from the change in the sea-ice cover is investigated. Seasonal and regional variations are also studied. (3)The third topics is aimed at the processes in native spatial resolution that drive or accompany with sea ice melting and sea ice growth. Using a composite approach based on a classification due to surface type, it is found that limitation of the water vapour influx from the surface due to change in phase at the surface featuring open oceans or marginal sea-ice cover to complete sea-ice cover is a major determinant in the modulation of the atmospheric moisture. The impact of the cloud-radiative effects in the Arctic is found to vary with sea-ice cover and seasonally. The effect of the marginal sea-ice cover becomes more and more pronounced in the winter. The seasonal variation of the dependence of the atmospheric moisture on the surface and the subsequent feedback effects is controlled by the atmospheric stability measured as a difference between the potential temperature at the surface and the 700hPa level. A regional analysis of the same suggests that most of the depiction of the variations observed is contributed from the North Atlantic region. A Dissertation submitted to the Geophysical Fluid Dynamics Institute in partial fulfillment of the requirements for the degree of Doctor of Philosophy. Summer Semester 2016. May 2, 2016. C3MData, Cloud, Feedback, Interaction, Sea-Ice, Stabillity Includes bibliographical references. Ming Cai, Professor Directing Dissertation; Christopher Tam, University Representative; Allan Clarke, Committee Member; Guosheng Liu, Committee Member; Kevin Speer, Committee Member. Text albedo Arctic North Atlantic Sea ice Florida State University Digital Library (FSUDL) Arctic