Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data

The proposed research involves the application of multispectral satellite data in combination with ground truth measurements to monitor surface properties of the Greenland ice sheet which are essential for describing the energy and mass of the ice sheet. Several key components of the energy balance...

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Main Authors: Nolin, A., Key, J., Stober, M., Steffen, K., Stroeve, J., Abdalati, W.
Format: Other/Unknown Material
Language:unknown
Published: 1995
Subjects:
Online Access:http://hdl.handle.net/2060/19950018426
id ftnasantrs:oai:casi.ntrs.nasa.gov:19950018426
record_format openpolar
spelling ftnasantrs:oai:casi.ntrs.nasa.gov:19950018426 2023-05-15T16:29:41+02:00 Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data Nolin, A. Key, J. Stober, M. Steffen, K. Stroeve, J. Abdalati, W. Unclassified, Unlimited, Publicly available Apr 1, 1995 application/pdf http://hdl.handle.net/2060/19950018426 unknown Document ID: 19950018426 Accession ID: 95N24846 http://hdl.handle.net/2060/19950018426 No Copyright CASI ENVIRONMENT POLLUTION NASA-CR-198020 NAS 1.26:198020 1995 ftnasantrs 2019-07-21T08:16:02Z The proposed research involves the application of multispectral satellite data in combination with ground truth measurements to monitor surface properties of the Greenland ice sheet which are essential for describing the energy and mass of the ice sheet. Several key components of the energy balance are parameterized using satellite data and in situ measurements. The analysis will be done for a ten year time period in order to get statistics on the seasonal and interannual variations of the surface processes and the climatology. Our goal is to investigate to what accuracy and over what geographic areas large scale snow properties and radiative fluxes can be derived based upon a combination of available remote sensing and meterological data sets. Data analysis showed the following results: (1)cloud classification based on longwave sky radiation revealed that overcast sky occurred for 25% of the time in winter, and for 15% in spring and summer respectively (winter and summer both show the same occurrence of clear sky of approximately 26%); (2) comparison of aerodynamic profile method with eddy correlation method to derive sensible and latent heat flux showed good agreement in the diurnal cycle and the turbulent fluxes were underestimated with the aerodynamic method by 10 - 30% as compared to the in situ eddy flux method; (3) the katabatic wind shows a distinct diurnal cycle with a maximum in the morning (7-9 h solar time) and a minimum in the later afternoon (18 h solar time); (4) snow grain size was modeled with a surface energy balance model (SNTHERM) and compared with in situ measurements. Sharp decreases in the modeled snow grain size, caused by accumulation events such as precipitation and deposition, could be verified with observational data; (4) radiative transfer modeling of firn supports our beliefs that the observed trends in 18 and 19 GHz passive microwave brightness temperatures are attributable to accumulation rate changes (modeling also indicates the above relationship is detectable because of the presence of depth hoar; (5) snow melt can be detected by a distinct signal in the passive microwave cross-polarized gradient ratio (19h-37v)/(19h+37v) and has been used for wet/dry snow classification; (6) top of the atmosphere (TOA) broadband albedos were derived from AVHRR visible and near infrared reflectances for the entire ice sheet from May 1990 - June 1991, and the highest albedo values are found along the southeast coast of the ice sheet which is consistent with the summer peak of precipitation due to onshore flow loaded with high water vapor content (TOA albedo values dropped to around 40% along the south-western coast during July and August due to bare ice surfaces); and (7) the net all-wave radiation balance at the top of the atmosphere is negative over the entire ice sheet except for the summer months - June-July-August (in June, the net radiation balance is slightly positive over the dry snow areas--15 W/m2). Other/Unknown Material Greenland Ice Sheet NASA Technical Reports Server (NTRS) Greenland
institution Open Polar
collection NASA Technical Reports Server (NTRS)
op_collection_id ftnasantrs
language unknown
topic ENVIRONMENT POLLUTION
spellingShingle ENVIRONMENT POLLUTION
Nolin, A.
Key, J.
Stober, M.
Steffen, K.
Stroeve, J.
Abdalati, W.
Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data
topic_facet ENVIRONMENT POLLUTION
description The proposed research involves the application of multispectral satellite data in combination with ground truth measurements to monitor surface properties of the Greenland ice sheet which are essential for describing the energy and mass of the ice sheet. Several key components of the energy balance are parameterized using satellite data and in situ measurements. The analysis will be done for a ten year time period in order to get statistics on the seasonal and interannual variations of the surface processes and the climatology. Our goal is to investigate to what accuracy and over what geographic areas large scale snow properties and radiative fluxes can be derived based upon a combination of available remote sensing and meterological data sets. Data analysis showed the following results: (1)cloud classification based on longwave sky radiation revealed that overcast sky occurred for 25% of the time in winter, and for 15% in spring and summer respectively (winter and summer both show the same occurrence of clear sky of approximately 26%); (2) comparison of aerodynamic profile method with eddy correlation method to derive sensible and latent heat flux showed good agreement in the diurnal cycle and the turbulent fluxes were underestimated with the aerodynamic method by 10 - 30% as compared to the in situ eddy flux method; (3) the katabatic wind shows a distinct diurnal cycle with a maximum in the morning (7-9 h solar time) and a minimum in the later afternoon (18 h solar time); (4) snow grain size was modeled with a surface energy balance model (SNTHERM) and compared with in situ measurements. Sharp decreases in the modeled snow grain size, caused by accumulation events such as precipitation and deposition, could be verified with observational data; (4) radiative transfer modeling of firn supports our beliefs that the observed trends in 18 and 19 GHz passive microwave brightness temperatures are attributable to accumulation rate changes (modeling also indicates the above relationship is detectable because of the presence of depth hoar; (5) snow melt can be detected by a distinct signal in the passive microwave cross-polarized gradient ratio (19h-37v)/(19h+37v) and has been used for wet/dry snow classification; (6) top of the atmosphere (TOA) broadband albedos were derived from AVHRR visible and near infrared reflectances for the entire ice sheet from May 1990 - June 1991, and the highest albedo values are found along the southeast coast of the ice sheet which is consistent with the summer peak of precipitation due to onshore flow loaded with high water vapor content (TOA albedo values dropped to around 40% along the south-western coast during July and August due to bare ice surfaces); and (7) the net all-wave radiation balance at the top of the atmosphere is negative over the entire ice sheet except for the summer months - June-July-August (in June, the net radiation balance is slightly positive over the dry snow areas--15 W/m2).
format Other/Unknown Material
author Nolin, A.
Key, J.
Stober, M.
Steffen, K.
Stroeve, J.
Abdalati, W.
author_facet Nolin, A.
Key, J.
Stober, M.
Steffen, K.
Stroeve, J.
Abdalati, W.
author_sort Nolin, A.
title Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data
title_short Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data
title_full Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data
title_fullStr Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data
title_full_unstemmed Assessment of climate variability of the Greenland ice sheet: Integration of in situ and satellite data
title_sort assessment of climate variability of the greenland ice sheet: integration of in situ and satellite data
publishDate 1995
url http://hdl.handle.net/2060/19950018426
op_coverage Unclassified, Unlimited, Publicly available
geographic Greenland
geographic_facet Greenland
genre Greenland
Ice Sheet
genre_facet Greenland
Ice Sheet
op_source CASI
op_relation Document ID: 19950018426
Accession ID: 95N24846
http://hdl.handle.net/2060/19950018426
op_rights No Copyright
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