[Keyword='EOSDIS']
|
Surface Turbulent Fluxes, 1x1 deg Daily Grid, Satellite F15
Entry ID:
GES_DISC_GSSTF_F15_2c
Summary
Abstract:
These data are part of the Goddard Satellite-based Surface Turbulent Fluxes Version-2c (GSSTF 2c) Dataset recently produced through a MEaSURES funded project led by Dr. Chung-Lin Shie (UMBC/GEST, NASA/GSFC), converted to HDF-EOS5 format. The stewardship of this HDF-EOS5 dataset is part of the MEaSUREs project, ...
![]()
Related URL
Geographic Coverage
(Click for Interactive Map)
Spatial coordinates
Data Set Citation
Dataset Originator/Creator:
Shie, C.-L., K. Hilburn, L. S. Chiu, R. Adler, I-I Lin, E. Nelkin, and J. Ardizzone
Dataset Title:
Surface Turbulent Fluxes, 1x1 deg Daily Grid, Satellite F15
Dataset Series Name:
GSSTF_F15
Dataset Release Date:
November 18, 2011
Dataset Release Place:
Greenbelt, MD, USA
Dataset Publisher:
Goddard Earth Science Data and Information Services Center (GES DISC)
Version:
2c
Dataset Editor:
Andrey Savtchenko
Issue Identification:
GSSTF_F15_2c
Data Presentation Form:
Digital Science Data
Other Citation Details:
http://disc.gsfc.nasa.gov/data/GES_DISC_GSSTF_F15_2c.html
Online Resource:
http://disc.sci.gsfc.nasa.gov/daac-bin/DataHoldingsMEASURES.pl?PROG...
Temporal Coverage
Start Date:
2000-01-01
Stop Date:
2009-01-01
Location Keywords
Data Resolution
Latitude Resolution:
1 degree
Longitude Resolution: 1 degree Horizontal Resolution Range: 100 km - < 250 km or approximately 1 degree - < 2.5 degrees Temporal Resolution: 24 hr Temporal Resolution Range: Daily - < Weekly Science Keywords
ISO Topic Category
Instrument
Project
Ancillary Keywords
Data Set Progress
PLANNED
Originating Center
Data Center
Distribution
Distribution Media:
On-line (World Wide Web)
Personnel
Role:
INVESTIGATOR
Phone:
510-495-2457
Fax:
510-486-5686
Email:
jkbishop at lbl.gov
Contact Address:
One Cyclotron Road
M/S 90-1116
City:
Berkeley
Province or State:
CA
Postal Code:
94720
Country:
USA
Publications/References
Bishop, J.K.B., Schupack, D., Sherrell, R.M., and Conte, M. (1985) A
Multiple Unit Large Volume In-Situ Filtration System (MULVFS) for sampling oceanic particulate matter in mesoscale environments. pp. 155-175. In: A. Zirino (ed.), Mapping Strategies in Chemical Oceanography, Advancements in Chemistry Series, Vol. 209. American Chemical Society, Washington D.C. Creation and Review Dates
Last DIF Revision Date:
2009-05-13
|
||||||||||||||||||






