Landsat derived patterns of lake drainage in northern Alaska between 1975-2019

Forty-five years (i.e. 1975-2019) of Landsat observations were used to map the spatiotemporal patterns of lake drainage in northern Alaska. All Landsat data was pre-processed by the United States Geological Survey and downloaded by google earth engine in a radiometrically, atmospherically, and geome...

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Bibliographic Details
Main Authors: Mark Lara, Yaping Chen, Benjamin Jones
Format: Dataset
Language:unknown
Published: Arctic Data Center 2021
Subjects:
Online Access:https://doi.org/10.18739/A2BV79W8S
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author Mark Lara
Yaping Chen
Benjamin Jones
author_facet Mark Lara
Yaping Chen
Benjamin Jones
author_sort Mark Lara
collection Arctic Data Center (via DataONE)
description Forty-five years (i.e. 1975-2019) of Landsat observations were used to map the spatiotemporal patterns of lake drainage in northern Alaska. All Landsat data was pre-processed by the United States Geological Survey and downloaded by google earth engine in a radiometrically, atmospherically, and geometrically terrain-corrected state. We used Landsat surface reflectance products acquired from the Multispectral Scanner (MSS), Terrestrial Mapper (TM), Enhanced Terrestrial Mapper Plus (ETM+), and Operational Land Imager (OLI) sensors to compute eight image mosaics for the ice-free period (June 15 to September 1) at five-year time-periods. This data product represents the change in lake area between time-periods or epochs. All data used to spatially identify patterns of lake change are presented in a map (LakeDrainChg.tif), where the associated morphometric controls on drainage are summarized for each of the ~33,000 lake boundaries (Lake_Drainage.shp). All data can also be viewed within Google Earth Engine (https://code.earthengine.google.com/?accept_repo=users/mjlara71/LakeDrainage; accessed on 13 September 2021) or clone Git repository (git clone https://earthengine.googlesource.com/users/mjlara71/LakeDrainage accessed on 13 September 2021).
format Dataset
genre Brooks Range
Ice
permafrost
Seward Peninsula
Tundra
Alaska
genre_facet Brooks Range
Ice
permafrost
Seward Peninsula
Tundra
Alaska
geographic Davidson
Talik
geographic_facet Davidson
Talik
id dataone:doi:10.18739/A2BV79W8S
institution Open Polar
language unknown
long_lat ENVELOPE(-44.766,-44.766,-60.766,-60.766)
ENVELOPE(146.601,146.601,59.667,59.667)
ENVELOPE(-168.134,-140.95,70.35,64.36)
op_collection_id dataone:urn:node:ARCTIC
op_coverage This dataset includes the tundra on the Seward Peninsula, Kotzebue Sound Lowlands, Kobuk Ridges and Valleys, Davidson mountains, Brooks Range, and the Foothills of the Brooks Range.
ENVELOPE(-168.134,-140.95,70.35,64.36)
BEGINDATE: 1975-06-15T00:00:00Z ENDDATE: 2019-09-01T00:00:00Z
op_doi https://doi.org/10.18739/A2BV79W8S
publishDate 2021
publisher Arctic Data Center
record_format openpolar
spelling dataone:doi:10.18739/A2BV79W8S 2025-06-03T18:49:40+00:00 Landsat derived patterns of lake drainage in northern Alaska between 1975-2019 Mark Lara Yaping Chen Benjamin Jones This dataset includes the tundra on the Seward Peninsula, Kotzebue Sound Lowlands, Kobuk Ridges and Valleys, Davidson mountains, Brooks Range, and the Foothills of the Brooks Range. ENVELOPE(-168.134,-140.95,70.35,64.36) BEGINDATE: 1975-06-15T00:00:00Z ENDDATE: 2019-09-01T00:00:00Z 2021-01-01T00:00:00Z https://doi.org/10.18739/A2BV79W8S unknown Arctic Data Center Lake drainage gradual lake drainage catastrophic lake drainage talik permafrost gully tundra Alaska Dataset 2021 dataone:urn:node:ARCTIC https://doi.org/10.18739/A2BV79W8S 2025-06-03T18:17:56Z Forty-five years (i.e. 1975-2019) of Landsat observations were used to map the spatiotemporal patterns of lake drainage in northern Alaska. All Landsat data was pre-processed by the United States Geological Survey and downloaded by google earth engine in a radiometrically, atmospherically, and geometrically terrain-corrected state. We used Landsat surface reflectance products acquired from the Multispectral Scanner (MSS), Terrestrial Mapper (TM), Enhanced Terrestrial Mapper Plus (ETM+), and Operational Land Imager (OLI) sensors to compute eight image mosaics for the ice-free period (June 15 to September 1) at five-year time-periods. This data product represents the change in lake area between time-periods or epochs. All data used to spatially identify patterns of lake change are presented in a map (LakeDrainChg.tif), where the associated morphometric controls on drainage are summarized for each of the ~33,000 lake boundaries (Lake_Drainage.shp). All data can also be viewed within Google Earth Engine (https://code.earthengine.google.com/?accept_repo=users/mjlara71/LakeDrainage; accessed on 13 September 2021) or clone Git repository (git clone https://earthengine.googlesource.com/users/mjlara71/LakeDrainage accessed on 13 September 2021). Dataset Brooks Range Ice permafrost Seward Peninsula Tundra Alaska Arctic Data Center (via DataONE) Davidson ENVELOPE(-44.766,-44.766,-60.766,-60.766) Talik ENVELOPE(146.601,146.601,59.667,59.667) ENVELOPE(-168.134,-140.95,70.35,64.36)
spellingShingle Lake drainage
gradual lake drainage
catastrophic lake drainage
talik
permafrost
gully
tundra
Alaska
Mark Lara
Yaping Chen
Benjamin Jones
Landsat derived patterns of lake drainage in northern Alaska between 1975-2019
title Landsat derived patterns of lake drainage in northern Alaska between 1975-2019
title_full Landsat derived patterns of lake drainage in northern Alaska between 1975-2019
title_fullStr Landsat derived patterns of lake drainage in northern Alaska between 1975-2019
title_full_unstemmed Landsat derived patterns of lake drainage in northern Alaska between 1975-2019
title_short Landsat derived patterns of lake drainage in northern Alaska between 1975-2019
title_sort landsat derived patterns of lake drainage in northern alaska between 1975-2019
topic Lake drainage
gradual lake drainage
catastrophic lake drainage
talik
permafrost
gully
tundra
Alaska
topic_facet Lake drainage
gradual lake drainage
catastrophic lake drainage
talik
permafrost
gully
tundra
Alaska
url https://doi.org/10.18739/A2BV79W8S