High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017

Airborne photogrammetric data were acquired two times in 2015 (April 23 and July 5), three times in 2016 (April 19, July 11, and August 5), and three times in 2017 (April 28, June 27, and September 3). These data were used to create digital elevation models (DEMs) with postings of 50 cm provided in...

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Bibliographic Details
Main Author: Matt Nolan
Format: Dataset
Language:unknown
Published: Arctic Data Center 2019
Subjects:
Online Access:https://doi.org/10.18739/A28W3824W
id dataone:doi:10.18739/A28W3824W
record_format openpolar
spelling dataone:doi:10.18739/A28W3824W 2024-06-03T18:46:41+00:00 High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017 Matt Nolan Lake Peters watershed, Alaska ENVELOPE(-145.18275,-144.98639,69.41179,69.09967) BEGINDATE: 2015-04-23T00:00:00Z ENDDATE: 2017-09-03T00:00:00Z 2019-04-29T00:00:00Z https://doi.org/10.18739/A28W3824W unknown Arctic Data Center Photogrammetry Digital Elevation Models Chamberlin Glacier Lake Peters Arctic National Wildlife Refuge Dataset 2019 dataone:urn:node:ARCTIC https://doi.org/10.18739/A28W3824W 2024-06-03T18:12:03Z Airborne photogrammetric data were acquired two times in 2015 (April 23 and July 5), three times in 2016 (April 19, July 11, and August 5), and three times in 2017 (April 28, June 27, and September 3). These data were used to create digital elevation models (DEMs) with postings of 50 cm provided in NAD83(2011) (North American Datum) NAVD88 (North American Vertical Datum) Geoid 12B (unless otherwise specified). When conditions permitted (April 23, 2015; July 5, 2015; April 19, 2016; April 28, 2017), the entire Carnivore Creek watershed was acquired. On all other dates, only the eastern side of the valley, where the catchment glaciers are located, was captured. These data were acquired using a Nikon DSLR (digital single-lens reflex) attached to a survey grade GNSS (Global Navigation Satellite System) on board a manned aircraft, providing photo-center position to 10 cm or better and thus eliminating the need for ground control. These DEMs were used to create difference DEMs that can be used to measure snowpack thickness throughout the entire watershed as well as glacier surface elevation change. Dataset Arctic glacier glaciers Alaska Arctic Data Center (via DataONE) Arctic Chamberlin Glacier ENVELOPE(-65.737,-65.737,-67.569,-67.569) ENVELOPE(-145.18275,-144.98639,69.41179,69.09967)
institution Open Polar
collection Arctic Data Center (via DataONE)
op_collection_id dataone:urn:node:ARCTIC
language unknown
topic Photogrammetry
Digital Elevation Models
Chamberlin Glacier
Lake Peters
Arctic National Wildlife Refuge
spellingShingle Photogrammetry
Digital Elevation Models
Chamberlin Glacier
Lake Peters
Arctic National Wildlife Refuge
Matt Nolan
High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017
topic_facet Photogrammetry
Digital Elevation Models
Chamberlin Glacier
Lake Peters
Arctic National Wildlife Refuge
description Airborne photogrammetric data were acquired two times in 2015 (April 23 and July 5), three times in 2016 (April 19, July 11, and August 5), and three times in 2017 (April 28, June 27, and September 3). These data were used to create digital elevation models (DEMs) with postings of 50 cm provided in NAD83(2011) (North American Datum) NAVD88 (North American Vertical Datum) Geoid 12B (unless otherwise specified). When conditions permitted (April 23, 2015; July 5, 2015; April 19, 2016; April 28, 2017), the entire Carnivore Creek watershed was acquired. On all other dates, only the eastern side of the valley, where the catchment glaciers are located, was captured. These data were acquired using a Nikon DSLR (digital single-lens reflex) attached to a survey grade GNSS (Global Navigation Satellite System) on board a manned aircraft, providing photo-center position to 10 cm or better and thus eliminating the need for ground control. These DEMs were used to create difference DEMs that can be used to measure snowpack thickness throughout the entire watershed as well as glacier surface elevation change.
format Dataset
author Matt Nolan
author_facet Matt Nolan
author_sort Matt Nolan
title High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017
title_short High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017
title_full High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017
title_fullStr High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017
title_full_unstemmed High resolution photogrammetric data of Chamberlin Glacier and the Lake Peters watershed, Alaska, 2015-2017
title_sort high resolution photogrammetric data of chamberlin glacier and the lake peters watershed, alaska, 2015-2017
publisher Arctic Data Center
publishDate 2019
url https://doi.org/10.18739/A28W3824W
op_coverage Lake Peters watershed, Alaska
ENVELOPE(-145.18275,-144.98639,69.41179,69.09967)
BEGINDATE: 2015-04-23T00:00:00Z ENDDATE: 2017-09-03T00:00:00Z
long_lat ENVELOPE(-65.737,-65.737,-67.569,-67.569)
ENVELOPE(-145.18275,-144.98639,69.41179,69.09967)
geographic Arctic
Chamberlin Glacier
geographic_facet Arctic
Chamberlin Glacier
genre Arctic
glacier
glaciers
Alaska
genre_facet Arctic
glacier
glaciers
Alaska
op_doi https://doi.org/10.18739/A28W3824W
_version_ 1800869696517439488