Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers

This dataset contains limits to the inland diffusion of terminus-initiated thinning along 141 Greenland Ice Sheet outlet glaciers. The data is separated in 187 files and each file contains data for an individual outlet glacier or a branch of an outlet glacier. Shapefiles and NetCDF files are provide...

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Bibliographic Details
Main Authors: Felikson, Denis (10493115), Catania, Ginny (8260374), Bartholomaus, Timothy (10493118), Morlighem, Mathieu (10493121), Noël, Brice (8329347)
Format: Dataset
Language:unknown
Published: 2020
Subjects:
DOI
NN
Online Access:https://doi.org/10.5281/zenodo.4284759
id ftsmithonian:oai:figshare.com:article/14336988
record_format openpolar
spelling ftsmithonian:oai:figshare.com:article/14336988 2023-05-15T16:20:57+02:00 Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers Felikson, Denis (10493115) Catania, Ginny (8260374) Bartholomaus, Timothy (10493118) Morlighem, Mathieu (10493121) Noël, Brice (8329347) 2020-11-23T00:00:00Z https://doi.org/10.5281/zenodo.4284759 unknown https://figshare.com/articles/dataset/Inland_limits_to_diffusion_of_thinning_along_Greenland_Ice_Sheet_outlet_glaciers/14336988 doi:10.5281/zenodo.4284759 CC BY 4.0 CC-BY Biochemistry Genetics Physiology Pharmacology Biotechnology Evolutionary Biology Ecology Developmental Biology Cancer Infectious Diseases Plant Biology Chemical Sciences not elsewhere classified Physical Sciences not elsewhere classified 18 iterated flowlines iterated flowlines 141 Greenland Ice Sheet outlet glaciers DOI NetCDF files XXXX NN Greenland Ice Sheet outlet glaciers data 50- meter spacing outlet glacier Dataset 2020 ftsmithonian https://doi.org/10.5281/zenodo.4284759 2021-04-11T15:56:16Z This dataset contains limits to the inland diffusion of terminus-initiated thinning along 141 Greenland Ice Sheet outlet glaciers. The data is separated in 187 files and each file contains data for an individual outlet glacier or a branch of an outlet glacier. Shapefiles and NetCDF files are provided with data for 6 primary flowlines, and up to 18 iterated flowlines, spanning the width of each glacier. The iterated flowlines are used to find the furthest inland thinning limits (see the associated publication for more details). Files are named glacierXXXX where XXXX is the identifier for an individual glacier or branch. Identifiers that begin with a letter ('a', 'b', 'c', or 'd') represent a separate branch of an outlet glacier. Shapefiles filenames have an additional _iterNN suffix, where NN identifies the iteration number of that set of flowlines. The shapefiles contain multiple features, each of which is one flowline. Each flowline has a "flowline" attribute, a two-digit identifier that corresponds to the same identifier in the NetCDF files. The NetCDF files contains glacier geometry, dynamic thinning, Peclet number, and identified knickpoints, extracted and calculated along the primary and iterated flowlines. The flowlines in the NetCDF files have a regular 50-meter spacing between nodes, whereas the flowlines in the shapefiles have a coarser and irregular spacing. More information on how the flowlines were derived and how data was extracted and calculated is in the associated publication (Felikson et al., 2020), with a DOI to be provided. Example code that can be used to read and plot the data can be obtained at http://doi.org/10.5281/zenodo.4284715. Dataset glacier Greenland Ice Sheet Unknown Greenland
institution Open Polar
collection Unknown
op_collection_id ftsmithonian
language unknown
topic Biochemistry
Genetics
Physiology
Pharmacology
Biotechnology
Evolutionary Biology
Ecology
Developmental Biology
Cancer
Infectious Diseases
Plant Biology
Chemical Sciences not elsewhere classified
Physical Sciences not elsewhere classified
18 iterated flowlines
iterated flowlines
141 Greenland Ice Sheet outlet glaciers
DOI
NetCDF files
XXXX
NN
Greenland Ice Sheet outlet glaciers
data
50- meter spacing
outlet glacier
spellingShingle Biochemistry
Genetics
Physiology
Pharmacology
Biotechnology
Evolutionary Biology
Ecology
Developmental Biology
Cancer
Infectious Diseases
Plant Biology
Chemical Sciences not elsewhere classified
Physical Sciences not elsewhere classified
18 iterated flowlines
iterated flowlines
141 Greenland Ice Sheet outlet glaciers
DOI
NetCDF files
XXXX
NN
Greenland Ice Sheet outlet glaciers
data
50- meter spacing
outlet glacier
Felikson, Denis (10493115)
Catania, Ginny (8260374)
Bartholomaus, Timothy (10493118)
Morlighem, Mathieu (10493121)
Noël, Brice (8329347)
Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers
topic_facet Biochemistry
Genetics
Physiology
Pharmacology
Biotechnology
Evolutionary Biology
Ecology
Developmental Biology
Cancer
Infectious Diseases
Plant Biology
Chemical Sciences not elsewhere classified
Physical Sciences not elsewhere classified
18 iterated flowlines
iterated flowlines
141 Greenland Ice Sheet outlet glaciers
DOI
NetCDF files
XXXX
NN
Greenland Ice Sheet outlet glaciers
data
50- meter spacing
outlet glacier
description This dataset contains limits to the inland diffusion of terminus-initiated thinning along 141 Greenland Ice Sheet outlet glaciers. The data is separated in 187 files and each file contains data for an individual outlet glacier or a branch of an outlet glacier. Shapefiles and NetCDF files are provided with data for 6 primary flowlines, and up to 18 iterated flowlines, spanning the width of each glacier. The iterated flowlines are used to find the furthest inland thinning limits (see the associated publication for more details). Files are named glacierXXXX where XXXX is the identifier for an individual glacier or branch. Identifiers that begin with a letter ('a', 'b', 'c', or 'd') represent a separate branch of an outlet glacier. Shapefiles filenames have an additional _iterNN suffix, where NN identifies the iteration number of that set of flowlines. The shapefiles contain multiple features, each of which is one flowline. Each flowline has a "flowline" attribute, a two-digit identifier that corresponds to the same identifier in the NetCDF files. The NetCDF files contains glacier geometry, dynamic thinning, Peclet number, and identified knickpoints, extracted and calculated along the primary and iterated flowlines. The flowlines in the NetCDF files have a regular 50-meter spacing between nodes, whereas the flowlines in the shapefiles have a coarser and irregular spacing. More information on how the flowlines were derived and how data was extracted and calculated is in the associated publication (Felikson et al., 2020), with a DOI to be provided. Example code that can be used to read and plot the data can be obtained at http://doi.org/10.5281/zenodo.4284715.
format Dataset
author Felikson, Denis (10493115)
Catania, Ginny (8260374)
Bartholomaus, Timothy (10493118)
Morlighem, Mathieu (10493121)
Noël, Brice (8329347)
author_facet Felikson, Denis (10493115)
Catania, Ginny (8260374)
Bartholomaus, Timothy (10493118)
Morlighem, Mathieu (10493121)
Noël, Brice (8329347)
author_sort Felikson, Denis (10493115)
title Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers
title_short Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers
title_full Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers
title_fullStr Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers
title_full_unstemmed Inland limits to diffusion of thinning along Greenland Ice Sheet outlet glaciers
title_sort inland limits to diffusion of thinning along greenland ice sheet outlet glaciers
publishDate 2020
url https://doi.org/10.5281/zenodo.4284759
geographic Greenland
geographic_facet Greenland
genre glacier
Greenland
Ice Sheet
genre_facet glacier
Greenland
Ice Sheet
op_relation https://figshare.com/articles/dataset/Inland_limits_to_diffusion_of_thinning_along_Greenland_Ice_Sheet_outlet_glaciers/14336988
doi:10.5281/zenodo.4284759
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.5281/zenodo.4284759
_version_ 1766008973120503808