Glacier-like forms on Mars
More than 1300 glacier-like forms (GLFs) are located in Mars' mid-latitudes. These GLFs are predominantly composed of ice–dust mixtures and are visually similar to terrestrial valley glaciers, showing signs of downhill viscous deformation and an expanded former extent. However, several fundamen...
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doaj-5905e0547c214f99b6bba8d6148d49d72020-11-24T22:39:01ZengCopernicus PublicationsThe Cryosphere1994-04161994-04242014-11-01862047206110.5194/tc-8-2047-2014Glacier-like forms on MarsB. Hubbard0C. Souness1S. Brough2Department of Geography and Earth Sciences, Aberystwyth University, Aberystwyth, UKDepartment of Geography and Earth Sciences, Aberystwyth University, Aberystwyth, UKDepartment of Geography and Earth Sciences, Aberystwyth University, Aberystwyth, UKMore than 1300 glacier-like forms (GLFs) are located in Mars' mid-latitudes. These GLFs are predominantly composed of ice–dust mixtures and are visually similar to terrestrial valley glaciers, showing signs of downhill viscous deformation and an expanded former extent. However, several fundamental aspects of their behavior are virtually unknown, including temporal and spatial variations in mass balance, ice motion, landscape erosion and deposition, and hydrology. Here, we investigate the physical glaciology of martian GLFs. We use satellite images of specific examples and case studies to build on existing knowledge relating to (i) GLF current and former extent, exemplified via a GLF located in Phlegra Montes; (ii) indicators of GLF motion, focusing on the presence of surface crevasses on several GLFs; (iii) processes of GLF debris transfer, focusing on mapping and interpreting boulder trains on one GLF located in Protonilus Mensae, the analysis of which suggests a best-estimate mean GLF flow speed of 7.5 mm a<sup>−1</sup>; and (iv) GLF hydrology, focusing on supra-GLF gulley networks. On the basis of this information, we summarize the current state of knowledge of the glaciology of martian GLFs and identify future research avenues.http://www.the-cryosphere.net/8/2047/2014/tc-8-2047-2014.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
B. Hubbard C. Souness S. Brough |
spellingShingle |
B. Hubbard C. Souness S. Brough Glacier-like forms on Mars The Cryosphere |
author_facet |
B. Hubbard C. Souness S. Brough |
author_sort |
B. Hubbard |
title |
Glacier-like forms on Mars |
title_short |
Glacier-like forms on Mars |
title_full |
Glacier-like forms on Mars |
title_fullStr |
Glacier-like forms on Mars |
title_full_unstemmed |
Glacier-like forms on Mars |
title_sort |
glacier-like forms on mars |
publisher |
Copernicus Publications |
series |
The Cryosphere |
issn |
1994-0416 1994-0424 |
publishDate |
2014-11-01 |
description |
More than 1300 glacier-like forms (GLFs) are located in Mars' mid-latitudes.
These GLFs are predominantly composed of ice–dust mixtures and are visually
similar to terrestrial valley glaciers, showing signs of downhill viscous
deformation and an expanded former extent. However, several fundamental
aspects of their behavior are virtually unknown, including temporal and
spatial variations in mass balance, ice motion, landscape erosion and
deposition, and hydrology. Here, we investigate the physical glaciology of
martian GLFs. We use satellite images of specific examples and case
studies to build on existing knowledge relating to (i) GLF current and
former extent, exemplified via a GLF located in Phlegra Montes; (ii)
indicators of GLF motion, focusing on the presence of surface crevasses on
several GLFs; (iii) processes of GLF debris transfer, focusing on mapping
and interpreting boulder trains on one GLF located in Protonilus Mensae, the
analysis of which suggests a best-estimate mean GLF flow speed of 7.5 mm a<sup>−1</sup>; and
(iv) GLF hydrology, focusing on supra-GLF gulley networks. On the basis of this information, we summarize the current
state of knowledge of the glaciology of martian GLFs and identify future
research avenues. |
url |
http://www.the-cryosphere.net/8/2047/2014/tc-8-2047-2014.pdf |
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