Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada

Sand and sand-ice fillings of Quaternary thermal contraction cracks on Summer and Hadwen Islands, Western Arctic Canada, comprise sand veins, sand wedges, and composite wedges. Sand wedges in diamicton-poor ice, diamicton-rich ice, and ice-rich sand generally have simple V shapes, whereas those in i...

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Main Author: Julian Murton
Format: Article in Journal/Newspaper
Language:unknown
Published: 1996
Subjects:
Online Access:https://figshare.com/articles/journal_contribution/Morphology_and_paleoenvironmental_significance_of_quaternary_sand_veins_sand_wedges_and_composite_wedges_Tuktoyaktuk_Coastlands_Western_Artic_Canada/23318963
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spelling ftunivsussexfig:oai:figshare.com:article/23318963 2023-06-18T03:39:33+02:00 Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada Julian Murton 1996-01-01T00:00:00Z https://figshare.com/articles/journal_contribution/Morphology_and_paleoenvironmental_significance_of_quaternary_sand_veins_sand_wedges_and_composite_wedges_Tuktoyaktuk_Coastlands_Western_Artic_Canada/23318963 unknown 10779/uos.23318963.v1 https://figshare.com/articles/journal_contribution/Morphology_and_paleoenvironmental_significance_of_quaternary_sand_veins_sand_wedges_and_composite_wedges_Tuktoyaktuk_Coastlands_Western_Artic_Canada/23318963 Copyright not evaluated Uncategorised value Text Journal contribution 1996 ftunivsussexfig 2023-06-07T23:32:20Z Sand and sand-ice fillings of Quaternary thermal contraction cracks on Summer and Hadwen Islands, Western Arctic Canada, comprise sand veins, sand wedges, and composite wedges. Sand wedges in diamicton-poor ice, diamicton-rich ice, and ice-rich sand generally have simple V shapes, whereas those in ice-poor sand vary from V-shaped to irregular forms and may contain inclusions of host sand. These morphological differences are explained in terms of the relative tensile strength of the wedge and host materials. Bundles of sand veins within sand wedges indicate discrete stages of wedge growth. Criteria previously proposed for identifying relict sand wedges are reevaluated: (1) Not all wedges are V.shaped; some are irregular forms with offshoot sand veins. (2) A vertical or steeply dipping lamination is not apparent within all wedges; some appear to have a massive fill, suggesting that the sand source can be texturally and mineralogically very uniform. (3) Individual sand veins and groups of veins can be just as common within sandy host materials as the better-known sand wedges. Composite sand-ice wedges at Crumbling Point, Summer Island, commenced growth as composite wedges, continued as sand wedges, were modified by thermokarst, and, in some cases, recommenced at a stratigraphically higher level as ice wedges. The sand-wedge and ice-wedge stages reflect environmental change from cold, arid, and windy proglacial conditions during Oxygen Isotope Stage 2 to warmer and wetter interglacial conditions during OI Stage 1. Article in Journal/Newspaper Arctic Thermokarst University of Sussex: Figshare Arctic Canada Tuktoyaktuk ENVELOPE(-133.006,-133.006,69.425,69.425) Summer Island ENVELOPE(-133.906,-133.906,69.583,69.583) Crumbling Point ENVELOPE(-133.906,-133.906,69.607,69.607)
institution Open Polar
collection University of Sussex: Figshare
op_collection_id ftunivsussexfig
language unknown
topic Uncategorised value
spellingShingle Uncategorised value
Julian Murton
Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada
topic_facet Uncategorised value
description Sand and sand-ice fillings of Quaternary thermal contraction cracks on Summer and Hadwen Islands, Western Arctic Canada, comprise sand veins, sand wedges, and composite wedges. Sand wedges in diamicton-poor ice, diamicton-rich ice, and ice-rich sand generally have simple V shapes, whereas those in ice-poor sand vary from V-shaped to irregular forms and may contain inclusions of host sand. These morphological differences are explained in terms of the relative tensile strength of the wedge and host materials. Bundles of sand veins within sand wedges indicate discrete stages of wedge growth. Criteria previously proposed for identifying relict sand wedges are reevaluated: (1) Not all wedges are V.shaped; some are irregular forms with offshoot sand veins. (2) A vertical or steeply dipping lamination is not apparent within all wedges; some appear to have a massive fill, suggesting that the sand source can be texturally and mineralogically very uniform. (3) Individual sand veins and groups of veins can be just as common within sandy host materials as the better-known sand wedges. Composite sand-ice wedges at Crumbling Point, Summer Island, commenced growth as composite wedges, continued as sand wedges, were modified by thermokarst, and, in some cases, recommenced at a stratigraphically higher level as ice wedges. The sand-wedge and ice-wedge stages reflect environmental change from cold, arid, and windy proglacial conditions during Oxygen Isotope Stage 2 to warmer and wetter interglacial conditions during OI Stage 1.
format Article in Journal/Newspaper
author Julian Murton
author_facet Julian Murton
author_sort Julian Murton
title Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada
title_short Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada
title_full Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada
title_fullStr Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada
title_full_unstemmed Morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, Tuktoyaktuk Coastlands, Western Artic Canada
title_sort morphology and paleoenvironmental significance of quaternary sand veins, sand wedges, and composite wedges, tuktoyaktuk coastlands, western artic canada
publishDate 1996
url https://figshare.com/articles/journal_contribution/Morphology_and_paleoenvironmental_significance_of_quaternary_sand_veins_sand_wedges_and_composite_wedges_Tuktoyaktuk_Coastlands_Western_Artic_Canada/23318963
long_lat ENVELOPE(-133.006,-133.006,69.425,69.425)
ENVELOPE(-133.906,-133.906,69.583,69.583)
ENVELOPE(-133.906,-133.906,69.607,69.607)
geographic Arctic
Canada
Tuktoyaktuk
Summer Island
Crumbling Point
geographic_facet Arctic
Canada
Tuktoyaktuk
Summer Island
Crumbling Point
genre Arctic
Thermokarst
genre_facet Arctic
Thermokarst
op_relation 10779/uos.23318963.v1
https://figshare.com/articles/journal_contribution/Morphology_and_paleoenvironmental_significance_of_quaternary_sand_veins_sand_wedges_and_composite_wedges_Tuktoyaktuk_Coastlands_Western_Artic_Canada/23318963
op_rights Copyright not evaluated
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