Densification and Recrystallization of Firn at Dome C, Central East Antarctica

A study of variations of density, crystal size, and crystal shape with depth to 50 m depth for Dome C, central East Antarctica, is reported. The critical point in the depth-density profile is less sharply defined than at many locations. Benson's model for variation of pore space with depth prov...

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Main Author: Alley, Richard B.
Other Authors: Williams, I. M. (Ian M.)
Format: Thesis
Language:English
Published: The Ohio State University 1980
Subjects:
Gow
Online Access:http://hdl.handle.net/1811/58532
id ftohiostateu:oai:kb.osu.edu:1811/58532
record_format openpolar
spelling ftohiostateu:oai:kb.osu.edu:1811/58532 2023-05-15T13:54:37+02:00 Densification and Recrystallization of Firn at Dome C, Central East Antarctica Alley, Richard B. Williams, I. M. (Ian M.) 1980-06 application/pdf http://hdl.handle.net/1811/58532 en_US eng The Ohio State University The Ohio State University. Department of Geology and Mineralogy Honors Theses; 1980 http://hdl.handle.net/1811/58532 Thesis 1980 ftohiostateu 2020-08-22T19:31:56Z A study of variations of density, crystal size, and crystal shape with depth to 50 m depth for Dome C, central East Antarctica, is reported. The critical point in the depth-density profile is less sharply defined than at many locations. Benson's model for variation of pore space with depth provides an adequate, but not perfect, description of the observed behavior. An empirical relation discovered by Gow for dependence of depth-density profiles on temperature and accumulation cannot be extended to the low-temperature, low-accumulation conditions of Dome C. The observed profile differs from log-linear densification expected for unconfined sintering of ceramics in a manner which is explicable if load has an important effect on densification. The relative behavior of the Dome C and South Pole age-density profiles also shows that load is an important parameter in firn densification. The core consists of dense, fine-grained wind crusts contained in more-extensive, less-dense, coarse-grained firn. Density ranges between superjacent coarse and fine layers decrease exponentially with depth. Lower rates of densification are observed for fine-grained firn because such firn has greater area of grain boundary per unit volume than coarse firn, and so resists deformation under load better. A simple unconfined-sintering model for densification predicts more rapid densification of fine firn, and thus is shown to have limited applicability. Load and mean annual temperature are probably the controlling factors in firn densification between 5 m and 50 m depth. The rate of growth of crystals in fine layers is almost three times that of crystals in coarse layers. The rate of growth of coarse crystals agrees well with that predicted by Gow. Variations in crystal sphericity, internal free surface, and crystal boundary area with depth reveal that coarse-grained firn consists of several genetically-different types of firn. Thin sections of firn may be prepared using the nontoxic chemical dodecane as a filler. To determine mean crystal area in a section, the 50 largest crystals following the 5 largest crystals should be measured, such that about 25% of the crystals in a section are measured. No embargo Thesis Antarc* Antarctica East Antarctica South pole South pole Ohio State University (OSU): Knowledge Bank East Antarctica Gow ENVELOPE(162.667,162.667,-71.333,-71.333) South Pole
institution Open Polar
collection Ohio State University (OSU): Knowledge Bank
op_collection_id ftohiostateu
language English
description A study of variations of density, crystal size, and crystal shape with depth to 50 m depth for Dome C, central East Antarctica, is reported. The critical point in the depth-density profile is less sharply defined than at many locations. Benson's model for variation of pore space with depth provides an adequate, but not perfect, description of the observed behavior. An empirical relation discovered by Gow for dependence of depth-density profiles on temperature and accumulation cannot be extended to the low-temperature, low-accumulation conditions of Dome C. The observed profile differs from log-linear densification expected for unconfined sintering of ceramics in a manner which is explicable if load has an important effect on densification. The relative behavior of the Dome C and South Pole age-density profiles also shows that load is an important parameter in firn densification. The core consists of dense, fine-grained wind crusts contained in more-extensive, less-dense, coarse-grained firn. Density ranges between superjacent coarse and fine layers decrease exponentially with depth. Lower rates of densification are observed for fine-grained firn because such firn has greater area of grain boundary per unit volume than coarse firn, and so resists deformation under load better. A simple unconfined-sintering model for densification predicts more rapid densification of fine firn, and thus is shown to have limited applicability. Load and mean annual temperature are probably the controlling factors in firn densification between 5 m and 50 m depth. The rate of growth of crystals in fine layers is almost three times that of crystals in coarse layers. The rate of growth of coarse crystals agrees well with that predicted by Gow. Variations in crystal sphericity, internal free surface, and crystal boundary area with depth reveal that coarse-grained firn consists of several genetically-different types of firn. Thin sections of firn may be prepared using the nontoxic chemical dodecane as a filler. To determine mean crystal area in a section, the 50 largest crystals following the 5 largest crystals should be measured, such that about 25% of the crystals in a section are measured. No embargo
author2 Williams, I. M. (Ian M.)
format Thesis
author Alley, Richard B.
spellingShingle Alley, Richard B.
Densification and Recrystallization of Firn at Dome C, Central East Antarctica
author_facet Alley, Richard B.
author_sort Alley, Richard B.
title Densification and Recrystallization of Firn at Dome C, Central East Antarctica
title_short Densification and Recrystallization of Firn at Dome C, Central East Antarctica
title_full Densification and Recrystallization of Firn at Dome C, Central East Antarctica
title_fullStr Densification and Recrystallization of Firn at Dome C, Central East Antarctica
title_full_unstemmed Densification and Recrystallization of Firn at Dome C, Central East Antarctica
title_sort densification and recrystallization of firn at dome c, central east antarctica
publisher The Ohio State University
publishDate 1980
url http://hdl.handle.net/1811/58532
long_lat ENVELOPE(162.667,162.667,-71.333,-71.333)
geographic East Antarctica
Gow
South Pole
geographic_facet East Antarctica
Gow
South Pole
genre Antarc*
Antarctica
East Antarctica
South pole
South pole
genre_facet Antarc*
Antarctica
East Antarctica
South pole
South pole
op_relation The Ohio State University. Department of Geology and Mineralogy Honors Theses; 1980
http://hdl.handle.net/1811/58532
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