Late spring 2018 land-fast sea ice and sub-ice platelet layer thicknesses from electromagnetic induction soundings along transect West-East-EM-Transect_20181107 in McMurdo Sound, Antarctica
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| Format: | Dataset Open Access |
| Sprache: | en |
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PANGAEA
2024
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| author | Brett, Gemma Marie Leonard, Gregory H Rack, Wolfgang Irvin, Anne Haas, Christian Langhorne, Patricia J |
| author_facet | Brett, Gemma Marie Leonard, Gregory H Rack, Wolfgang Irvin, Anne Haas, Christian Langhorne, Patricia J |
| collection | Datos científicos de ciencias marinas y ambientales |
| contents | Ground-based electromagnetic induction (EM) measurements of land-fast sea ice and sub-ice platelet layer (SIPL) thickness distributions were carried out in McMurdo Sound, Antarctica in late spring (November 1-19) of 2018. Repeated west to east EM transects were carried out across McMurdo Sound along latitude 77.767°S. The EM data was acquired using a frequency-domain Geonics Ltd EM31-MK2 instrument mounted on a sledge and towed by skidoo. The thicknesses of consolidated ice (sea ice plus the snow layer) and the sub-ice platelet layer were simultaneously retrieved from the EM31 measured response using forward modelling and inversion methods of Irvin (2018). Variability in EM thicknesses detected significant growth of sub-ice platelet layer over the 18-day survey period (Brett et al., 2024). |
| format | Dataset Open Access |
| id | pangaea_https___doi_org_10_1594_PANGAEA_968705 |
| institution | PANGAEA |
| language | en |
| publishDate | 2024 |
| publisher | PANGAEA |
| record_format | pangaea |
| spellingShingle | Late spring 2018 land-fast sea ice and sub-ice platelet layer thicknesses from electromagnetic induction soundings along transect West-East-EM-Transect_20181107 in McMurdo Sound, Antarctica Brett, Gemma Marie Leonard, Gregory H Rack, Wolfgang Irvin, Anne Haas, Christian Langhorne, Patricia J Antarctic sea ice; DATE/TIME; DEEP SOUTH NATIONAL SCIENCE CHALLENGE: Targeted observation and process-informed modelling of Antarctic sea ice; electromagnetic induction; Electromagnetic sounding (EM), Geonics Ltd EM31-MK2; GEM; Ground-based electromagnetic induction; ice-ocean interaction; Ice thickness; Identification; LATITUDE; LONGITUDE; McMurdo; Sea ice thickness; Sub-ice platelet layer; Sub-ice platelet-layer thickness; TOPIMASI; West-East-EM-Transect_20181107 Ground-based electromagnetic induction (EM) measurements of land-fast sea ice and sub-ice platelet layer (SIPL) thickness distributions were carried out in McMurdo Sound, Antarctica in late spring (November 1-19) of 2018. Repeated west to east EM transects were carried out across McMurdo Sound along latitude 77.767°S. The EM data was acquired using a frequency-domain Geonics Ltd EM31-MK2 instrument mounted on a sledge and towed by skidoo. The thicknesses of consolidated ice (sea ice plus the snow layer) and the sub-ice platelet layer were simultaneously retrieved from the EM31 measured response using forward modelling and inversion methods of Irvin (2018). Variability in EM thicknesses detected significant growth of sub-ice platelet layer over the 18-day survey period (Brett et al., 2024). |
| title | Late spring 2018 land-fast sea ice and sub-ice platelet layer thicknesses from electromagnetic induction soundings along transect West-East-EM-Transect_20181107 in McMurdo Sound, Antarctica |
| topic | Antarctic sea ice; DATE/TIME; DEEP SOUTH NATIONAL SCIENCE CHALLENGE: Targeted observation and process-informed modelling of Antarctic sea ice; electromagnetic induction; Electromagnetic sounding (EM), Geonics Ltd EM31-MK2; GEM; Ground-based electromagnetic induction; ice-ocean interaction; Ice thickness; Identification; LATITUDE; LONGITUDE; McMurdo; Sea ice thickness; Sub-ice platelet layer; Sub-ice platelet-layer thickness; TOPIMASI; West-East-EM-Transect_20181107 |
| url | https://doi.org/10.1594/PANGAEA.968705 |