On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea

Thesis (M.S.) University of Alaska Fairbanks, 2015 Impacts of a rapidly changing climate are amplified in the Arctic. The most notorious change has come in the form of record-breaking summertime sea-ice retreat. Larger areas of open water and a prolonged ice-free season create opportunity for some i...

Full description

Bibliographic Details
Main Author: Deemer, Gregory Joseph
Other Authors: Bhatt, Uma, Eicken, Hajo, Hutchings, Jennifer, Danielson, Seth
Format: Thesis
Language:English
Published: 2015
Subjects:
Online Access:http://hdl.handle.net/11122/4917
id ftunivalaska:oai:scholarworks.alaska.edu:11122/4917
record_format openpolar
spelling ftunivalaska:oai:scholarworks.alaska.edu:11122/4917 2023-05-15T14:56:55+02:00 On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea Deemer, Gregory Joseph Bhatt, Uma Eicken, Hajo Hutchings, Jennifer Danielson, Seth 2015-05 http://hdl.handle.net/11122/4917 en_US eng http://hdl.handle.net/11122/4917 Department of Atmospheric Sciences Thesis ms 2015 ftunivalaska 2023-02-23T21:36:19Z Thesis (M.S.) University of Alaska Fairbanks, 2015 Impacts of a rapidly changing climate are amplified in the Arctic. The most notorious change has come in the form of record-breaking summertime sea-ice retreat. Larger areas of open water and a prolonged ice-free season create opportunity for some industries, but bring new challenges to indigenous populations that rely on sea-ice cover for subsistence. Observed and projected increases in Arctic maritime activities require accurate sea-ice forecasts on the weather timescale, which are currently lacking. Motivated by emerging needs, this study explores how new modeling developments and local-scale observations can contribute to improving sea-ice forecasts. The Arctic Cap Nowcast/Forecast System, a research sea-ice forecast model developed by the U.S. Navy, is evaluated for forecast skill. Forecasts of ice concentration, thickness, and drift speed produced by the model from April through June 2011 in the Bering Sea have been investigated to determine how the model performs relative to persistence and climatology. Results show that model forecasts can outperform forecasts based on climatology or persistence. However, predictive skill is less consistent during powerful, synoptic-scale events and near the Bering Slope. Forecast case studies in Western Alaska are presented. Community-based observations from recognized indigenous sea-ice experts have been analyzed to gauge the prospect of using local observations in the operational sea-ice monitoring and prediction process. Local observations are discussed in the context of cross-validating model guidance, data sources used in operational ice monitoring, and public sea-ice information products issued by the U.S. National Weather Service. Instrumentation for observing sea-ice and weather at the local scale was supplied to key observers. The instrumentation shows utility in the field and may help translate the context of indigenous observations and provide ground-truth data for use by forecasters. Chapter 1. ... Thesis Arctic Bering Sea Sea ice Alaska University of Alaska: ScholarWorks@UA Arctic Bering Sea Fairbanks
institution Open Polar
collection University of Alaska: ScholarWorks@UA
op_collection_id ftunivalaska
language English
description Thesis (M.S.) University of Alaska Fairbanks, 2015 Impacts of a rapidly changing climate are amplified in the Arctic. The most notorious change has come in the form of record-breaking summertime sea-ice retreat. Larger areas of open water and a prolonged ice-free season create opportunity for some industries, but bring new challenges to indigenous populations that rely on sea-ice cover for subsistence. Observed and projected increases in Arctic maritime activities require accurate sea-ice forecasts on the weather timescale, which are currently lacking. Motivated by emerging needs, this study explores how new modeling developments and local-scale observations can contribute to improving sea-ice forecasts. The Arctic Cap Nowcast/Forecast System, a research sea-ice forecast model developed by the U.S. Navy, is evaluated for forecast skill. Forecasts of ice concentration, thickness, and drift speed produced by the model from April through June 2011 in the Bering Sea have been investigated to determine how the model performs relative to persistence and climatology. Results show that model forecasts can outperform forecasts based on climatology or persistence. However, predictive skill is less consistent during powerful, synoptic-scale events and near the Bering Slope. Forecast case studies in Western Alaska are presented. Community-based observations from recognized indigenous sea-ice experts have been analyzed to gauge the prospect of using local observations in the operational sea-ice monitoring and prediction process. Local observations are discussed in the context of cross-validating model guidance, data sources used in operational ice monitoring, and public sea-ice information products issued by the U.S. National Weather Service. Instrumentation for observing sea-ice and weather at the local scale was supplied to key observers. The instrumentation shows utility in the field and may help translate the context of indigenous observations and provide ground-truth data for use by forecasters. Chapter 1. ...
author2 Bhatt, Uma
Eicken, Hajo
Hutchings, Jennifer
Danielson, Seth
format Thesis
author Deemer, Gregory Joseph
spellingShingle Deemer, Gregory Joseph
On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea
author_facet Deemer, Gregory Joseph
author_sort Deemer, Gregory Joseph
title On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea
title_short On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea
title_full On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea
title_fullStr On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea
title_full_unstemmed On using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the Bering Sea
title_sort on using numerical sea-ice prediction and indigenous observations to improve operational sea-ice forecasts during spring in the bering sea
publishDate 2015
url http://hdl.handle.net/11122/4917
geographic Arctic
Bering Sea
Fairbanks
geographic_facet Arctic
Bering Sea
Fairbanks
genre Arctic
Bering Sea
Sea ice
Alaska
genre_facet Arctic
Bering Sea
Sea ice
Alaska
op_relation http://hdl.handle.net/11122/4917
Department of Atmospheric Sciences
_version_ 1766328980246364160