Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska

Rural Alaskan residents are concerned that the character of the summer discharge in the Yukon River is changing, which is affecting their ability to harvest driftwood. The Yukon River flows northwesterly through British Columbia and the Yukon Territory before flowing southwest through Alaska. In mos...

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Main Authors: Jones, Chas, Hinzman, Larry D., Kielland, Knut
Format: Still Image
Language:English
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/11122/11028
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spelling ftunivalaska:oai:scholarworks.alaska.edu:11122/11028 2023-05-15T18:45:55+02:00 Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska Jones, Chas Hinzman, Larry D. Kielland, Knut 2011-12 http://hdl.handle.net/11122/11028 en_US eng http://hdl.handle.net/11122/11028 Poster 2011 ftunivalaska 2023-02-23T21:37:36Z Rural Alaskan residents are concerned that the character of the summer discharge in the Yukon River is changing, which is affecting their ability to harvest driftwood. The Yukon River flows northwesterly through British Columbia and the Yukon Territory before flowing southwest through Alaska. In most summers, residents of Tanana, Alaska harvest driftwood from the Yukon River during two different periods. Typically, driftwood accompanies high flows on the Yukon River associated with spring break‐up. A few weeks later, a second series of driftwood appears, associated with the “2nd rise,” which is reported to occur during early June. This study examines the nature of the differential timing of high flow events in the Yukon River. Many communities in interior Alaska have grown to rely upon driftwood as an important source of wood, which is used in construction, carving, and as a fuel source. Increasingly, villages in rural Alaska are trying to lessen their dependence upon expensive fossil fuels. To achieve this goal, a number of Alaskan villages have recently installed wood chip‐fired boilers to generate heat and/or electricity and additional boilers are slated to be installed in rural Alaska in the near future. These boilers are largely fed by driftwood, a cheap and easily processed wood source. Some Tanana residents have expressed concern that in recent years, driftwood was not readily available because the “2nd rise” flood event was absent. This is disconcerting for rural Alaskans that are becoming increasingly reliant upon the driftwood flows. Our goal is to determine if the perceived changes in driftwood availability are related to changes in river hydrology and if predicted changes in hydrology may affect driftwood flows and the livelihoods of rural Alaskans. NSF, Resilience and Adaptation Program, Water and Environmental Research Center, Alaska EPSCoR. Still Image Yukon river Alaska Yukon University of Alaska: ScholarWorks@UA Yukon
institution Open Polar
collection University of Alaska: ScholarWorks@UA
op_collection_id ftunivalaska
language English
description Rural Alaskan residents are concerned that the character of the summer discharge in the Yukon River is changing, which is affecting their ability to harvest driftwood. The Yukon River flows northwesterly through British Columbia and the Yukon Territory before flowing southwest through Alaska. In most summers, residents of Tanana, Alaska harvest driftwood from the Yukon River during two different periods. Typically, driftwood accompanies high flows on the Yukon River associated with spring break‐up. A few weeks later, a second series of driftwood appears, associated with the “2nd rise,” which is reported to occur during early June. This study examines the nature of the differential timing of high flow events in the Yukon River. Many communities in interior Alaska have grown to rely upon driftwood as an important source of wood, which is used in construction, carving, and as a fuel source. Increasingly, villages in rural Alaska are trying to lessen their dependence upon expensive fossil fuels. To achieve this goal, a number of Alaskan villages have recently installed wood chip‐fired boilers to generate heat and/or electricity and additional boilers are slated to be installed in rural Alaska in the near future. These boilers are largely fed by driftwood, a cheap and easily processed wood source. Some Tanana residents have expressed concern that in recent years, driftwood was not readily available because the “2nd rise” flood event was absent. This is disconcerting for rural Alaskans that are becoming increasingly reliant upon the driftwood flows. Our goal is to determine if the perceived changes in driftwood availability are related to changes in river hydrology and if predicted changes in hydrology may affect driftwood flows and the livelihoods of rural Alaskans. NSF, Resilience and Adaptation Program, Water and Environmental Research Center, Alaska EPSCoR.
format Still Image
author Jones, Chas
Hinzman, Larry D.
Kielland, Knut
spellingShingle Jones, Chas
Hinzman, Larry D.
Kielland, Knut
Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska
author_facet Jones, Chas
Hinzman, Larry D.
Kielland, Knut
author_sort Jones, Chas
title Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska
title_short Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska
title_full Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska
title_fullStr Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska
title_full_unstemmed Using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior Alaska
title_sort using local knowledge, hydrologic, and climate data to develop a driftwood harvest model in interior alaska
publishDate 2011
url http://hdl.handle.net/11122/11028
geographic Yukon
geographic_facet Yukon
genre Yukon river
Alaska
Yukon
genre_facet Yukon river
Alaska
Yukon
op_relation http://hdl.handle.net/11122/11028
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