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Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska

Spruce beetle-induced (Dendroctonus rufipennis (Kirby)) mortality on the Kenai Peninsula has heightened local wildfire risk as canopy loss facilitates the conversion from bare to fire-prone grassland. We collected images from NASA satellite-based Earth observations to visualize land cover succession...

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Autores principales: Hess, Katherine A., Cullen, Cheila, Cobian-Iñiguez, Jeanette, Lenske, Victor, Ramthun, Jacob S., Magness, Dawn R., Bolten, John D., Foster, Adrianna C., Spruce, Joseph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6999731/
https://www.ncbi.nlm.nih.gov/pubmed/32021702
http://dx.doi.org/10.3390/rs11030283
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author Hess, Katherine A.
Cullen, Cheila
Cobian-Iñiguez, Jeanette
Lenske, Victor
Ramthun, Jacob S.
Magness, Dawn R.
Bolten, John D.
Foster, Adrianna C.
Spruce, Joseph
author_facet Hess, Katherine A.
Cullen, Cheila
Cobian-Iñiguez, Jeanette
Lenske, Victor
Ramthun, Jacob S.
Magness, Dawn R.
Bolten, John D.
Foster, Adrianna C.
Spruce, Joseph
author_sort Hess, Katherine A.
collection PubMed
description Spruce beetle-induced (Dendroctonus rufipennis (Kirby)) mortality on the Kenai Peninsula has heightened local wildfire risk as canopy loss facilitates the conversion from bare to fire-prone grassland. We collected images from NASA satellite-based Earth observations to visualize land cover succession at roughly five-year intervals following a severe, mid-1990’s beetle infestation to the present. We classified these data by vegetation cover type to quantify grassland encroachment patterns over time. Raster band math provided a change detection analysis on the land cover classifications. Results indicate the highest wildfire risk is linked to herbaceous and black spruce land cover types, The resulting land cover change image will give the Kenai National Wildlife Refuge (KENWR) ecologists a better understanding of where forests have converted to grassland since the 1990s. These classifications provided a foundation for us to integrate digital elevation models (DEMs), temperature, and historical fire data into a model using Python for assessing and mapping changes in wildfire risk. Spatial representations of this risk will contribute to a better understanding of ecological trajectories of beetle-affected landscapes, thereby informing management decisions at KENWR.
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spelling pubmed-69997312020-02-04 Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska Hess, Katherine A. Cullen, Cheila Cobian-Iñiguez, Jeanette Lenske, Victor Ramthun, Jacob S. Magness, Dawn R. Bolten, John D. Foster, Adrianna C. Spruce, Joseph Remote Sens (Basel) Article Spruce beetle-induced (Dendroctonus rufipennis (Kirby)) mortality on the Kenai Peninsula has heightened local wildfire risk as canopy loss facilitates the conversion from bare to fire-prone grassland. We collected images from NASA satellite-based Earth observations to visualize land cover succession at roughly five-year intervals following a severe, mid-1990’s beetle infestation to the present. We classified these data by vegetation cover type to quantify grassland encroachment patterns over time. Raster band math provided a change detection analysis on the land cover classifications. Results indicate the highest wildfire risk is linked to herbaceous and black spruce land cover types, The resulting land cover change image will give the Kenai National Wildlife Refuge (KENWR) ecologists a better understanding of where forests have converted to grassland since the 1990s. These classifications provided a foundation for us to integrate digital elevation models (DEMs), temperature, and historical fire data into a model using Python for assessing and mapping changes in wildfire risk. Spatial representations of this risk will contribute to a better understanding of ecological trajectories of beetle-affected landscapes, thereby informing management decisions at KENWR. 2019-02-01 2019 /pmc/articles/PMC6999731/ /pubmed/32021702 http://dx.doi.org/10.3390/rs11030283 Text en Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hess, Katherine A.
Cullen, Cheila
Cobian-Iñiguez, Jeanette
Lenske, Victor
Ramthun, Jacob S.
Magness, Dawn R.
Bolten, John D.
Foster, Adrianna C.
Spruce, Joseph
Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska
title Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska
title_full Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska
title_fullStr Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska
title_full_unstemmed Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska
title_short Satellite-Based Assessment of Grassland Conversion and Related Fire Disturbance in the Kenai Peninsula, Alaska
title_sort satellite-based assessment of grassland conversion and related fire disturbance in the kenai peninsula, alaska
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6999731/
https://www.ncbi.nlm.nih.gov/pubmed/32021702
http://dx.doi.org/10.3390/rs11030283
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