South Florida Mangrove Damage from Hurricane Irma

Fuente: PANGAEA
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Autori principali: Lagomasino, David, Fatoyinbo, Temilola, Cool, Bruce D, Montesano, Paul, Neigh, Christopher, Corp, Lawrence A, Ott, Lesley, Chavez, Selena, Morton, Douglas C
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2020
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author Lagomasino, David
Fatoyinbo, Temilola
Cool, Bruce D
Montesano, Paul
Neigh, Christopher
Corp, Lawrence A
Ott, Lesley
Chavez, Selena
Morton, Douglas C
author_facet Lagomasino, David
Fatoyinbo, Temilola
Cool, Bruce D
Montesano, Paul
Neigh, Christopher
Corp, Lawrence A
Ott, Lesley
Chavez, Selena
Morton, Douglas C
collection Datos científicos de ciencias marinas y ambientales
contents These data are associated with an article submitted for peer-review on June 9, 2020. The aim of the paper was to quantify the extent of mangrove damage resulting from Hurricane Irma in south Florida. Mangrove damage was quantified using remotely sensed imagery from satellite and airborne lidar sensors. The combination of the observations provided estimates of the change in forest cover and forest structure over the course of a year after the hurricane, ultimately leading to a spatially explicit map of mangrove resilience. Details regarding methods can be found in the supplemental information with the manuscript. The final south Florida Mangrove Resilience model following Hurricane Irma is provided in GEOTIFF format. The raster values range from 1 to 3. The spatial resolution is a nominal 30 m x 30 m (Landsat) resolution. 1 = Low Resilience Class 2 = Intermediate Resilience Class 3 = High Resilience Class
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_920522
institution PANGAEA
language en
publishDate 2020
publisher PANGAEA
record_format pangaea
spellingShingle South Florida Mangrove Damage from Hurricane Irma
Lagomasino, David
Fatoyinbo, Temilola
Cool, Bruce D
Montesano, Paul
Neigh, Christopher
Corp, Lawrence A
Ott, Lesley
Chavez, Selena
Morton, Douglas C
degradation; dieback; Forest; Hurricane; mangroves; remote sensing; Storm surge; vulnerability
These data are associated with an article submitted for peer-review on June 9, 2020. The aim of the paper was to quantify the extent of mangrove damage resulting from Hurricane Irma in south Florida. Mangrove damage was quantified using remotely sensed imagery from satellite and airborne lidar sensors. The combination of the observations provided estimates of the change in forest cover and forest structure over the course of a year after the hurricane, ultimately leading to a spatially explicit map of mangrove resilience. Details regarding methods can be found in the supplemental information with the manuscript. The final south Florida Mangrove Resilience model following Hurricane Irma is provided in GEOTIFF format. The raster values range from 1 to 3. The spatial resolution is a nominal 30 m x 30 m (Landsat) resolution. 1 = Low Resilience Class 2 = Intermediate Resilience Class 3 = High Resilience Class
title South Florida Mangrove Damage from Hurricane Irma
topic degradation; dieback; Forest; Hurricane; mangroves; remote sensing; Storm surge; vulnerability
url https://doi.org/10.1594/PANGAEA.920522