Spatial and temporal intercomparison of four global burned area products
We characterize the agreement and disagreement of four publically available burned products (Fire CCI, Copernicus Burnt Area, MODIS MCD45A1, and MODIS MCD64A1) at a finer spatial and temporal scale than previous assessments using a grid of three-dimensional cells defined both in space and in time. O...
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Published in | International journal of digital earth Vol. 12; no. 4; pp. 460 - 484 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
England
Taylor & Francis
03.04.2019
Taylor & Francis Ltd Taylor & Francis Group |
Subjects | |
Online Access | Get full text |
ISSN | 1753-8947 1753-8955 1753-8955 |
DOI | 10.1080/17538947.2018.1433727 |
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Abstract | We characterize the agreement and disagreement of four publically available burned products (Fire CCI, Copernicus Burnt Area, MODIS MCD45A1, and MODIS MCD64A1) at a finer spatial and temporal scale than previous assessments using a grid of three-dimensional cells defined both in space and in time. Our analysis, conducted using seven years of data (2005-2011), shows that estimates of burned area vary greatly between products in terms of total area burned, the location of burning, and the timing of the burning. We use regional and monthly units for analysis to provide insight into the variation between products that can be lost when considering products yearly and/or globally. Comparison with independent, contemporaneous MODIS active fire observations provides one indication of which products most reasonably capture the burning regime. Our results have implications for the use of global burned area products in fire ecology, management and emissions applications. |
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AbstractList | We characterize the agreement and disagreement of four publically available burned products (Fire CCI, Copernicus Burnt Area, MODIS MCD45A1, and MODIS MCD64A1) at a finer spatial and temporal scale than previous assessments using a grid of three-dimensional cells defined both in space and in time. Our analysis, conducted using seven years of data (2005-2011), shows that estimates of burned area vary greatly between products in terms of total area burned, the location of burning, and the timing of the burning. We use regional and monthly units for analysis to provide insight into the variation between products that can be lost when considering products yearly and/or globally. Comparison with independent, contemporaneous MODIS active fire observations provides one indication of which products most reasonably capture the burning regime. Our results have implications for the use of global burned area products in fire ecology, management and emissions applications.We characterize the agreement and disagreement of four publically available burned products (Fire CCI, Copernicus Burnt Area, MODIS MCD45A1, and MODIS MCD64A1) at a finer spatial and temporal scale than previous assessments using a grid of three-dimensional cells defined both in space and in time. Our analysis, conducted using seven years of data (2005-2011), shows that estimates of burned area vary greatly between products in terms of total area burned, the location of burning, and the timing of the burning. We use regional and monthly units for analysis to provide insight into the variation between products that can be lost when considering products yearly and/or globally. Comparison with independent, contemporaneous MODIS active fire observations provides one indication of which products most reasonably capture the burning regime. Our results have implications for the use of global burned area products in fire ecology, management and emissions applications. We characterize the agreement and disagreement of four publically available burned products (Fire CCI, Copernicus Burnt Area, MODIS MCD45A1, and MODIS MCD64A1) at a finer spatial and temporal scale than previous assessments using a grid of three-dimensional cells defined both in space and in time. Our analysis, conducted using seven years of data (2005-2011), shows that estimates of burned area vary greatly between products in terms of total area burned, the location of burning, and the timing of the burning. We use regional and monthly units for analysis to provide insight into the variation between products that can be lost when considering products yearly and/or globally. Comparison with independent, contemporaneous MODIS active fire observations provides one indication of which products most reasonably capture the burning regime. Our results have implications for the use of global burned area products in fire ecology, management and emissions applications. |
Author | Justice, Christopher O. Giglio, Louis Humber, Michael L. Boschetti, Luigi |
AuthorAffiliation | a Department of Geographical Sciences, University of Maryland, College Park, MD, USA b Department of Natural Resources and Society, University of Idaho, Moscow, ID, USA |
AuthorAffiliation_xml | – name: b Department of Natural Resources and Society, University of Idaho, Moscow, ID, USA – name: a Department of Geographical Sciences, University of Maryland, College Park, MD, USA |
Author_xml | – sequence: 1 givenname: Michael L. surname: Humber fullname: Humber, Michael L. email: mhumber@umd.edu organization: Department of Geographical Sciences, University of Maryland – sequence: 2 givenname: Luigi surname: Boschetti fullname: Boschetti, Luigi organization: Department of Natural Resources and Society, University of Idaho – sequence: 3 givenname: Louis surname: Giglio fullname: Giglio, Louis organization: Department of Geographical Sciences, University of Maryland – sequence: 4 givenname: Christopher O. surname: Justice fullname: Justice, Christopher O. organization: Department of Geographical Sciences, University of Maryland |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/30319711$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Area Burning burning patterns emissions fire ecology Fires Global burned area Intercomparison moderate resolution imaging spectroradiometer MODIS product intercomparison Products Regional analysis voxel |
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Title | Spatial and temporal intercomparison of four global burned area products |
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