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The FIRISK correlated positively with four out of seven fire indicators (average fire size, percentage of burnt area on the total municipal area, percentage of cropland and pastures burnt in each fire) in a non-linear fashion.
The fuel mass in burnt area comprised mainly solid deadwood.
Thresholds were optimised to maximise the burnt area detected while limiting under/over-growing of burnt area.
The total accuracy for the burnt area classification was greater than 99%, however this is more a reflection of the small fraction of landscape represented by burnt area rather than the ability to detect burnt area.
ForeFire provided the burnt area at high temporal and spatial resolutions.
Field erosion plots constructed on a burnt area in Birya forest, Israel, confirmed the laboratory results.
Measure the dimensions of the burnt area and calculate the rate of burning along the major axis of the sample.
Using microsatellite markers, this study considered the process whereby a Protea-associated ophiostomatoid fungus, Knoxdaviesia proteae, recolonizes a burnt area.
Although the general features of the fire spread were similar, there were certain discrepancies in the eventual burnt area.
Fire legislative measures led to reduced fire frequencies, whereas improvements in fire-fighting resulted in a reduction of burnt area.
Using burnt area rather than active fire data allowed a better analysis of the spatial association between landscape attributes and burning events.
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