Fire near Akseki (TR)

37.04°N, 31.70°E · first detected on 19 July at 12:21

What the satellites measured

This fire was tracked from 19 July at 12:21 to 19 July at 19:56, through 24 satellite detections. The detected extent reaches 1,015 ha.

Detected extent
1,015 ha
Cumulative power
566 MW
Peak power
97 MW
Detections
24

“Detected extent” is not “burned area”: it is the union of the ground footprints of the satellite pixels, and a 375 m pixel counts in full even when only a forest edge is burning. Compared with press figures it is in practice one and a half to three times the area reported. Detections taken at the edge of the scan swath, too coarse to measure anything at all, are excluded. These figures come from thermal satellite detection and are not an official assessment: only the local fire and civil protection authorities are authoritative.

Replay how the fire spread

The map is centred on this fire and loads only its detections. The timeline below covers the whole fire, from the first satellite pass to the last. “1 h” shows what is burning within an hour of the chosen moment : the map then follows the power curve below and empties when it falls. “12 h” stacks twelve hours , as the home map does, where stacking avoids an empty screen between two satellite passes. Both are true, but they say different things.

The detected extent

Outline of the burned area near Akseki (TR), drawn over satellite imagery
The outline is the union of the ground footprints of every satellite detection of this fire, from the first pass to the last. The background is the EOX cloudless Sentinel-2 mosaic, 2024 vintage: it shows the landscape BEFORE these fires, not the burn scar.

The spread, pass after pass

  1. Akseki (TR) seen by Sentinel-2 on 14 July

    14 July

    before the fire

  2. Akseki (TR) seen by Sentinel-2 on 19 July

    19 July

    during

  3. Akseki (TR) seen by Sentinel-2 on 21 July

    21 July

    after

One image per usable Sentinel-2 pass, on the same framing throughout so that the comparison means something. The satellite comes back every two to five days and clouds rule out some of the passes: the gaps in the series are days without an image, not days without fire.

How the radiative power evolved

One point per satellite pass: the sum of the fire radiative power measured over the fire. This is the curve that says whether the fire eased off or picked up again, which no cumulative figure shows. The window covers 30 days; beyond that, clustering would merge two successive fires in the same place.

Fire dynamics

Loading history…

Satellite passes in detail

PassPowerDetectionsSensor
19 July at 19:569 MW1Terra
19 July at 15:18287 MW6Aqua
19 July at 14:04140 MW7N20
19 July at 13:45118 MW7N
19 July at 13:085 MW1N21
19 July at 12:218 MW2N20

Follow live

The map shows active fires in 3D, with smoke plumes, forecast wind, drop zones and the live position of the Canadair, Dash 8 and Air Tractor aircraft of the French Sécurité civile.

Open the fire map

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