Observed thermal detection
Thermal detection near Sremski
Renewed measurable activity. No satellite detection does not mean an area is safe. Cloud, sensor timing and heat below a sensor’s threshold can hide activity.
This is satellite-based information — always follow instructions from local authorities. Read the method
Satellite
Where the measurements are
Drawn server-side from the public event read model. Every mark is a measurement: nothing here is interpolated, smoothed or inferred.
What each mark means
Footprint at this scaleVIIRS (NASA) 375 mMeteosat (EUMETSAT) ≈2 km · not drawn
- VIIRS (NASA)375 m—
Measured positions. Drawn at true footprint scale, brightest layer.
- Meteosat (EUMETSAT)≈2 km—
Measures how much energy is radiated, which is what sizes the glow. Its individual pixel positions are not stored, so no Meteosat footprint is drawn — inferring one from the sharper layer would put a detection pixel on ground nobody measured.
- True geographic scale, corrected for latitude. Frame is about 52 km across.
- The glow means “an event, roughly here”. Its area follows the measured power and its radius is capped, because an uncapped one would assert a burnt extent nobody measured. The number carries the magnitude.
- Grey is what a later pass has superseded. Colour means the most recent sharp measurement, and it never fades with the clock — only newer knowledge demotes it.
- Coastline, lakes and borders come from a generalised map with about 1,7 km between vertices, so treat every line as the shape of the geography and not as a surveyed boundary. It is drawn under the data and never over it.
- The dashed line is a modelled satellite ground track through the pass that produced the coloured detections — real published orbital parameters, measured pass time, modelled geometry. The swath is 3060 km wide, so where the satellite actually looked from inside it is unknown.
Satellite
Current facts
No satellite detection does not mean an area is safe. Cloud, sensor timing and heat below a sensor’s threshold can hide activity.
MTG · VIIRS · Official
Verification ladder
- SeenObserved
A satellite observed a thermal anomaly here. Repetition belongs at this step: seeing the same thing many times separates noise from signal, but it does not separate heat from bright ground. Observed by: Meteosat (EUMETSAT), VIIRS (NASA).
- ConfirmedObserved
The anomaly carries measured energy or a 375 m position — the calibrated Meteosat fire product, or a VIIRS detection. Persistence alone never lights this step, because sunlit dry ground is persistent by nature.
- QuantifiedObserved
The heat here has a number on it — radiated power, in megawatts — and the number is what lets one reading be compared with another from the same time of day, day by day. Between measurements it says nothing. Measured by: Meteosat (EUMETSAT), VIIRS (NASA).
- Linked to an official sourceNot yet observed
An official update has been matched to this event. Official information outranks everything above it.
Official
Official source record
Official information is shown separately and takes precedence over satellite interpretation.
No official source is linked to this event yet.
What each sensor measured
Meteosat looks every ten minutes; VIIRS passes a few times a day. The contrast is the point — between sharp passes there is no new sharp knowledge, only the ten-minute layer.
VIIRS · Meteosat
Observation history
Day and night observations stay labelled. REYKR does not compare unlike times of day.
Measurement record
Measured over 53 days, from 8 Aug 2026, 00:11 to the most recent observation on 30 Sept 2026, 13:40. Satellite readings in the 72 hours shown: 129, from VIIRS (NASA) and Meteosat (EUMETSAT). Highest single reading in that window: 246.8 MW, Meteosat (EUMETSAT) — 30 Sept 2026, 12:50, .
Observations from the 72 hours up to 30 Sept 2026, 13:40 UTC.
- 30 Sept 2026, 13:30Meteosat6 detections · average 39.5 MW · peak 65.7 MWDay
- 30 Sept 2026, 13:20Meteosat5 detections · average 26.4 MW · peak 38 MWDay
- 30 Sept 2026, 13:10Meteosat5 detections · average 36.2 MW · peak 58 MWDay
- 30 Sept 2026, 13:00Meteosat4 detections · average 64.1 MW · peak 114.4 MWDay
- 30 Sept 2026, 12:50Meteosat6 detections · average 103.2 MW · peak 246.8 MWDay
- 30 Sept 2026, 12:40Meteosat6 detections · average 34.3 MW · peak 53.5 MWDay
- 30 Sept 2026, 12:30Meteosat7 detections · average 62.6 MW · peak 96 MWDay
- 30 Sept 2026, 12:20Meteosat12 detections · average 58.8 MW · peak 219.3 MWDay
- 30 Sept 2026, 12:10Meteosat7 detections · average 58.1 MW · peak 162.2 MWDay
- 30 Sept 2026, 12:00Meteosat5 detections · average 43.4 MW · peak 80.6 MWDay
- 30 Sept 2026, 11:50Meteosat9 detections · average 77.2 MW · peak 176 MWDay
- 30 Sept 2026, 11:40Meteosat10 detections · average 36.5 MW · peak 71 MWDay
- 30 Sept 2026, 11:30Meteosat8 detections · average 34.1 MW · peak 87.6 MWDay
- 30 Sept 2026, 11:20Meteosat8 detections · average 31 MW · peak 65.8 MWDay
- 30 Sept 2026, 11:10Meteosat8 detections · average 37.6 MW · peak 67.2 MWDay
- 30 Sept 2026, 10:58VIIRS28 detections · average 17.4 MW · peak 129.7 MWDay
Nearby
Other detections nearby
Other satellite-observed events within 100 km, nearest first — up to six shown.
This reading did not come back. What else is burning within 100 km is unknown — not an absence.