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Daily bulletin on solar and geomagnetic activity from the SIDC

Существующий: 2025 Oct 14 1235 UTC

SIDC Forecast

Солнечные вспышки

M-class flares expected (probability >=50%)

Geomagnetism

Quiet (A<20 and K<4)

Солнечные протоны

Warning condition (activity levels expected to increase, but no numeric forecast given)

10cm fluxAp
14 Oct 2025149017
15 Oct 2025155008
16 Oct 2025158027

Solar Active Regions and flaring

Solar flaring activity was moderate over the past 24 hours with 2 M-class flares recorded. The largest flare was an M2.0 flare (SIDC Flare 5752) peaking on October 14 at 00:41 UTC, which was produced by SIDC Sunspot Group 639 (NOAA Active Region 4246). This region is the most complex on disk and was responsible for most of the flaring activity, including an M1.2 flare (SIDC Flare 5740), peaking on October 13 at 13:18 UTC. SIDC Sunspot group 621 (NOAA Active region 4248) produced C-class flares. The remaining regions were quiet and either stable or in decay. The solar flaring activity is expected to be moderate over the next 24 hours, with M-class flares expected and a chance for X-class flares.

Выбросы корональной массы

The Coronal Mass Ejection (SIDC CME 579) visible to the north in SOHO/LASCO-C2 data from 14:12 UTC and seen in STEREO-A COR2 data from 14:23 UTC, has been further analysed and is expected to impact Earth from early on October 16. Two further CMEs (SIDC CME 580 and 581) were observed to the north in SOHO/LASCO-C2 and to the east in STEREO-A/COR2 data, associated with an M1.9 flare (SIDC Flare 5731) and M1.2 flare (SIDC Flare 5740), respectively. These CMEs are mostly ahead of the Sun-Earth line but a glancing blow from a combination of these may be possible late on October 16. A large filament erupted from the east (E60N10) with an associated CME in LASCO-C2 from 00:48UTC on October 14 but this is not considered to be Earth directed.

Солнечный ветер

The solar wind conditions reflected the ongoing waning influence of the high-speed stream associated with the large equatorial coronal hole that first began to cross the central meridian on October 08 (SIDC Coronal Hole 116). The solar wind speed gradually decreased from 700 km/s to 600 km/s. The interplanetary magnetic field ranged between 1 and 6 nT. Bz ranged between -5 nT and 5 nT. The solar wind speed is expected to continue to decrease slowly over the next 24 hours due to the waning high- speed stream influence. From early on October 16, the conditions may become enhanced due to a possible CME arrival.

Geomagnetism

Geomagnetic conditions reached unsettled conditions (Kp 3+ ), due to the ongoing high speed stream influence. Locally active conditions were observed (K Bel 4). Unsettled to active conditions are expected over the next 24 hours, with periods of minor storm conditions (Kp 5) possible from October 16 in response to the possible CME arrival.

Proton flux levels

The greater than 10 MeV proton flux was below the 10 pfu threshold over the past 24 hours. It is expected to remain below this threshold level over the next 24 hours. There is a small chance of an increase related to any high-level flaring, particularly from SIDC Sunspot Group 639 (NOAA Active Region 4246).

Electron fluxes at geostationary orbit

The greater than 2 MeV electron flux measured by GOES 18 and GOES 19 exceeded the 1000 pfu threshold. The greater than 2 MeV electron flux is expected to again exceed the 1000 pfu threshold over the next 24 hours. The 24-hour electron fluence was at moderate levels and is expected to be a moderate to high levels over the next 24 hours.

Today's estimated international sunspot number (ISN): 132, based on 10 stations.

Solar indices for 13 Oct 2025

Wolf number Catania132
10cm solar flux141
AK Chambon La Forêt022
AK Wingst021
Estimated Ap024
Estimated international sunspot number127 - Based on 21 stations

Noticeable events summary

DayBeginMaxКонецLocStrengthOP10cmCatania/NOAARadio burst types
13130413181339N23W20M1.21F58/4246II/2III/2
14003500410044N25W25M2.0SF58/4246

Provided by the Solar Influences Data analysis Center© - SIDC - Processed by SpaceWeatherLive

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