USGS Volcanoes: Notices released in the last day.

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ALASKA VOLCANO OBSERVATORY DAILY UPDATE
U.S. Geological Survey
Thursday, October 8, 2026, 1:49 PM AKDT (Thursday, October 8, 2026, 21:49 UTC)


GREAT SITKIN (VNUM #311120)
52°4'35" N 176°6'39" W, Summit Elevation 5709 ft (1740 m)
Current Volcano Alert Level: WATCH
Current Aviation Color Code: ORANGE

Summary: Slow eruption of lava within the summit crater continues.

Lava continues to erupt slowly within the summit crater of Great Sitkin Volcano. Minor earthquakes were detected in the past day. Elevated surface temperatures were observed in satellite data. No activity was observed in cloudy webcam images over the past day.

The current eruption began in July 2021. Since then, lava flows have filled most of the summit crater and advanced into valleys below. There have been no explosions at Great Sitkin Volcano since an event in May 2021. The volcano is monitored using local seismic and infrasound sensors, satellite data, webcams, and regional infrasound and lightning networks.



To view monitoring data and other information about Great Sitkin Volcano: https://avo.alaska.edu/volcano/great-sitkin



SHISHALDIN (VNUM #311360)
54°45'19" N 163°58'16" W, Summit Elevation 9373 ft (2857 m)
Current Volcano Alert Level: ADVISORY
Current Aviation Color Code: YELLOW

Summary: Low-level unrest continues.

Unrest continues with elevated seismic and infrasound activity. Sulfur dioxide emissions were observed in satellite data over the past day. No activity was observed in cloudy satellite and webcam images.

Local seismic and infrasound sensors, web cameras, and a geodetic network are used to monitor Shishaldin Volcano. In addition to the local monitoring network, AVO uses nearby geophysical networks, regional infrasound and lightning data, and satellite images to detect eruptions. 



To view monitoring data and other information about Shishaldin Volcano: https://avo.alaska.edu/volcano/shishaldin





CONTACT INFORMATION:

Matt Haney, Scientist-in-Charge, USGS mhaney@usgs.gov (907) 786-7497

David Fee, Coordinating Scientist, UAFGI dfee1@alaska.edu (907) 378-5460



Contact AVO: https://avo.alaska.edu/contact

The Alaska Volcano Observatory is a cooperative program of the U.S. Geological Survey, the University of Alaska Fairbanks Geophysical Institute, and the Alaska Division of Geological and Geophysical Surveys.






HAWAIIAN VOLCANO OBSERVATORY DAILY UPDATE
U.S. Geological Survey
Thursday, October 8, 2026, 8:25 AM HST (Thursday, October 8, 2026, 18:25 UTC)


KILAUEA (VNUM #332010)
19°25'16" N 155°17'13" W, Summit Elevation 4091 ft (1247 m)
Current Volcano Alert Level: WATCH
Current Aviation Color Code: ORANGE

Summary: Kīlauea summit north vent erupted minor spatter overnight. Kīlauea summit is at a high level of pressurization. Fountaining, intrusions, or an eruption in a new location within the summit region could occur.

See these notices issued yesterday, October 7: 

Summit Observations:

Both the north and south vents in Halemaʻumaʻu showed strong glow and flames in overnight webcam imagery, with minor amounts of spatter erupted by the north vent. Robust plumes of volcanic gas emanate from both vents in day-time webcam views. 

In the past 24 hours, there were 6 shallow earthquakes located across the summit region of Kīlauea. The Uēkahuna tiltmeter (UWD) recorded approximately 1 microradian of inflation between 8 a.m. and 4 p.m. yesterday, October 7. Since then, UWD has shown slow deflation totaling about a microradian, resulting in no net change in tilt over the past day.

During inter-episode pauses, the sulfur dioxide (SO2) emission rate from the summit typically varies between 1,000 and 5,000 tonnes per day. Winds are currently forecast from the south/southwest, which could result in voggy conditions in the communities around Kīlauea summit.

Rift Zone Observations:

Rates of seismicity and ground deformation remain low in the East Rift Zone and Southwest Rift Zone. SO2 emissions from the East Rift Zone remain below the detection limit. No significant ground deformation was recorded in either rift zone.

Analysis:

Kīlauea had been erupting episodically between December 23, 2024, and August 25, 2026, from two vents (north and south) in Halema‘uma‘u at the summit. Lava fountaining episodes generally lasted for less than 12 hours and were separated by pauses of two or more weeks. Irregular patterns in inflation and deflation at Kīlauea summit since the most recent lava fountaining episode, number 54 on August 25, 2026, prevent forecast modeling for when the next fountaining episode can occur. It is possible that another fountaining episode from the north-south vent complex could occur; however, intrusive activity underneath Kaluapele is also possible, or magma could exploit existing weak crack systems in the summit region to erupt passively (with little or no seismicity or deformation). 

HVO continues to closely monitor Kīlauea and is in contact with Hawai‘i Volcanoes National Park and the Hawai‘i County Civil Defense Agency about eruptive hazards. Kīlauea volcano alert level and aviation color code remain at WATCH/ORANGE and conditions could change rapidly. For further details, see the recent official notices listed below. 

Hazards:

Eruptive activity since December 2024 has been occurring within a closed area of Hawai'i Volcanoes National Park. However, recent intrusions highlight that the location of eruptive activity could change. Intrusions can also be hazardous with potential to cause earthquakes, ground cracks, and small landslides. The primary hazards at Kīlauea due to eruptive activity and/or intrusions are:

Additionally, close to the eruptive vents, the tephra material on the crater rim is prone to cracking, slumping, and small landslides that sometimes expose hot and molten material within. This underscores the extremely hazardous nature of Kīlauea's caldera rim surrounding Halemaʻumaʻu crater, an area that has been closed to the public since late 2007.



More Information:



The Hawaiian Volcano Observatory is one of five volcano observatories within the U.S. Geological Survey and is responsible for monitoring volcanoes and earthquakes in Hawaiʻi and American Samoa.



CONTACT INFORMATION:

askHVO@usgs.gov



Subscribe to these messages: https://volcanoes.usgs.gov/vns2/
Summary of volcanic hazards from eruptions: https://www.usgs.gov/observatories/hvo/hazards
Recent earthquakes in Hawaiʻi (map and list): https://www.usgs.gov/observatories/hvo
Explanation of Volcano Alert Levels and Aviation Color Codes: https://www.usgs.gov/programs/VHP/volcanic-alert-levels-characterize-conditions-us-volcanoes






HAWAIIAN VOLCANO OBSERVATORY STATUS REPORT
U.S. Geological Survey
Wednesday, October 7, 2026, 3:13 PM HST (Thursday, October 8, 2026, 01:13 UTC)


KILAUEA (VNUM #332010)
19°25'16" N 155°17'13" W, Summit Elevation 4091 ft (1247 m)
Current Volcano Alert Level: WATCH
Current Aviation Color Code: ORANGE

Summary: Satellite imagery shows the extent of the Sept 30-Oct 1 near surface dike in Kaluapele, the summit caldera of Kīlauea volcano. Recent activity has impacted the ongoing eruption resulting in an update of interpretations and possible outcomes.

Summary

Recent satellite imagery shows the intrusion of magma that was emplaced on September 30 to October 1, 2026, followed fracture systems created in Kaluapele (Kīlauea’s summit caldera) during the 2018 collapse of Halemaʻumaʻu. This intrusion was emplaced very near the surface north of Halemaʻumaʻu resulting in a narrow band of surface deformation and new, small surface fractures.

Photos and map related to the intrusive activity— Kīlauea summit intrusion cracks and ground deformation | U.S. Geological Survey

Emplacement of the Dike Intrusion

An earthquake swarm began around 2 p.m. HST on the afternoon of September 30th about 1 mile (1.5 km) beneath the vent complex in Halemaʻumaʻu. About 30 located events occurred in this area and by about 8 p.m. HST, the seismicity had moved northeastward at the same depth, extending from the rim of Halemaʻumaʻu well into Kaluapele. An additional 50 events were located in this area before 4 a.m. HST on October 1. Earthquakes continued to occur at diminishing rates over the next day, with the largest event being a magnitude-3.5 at 7:55 a.m. HST on October 2, located beneath the northern edge of Halemaʻumaʻu. About 130 earthquakes were recorded in total. 

The USGS Hawaiian Volcano Observatory issued a Status Report describing the intrusion of a dike, a sheet-like vertical body of magma, into the northwestern part of Kaluapele. Dikes are formed when magma intrudes sub-vertical cracks as it moves beneath the surface. The earthquakes were accompanied by a rapid increase in the rate of tilt at the Uēkahuna tiltmeter, which showed more than 40 microradians of change towards the northwest over about eighteen hours. The other summit tiltmeters saw changes of only a few microradians as reported in the Daily Update for Kīlauea on October 1. The localized nature of the tilt changes indicated they were caused by the intrusion of magma near the western rim of Kaluapele and much closer to the surface than the Halemaʻumaʻu magma chamber. The event was described in detail in the Volcano Watch published later in the day on October 1. The combination of seismicity and tiltmeter data was able to provide the timing of events and the general location, but not the shape and size of the dike.

Location and Shape of the Dike Intrusion

Recent Interferometric Synthetic Apeture Radar (InSAR) satellite images were used to construct an interferogram that more precisely determines the shape and location of the dike intrusion. The interferogram requires a satellite image acquired before and one after the event, so it can be several days to two weeks before the pair of images are both acquired. Orbital passes by the Italian Space Agency’s COSMO-SkyMed Second Generation satellites on September 24 and October 2 were used to construct an interferogram map showing the interpreted location and length of dike intrusion.

The patterns of surface deformation show that the dike extends from the established vent area in Halemaʻumaʻu and cuts across the northwestern part of Kaluapele. The deforming areas following parallel to the western rim of Halemaʻumaʻu and Kaluapele are very narrow and elongate, mapping the path of magma intruding within a thousand feet (about 300 meters) or less of the surface.  The path of the dike follows fractures in the caldera floor that formed in 2018 and created a series of new, small fractures that were identified on other satellite images.

Interpretation

The rising elevation of the established north-south-west vents over the course of this eruption has increased the pressure necessary to push magma out of the vents and trigger a major fountain episode.  The normal pattern of consistent rates of summit inflation prior to the onset of fountain episodes began to change to stepwise inflation prior to episode 51. Episodes 51-54 all showed similar patterns of inflation, broken by periods of no inflation that could last for several days. Since the end of fountaining episode 54 on August 25, these inconsistent inflationary patterns have continued.  The opening of six vents on and below the northwest wall of Halemaʻumaʻu on September 14-16 suggests that magma is able to intrude into pre-existing weak, fractured areas along the northern and western boundaries of Halemaʻumaʻu without having to create new space (that event lacked earthquakes and significant deformation). The September 30-October 1 intrusion shows that magma is also exploiting fractures formed within Kaluapele during the 2018 collapse, and that event was accompanied by earthquakes and ground deformation as cracks either open or expand and compress adjacent rocks. The occurrence of these two small-volume intrusions below Kilauea’s summit region within the past month suggests the pressure required to erupt dense degassed magma from the established vents is also high enough to allow magma to exploit weaknesses below the surface along the pre-existing, 2018 crack systems. Magma is being injected into these weak areas as dikes that start from the subsurface dike below the established vents and move northwards into the fractured areas.

Possible Outcomes

The impact of Kīlauea summit increased pressurization and earthquakes on the next episode of lava fountaining, if any, is unknown at this time. It is not possible to forecast an exact outcome of this activity. It is clear that the patterns of forecastable eruptive behavior at Kīlauea summit are no longer being observed in volcano monitoring data. Some potential scenarios are described below based on summit conditions and past episodic eruptions of Kīlauea (1983 Puʻuʻōʻō and the 1969 Maunaulu eruptions). These past eruptions both continued after lava fountaining episodes ended, with fissures opening nearby or collapse of the vents leading to continuous eruption of lava flows.  The possible scenarios presented in the Status Update of September 15 have been updated and presented below. While the current activity is no longer necessarily precursory to a fountaining episode, it is evidence of growing instability in the system that may result in significant change. For both the Puʻuʻōʻō and Maunaulu eruptions the change was from short-lived, high volume episodic fountaining to long-lived, low volume continuous eruption of lava.

HVO Actions

Kīlauea's summit region is monitored with a dense network of instruments recording seismic activity, ground deformation, visual and thermal imagery, and volcanic gas emissions. HVO staff closely monitor these various datasets for changes. Kīlauea Daily Updates are published each morning with a summary of the past 24 hours of activity, and we will issue additional messages as needed based on any significant changes detected. Should volcanic activity change significantly, a Volcanic Activity Notice will be issued. HVO is in frequent communication with Hawai‘i Volcanoes National Park and Hawai‘i County Civil Defense to keep them apprised of Kīlauea's activity.

Hazards

Eruptions within Halemaʻumaʻu or Kaluapele have the potential to produce fountains and lava flows along with associated tephra and volcanic gases. Most of these impacts will be confined to closed areas within and surrounding Kaluapele.  Under certain wind conditions, viewing areas surrounding Kaluapele can be exposed to volcanic gas and tephra fall.

Periods of elevated seismicity may occur at anytime and have the potential to create dangerous rockfalls near and beneath the cliffs surrounding Kaluapele. The highest hazard exposures are along the unstable cliff edges and beneath cliffs. Earthquakes are unpredictable and can occur rapidly; avoid cliff edges and the base of cliffs for safety.

Hawaiʻi Volcanoes National Park establishes closed areas for visitor safety.

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More Information:



The Hawaiian Volcano Observatory is one of five volcano observatories within the U.S. Geological Survey and is responsible for monitoring volcanoes and earthquakes in Hawaiʻi and American Samoa.



CONTACT INFORMATION:

askHVO@usgs.gov



Subscribe to these messages: https://volcanoes.usgs.gov/vns2/
Summary of volcanic hazards from eruptions: https://www.usgs.gov/observatories/hvo/hazards
Recent earthquakes in Hawaiʻi (map and list): https://www.usgs.gov/observatories/hvo
Explanation of Volcano Alert Levels and Aviation Color Codes: https://www.usgs.gov/programs/VHP/volcanic-alert-levels-characterize-conditions-us-volcanoes