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Lava Inundation Zones Identified for Mauna Loa...
Lava Inundation Zones Identified for Mauna Loa
Lava Inundation Zones Identified for Mauna Loa
Lava Inundation Zones Identified for Mauna Loa

Inundation zones shown on map sheets as numbered colored boxes.

Sluggish breakout on Kīlauea Volcano's coastal plain remains active...
Sluggish breakout on Kīlauea's coastal plain remains active
Sluggish breakout on Kīlauea's coastal plain remains active
Sluggish breakout on Kīlauea's coastal plain remains active

The surface breakout that started on February 10 remains active on the coastal plain just east of the main episode 61g lava flow field. The flow front, pictured here, advanced to about 300 m (0.2 miles) from the emergency access road in Hawai‘i Volcanoes National Park, but appeared to be stalled this afternoon.

The surface breakout that started on February 10 remains active on the coastal plain just east of the main episode 61g lava flow field. The flow front, pictured here, advanced to about 300 m (0.2 miles) from the emergency access road in Hawai‘i Volcanoes National Park, but appeared to be stalled this afternoon.

Pulsing magma supply detected at Kīlauea...
Pulsing magma supply detected at Kīlauea
Pulsing magma supply detected at Kīlauea
Pulsing magma supply detected at Kīlauea

A Valentine's Day 2017 view of Kīlauea Volcano's summit lava lake, here the surface of the lake is about 21 m (69 ft) below the vent rim. The lake diameter is about 255 m or 840 ft. Careful tracking of the amount of ash emitted by lake processes suggest an important new insight into the supply of magma to Kīlauea's summit. USGS Photo.

A Valentine's Day 2017 view of Kīlauea Volcano's summit lava lake, here the surface of the lake is about 21 m (69 ft) below the vent rim. The lake diameter is about 255 m or 840 ft. Careful tracking of the amount of ash emitted by lake processes suggest an important new insight into the supply of magma to Kīlauea's summit. USGS Photo.

Photo of equipment sitting on the deck of a boat which is docked, and it's sleeting or snowing.
R/V Barnes with USGS seismic system
R/V Barnes with USGS seismic system
R/V Barnes with USGS seismic system

University of Washington's research vessel R/V Barnes is loaded with the USGS multichannel seismic system components GeoEel, Chirp, and boom plates.

University of Washington's research vessel R/V Barnes is loaded with the USGS multichannel seismic system components GeoEel, Chirp, and boom plates.

HVO shares its research with the international scientific community...
HVO shares its research with the international scientific community
HVO shares its research with the international scientific community
HVO shares its research with the international scientific community

This is a helicorder seismogram displaying vertical ground velocities at the summit of Hualālai volcano south of the earthquake epicenters. Each line represents 10 minutes and time increases from left to right. Each line continues on the line below. The seismogram starts at 2 am and ends at 2 pm HST on October 15, 2006.

This is a helicorder seismogram displaying vertical ground velocities at the summit of Hualālai volcano south of the earthquake epicenters. Each line represents 10 minutes and time increases from left to right. Each line continues on the line below. The seismogram starts at 2 am and ends at 2 pm HST on October 15, 2006.

Pu‘u ‘Ō‘ō wraps up 24th year of eruption...
Pu‘u ‘Ō‘ō wraps up 24th year of eruption
Pu‘u ‘Ō‘ō wraps up 24th year of eruption
Pu‘u ‘Ō‘ō wraps up 24th year of eruption

Campout flow forms several benches at East Ka`ili`ili. August 5, 2006. View is toward the southwest along the coast of Kīlauea Volcano at the eastern edge of the new lava entry. Note multiple benches forming at base of seacliff, which is about 20 m tall.

Campout flow forms several benches at East Ka`ili`ili. August 5, 2006. View is toward the southwest along the coast of Kīlauea Volcano at the eastern edge of the new lava entry. Note multiple benches forming at base of seacliff, which is about 20 m tall.

Pu‘u ‘Ō‘ō wraps up 24th year of eruption...
Pu‘u ‘Ō‘ō wraps up 24th year of eruption
Pu‘u ‘Ō‘ō wraps up 24th year of eruption
Pu‘u ‘Ō‘ō wraps up 24th year of eruption

Close view of lava spilling into the sea at nearest bench in left photo.

Close view of lava spilling into the sea at nearest bench in left photo.

Map of flow field...
Map of flow field
Map of flow field
Map of flow field

This map shows recent changes to Kīlauea's East Rift Zone lava flow field. The area of the active flow field as of February 16 is shown in pink, while widening and advancement of the active flow as of February 24 is shown in red. Older Pu‘u ‘Ō‘ō lava flows (1983-2016) are shown in gray.

This map shows recent changes to Kīlauea's East Rift Zone lava flow field. The area of the active flow field as of February 16 is shown in pink, while widening and advancement of the active flow as of February 24 is shown in red. Older Pu‘u ‘Ō‘ō lava flows (1983-2016) are shown in gray.

"It's like déjà vu all over again!"...
"It's like déjà vu all over again!"
"It's like déjà vu all over again!"
"It's like déjà vu all over again!"

Webcam view of the lava pond within Pu‘u ‘Ō‘ō crater on July 10, 2007, at 11:19 a.m. H.s.t. Note that the lava level has dropped so the inner edges of the levee on the far side can be seen more clearly.

Webcam view of the lava pond within Pu‘u ‘Ō‘ō crater on July 10, 2007, at 11:19 a.m. H.s.t. Note that the lava level has dropped so the inner edges of the levee on the far side can be seen more clearly.

"It's like déjà vu all over again!"...
"It's like déjà vu all over again!"
"It's like déjà vu all over again!"
"It's like déjà vu all over again!"

Webcam view of the lava pond on July 12 at 10:43 a.m. The lava level is higher than on July 10 and completely fills the levees.

Webcam view of the lava pond on July 12 at 10:43 a.m. The lava level is higher than on July 10 and completely fills the levees.

Remotely measuring the temperature of Kīlauea lava...
Remotely measuring the temperature of Kīlauea lava
Remotely measuring the temperature of Kīlauea lava
Remotely measuring the temperature of Kīlauea lava

A U.S. Geological Survey scientist used a custom-built, high-speed camera to remotely measure the temperature of spattering lava on the surface of Kīlauea Volcano's summit lava lake (background). This particular experiment, conducted from the Jaggar Museum overlook in Hawai‘i Volcanoes National Park on December 10, 2016, was part of a NASA-funded research project.

A U.S. Geological Survey scientist used a custom-built, high-speed camera to remotely measure the temperature of spattering lava on the surface of Kīlauea Volcano's summit lava lake (background). This particular experiment, conducted from the Jaggar Museum overlook in Hawai‘i Volcanoes National Park on December 10, 2016, was part of a NASA-funded research project.

A hillside showing landslides with debris from one landslide impacting a house at the bottom of the slope.
Rainfall and Landslides in Northern CA
Rainfall and Landslides in Northern CA
Rainfall and Landslides in Northern CA

Shallow landslides damaged homes and closed many roads in the San Francisco East Bay region as a result of storms in January and February, 2017.

Shallow landslides damaged homes and closed many roads in the San Francisco East Bay region as a result of storms in January and February, 2017.

61g coastal lava flow remains active...
61g coastal lava flow remains active
61g coastal lava flow remains active
61g coastal lava flow remains active

Today (February 22, 2017), the breakout along the eastern edge of Kīlauea Volcano's episode 61g flow remains active and had advanced approximately 570 m (620 yards) since it was last mapped on February 14.

Today (February 22, 2017), the breakout along the eastern edge of Kīlauea Volcano's episode 61g flow remains active and had advanced approximately 570 m (620 yards) since it was last mapped on February 14.

Aerial photo of snow-covered mountaIns with umbrella-shaped volcanic ash plume rising in the background
Bogoslof volcano eruption plume
Bogoslof volcano eruption plume
Bogoslof volcano eruption plume

February 19 Bogoslof eruption plume as seen from Unalaska Island, 53 miles ESE of Bogoslof volcano. Photo taken from helicopter during fieldwork by AVO geologists at 5:22PM, approximately 14 minutes after the start of the eruption.

February 19 Bogoslof eruption plume as seen from Unalaska Island, 53 miles ESE of Bogoslof volcano. Photo taken from helicopter during fieldwork by AVO geologists at 5:22PM, approximately 14 minutes after the start of the eruption.

Map of flow field...
Map of flow field
Map of flow field
Map of flow field

This map shows recent changes to Kīlauea's East Rift Zone lava flow field. The area of the active flow field as of January 12 is shown in pink, while widening and advancement of the active flow as of February 16 is shown in red. Older Pu‘u ‘Ō‘ō lava flows (1983-2016) are shown in gray.

This map shows recent changes to Kīlauea's East Rift Zone lava flow field. The area of the active flow field as of January 12 is shown in pink, while widening and advancement of the active flow as of February 16 is shown in red. Older Pu‘u ‘Ō‘ō lava flows (1983-2016) are shown in gray.

Map Kīlauea's active East Rift Zone lava flow field in relation to ...
Map Kīlauea's active ERZ lava flow field in relation to SEern part ...
Map Kīlauea's active ERZ lava flow field in relation to SEern part ...
Map Kīlauea's active ERZ lava flow field in relation to SEern part ...

This small-scale map shows Kīlauea's active East Rift Zone lava flow field in relation to the southeastern part of the Island of Hawai?i. The area of the active flow field as of January 12 is shown in pink, while widening and advancement of the active flow as of February 16 is shown in red. Older Pu‘u ‘Ō‘ō lava flows (1983-2016) are shown in gray.

This small-scale map shows Kīlauea's active East Rift Zone lava flow field in relation to the southeastern part of the Island of Hawai?i. The area of the active flow field as of January 12 is shown in pink, while widening and advancement of the active flow as of February 16 is shown in red. Older Pu‘u ‘Ō‘ō lava flows (1983-2016) are shown in gray.

NASA practices for Mars exploration on Kīlauea Volcano...
NASA practices for Mars exploration on Kīlauea
NASA practices for Mars exploration on Kīlauea
NASA practices for Mars exploration on Kīlauea

Left: Astronauts James A. Lovell, Jr., and Fred W. Haise, Jr., members of NASA's third team of moon explorers, carried cameras, communications equipment, and an Apollo Lunar Hand Tools scoop during a simulation of a lunar traverse at Kīlauea Volcano in December 1969.

Left: Astronauts James A. Lovell, Jr., and Fred W. Haise, Jr., members of NASA's third team of moon explorers, carried cameras, communications equipment, and an Apollo Lunar Hand Tools scoop during a simulation of a lunar traverse at Kīlauea Volcano in December 1969.

A Valentine's Day view of Kīlauea Volcano's summit lava lake...
A Valentine's Day view of Kīlauea's summit lava lake
A Valentine's Day view of Kīlauea's summit lava lake
A Valentine's Day view of Kīlauea's summit lava lake

Today, Kīlauea Volcano's summit lava lake level was 21 m (69 ft) below the vent rim. A long stretch of active spattering was visible along the east lake margin from the rim of Halema‘uma‘u Crater, an area that remains closed to the public due to ongoing hazards. The usual spatter source to the southeast was small by comparison.

Today, Kīlauea Volcano's summit lava lake level was 21 m (69 ft) below the vent rim. A long stretch of active spattering was visible along the east lake margin from the rim of Halema‘uma‘u Crater, an area that remains closed to the public due to ongoing hazards. The usual spatter source to the southeast was small by comparison.

High-tech instruments track volcanic gases at Kīlauea Volcano...
High-tech instruments track volcanic gases at Kīlauea
High-tech instruments track volcanic gases at Kīlauea
High-tech instruments track volcanic gases at Kīlauea

HVO's geochemist uses a Fourier Transform Infrared Spectrometer (FTIR) instrument to track volcanic gases emitted from the lava lake with Halema‘uma‘u Crater. These measurements help detect changes in gas composition, which can provide insight into the inner workings of Kīlauea Volcano.

HVO's geochemist uses a Fourier Transform Infrared Spectrometer (FTIR) instrument to track volcanic gases emitted from the lava lake with Halema‘uma‘u Crater. These measurements help detect changes in gas composition, which can provide insight into the inner workings of Kīlauea Volcano.

USGS Hawaiian Volcano Observatory office building is located on the...
USGS HVO office building is located on the rim of Kīlauea Caldera i...
USGS HVO office building is located on the rim of Kīlauea Caldera i...
USGS HVO office building is located on the rim of Kīlauea Caldera i...

USGS Hawaiian Volcano Observatory office building is located on the rim of Kīlauea Caldera in Hawai‘i Volcanoes National Park.

USGS Hawaiian Volcano Observatory office building is located on the rim of Kīlauea Caldera in Hawai‘i Volcanoes National Park.

image related to volcanoes. See description
At the coast, the lava flow in the Ahalanui area remains less than 0.1 miles fro
At the coast, the lava flow in the Ahalanui area remains less than 0.1 miles fro
At the coast, the lava flow in the Ahalanui area remains less than 0.1 miles fro

At the coast, the lava flow in the Ahalanui area remains less than 0.1 miles from the Pohoiki boat ramp (left of center in this photo) in Isaac Hale Park. The active ocean entry is a few hundred yards east (right) of this photograph.

At the coast, the lava flow in the Ahalanui area remains less than 0.1 miles from the Pohoiki boat ramp (left of center in this photo) in Isaac Hale Park. The active ocean entry is a few hundred yards east (right) of this photograph.