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Animation showing change in a thermal image
Ongoing inflation and crater floor uplift at Pu‘u ‘Ō‘ō
Ongoing inflation and crater floor uplift at Pu‘u ‘Ō‘ō
Rising lava lake at Halema‘uma‘u...
Rising lava lake at Halema‘uma‘u
Rising lava lake at Halema‘uma‘u
Rising lava lake at Halema‘uma‘u

Over the past few days, Kīlauea Volcano's summit lava lake in Halema‘uma‘u has steadily risen as summit inflation continues. Today, Sunday, April 15, the lake surface was just 14 m (46 ft) below the Overlook crater rim. Spattering has also been active, with this photo showing a large spattering site in the southeast portion of the lake.

Over the past few days, Kīlauea Volcano's summit lava lake in Halema‘uma‘u has steadily risen as summit inflation continues. Today, Sunday, April 15, the lake surface was just 14 m (46 ft) below the Overlook crater rim. Spattering has also been active, with this photo showing a large spattering site in the southeast portion of the lake.

Explosive eruptions at the summit of Mauna Loa: When did they occur...
Explosive eruptions at the summit of Mauna Loa: When did they occur?
Explosive eruptions at the summit of Mauna Loa: When did they occur?
Explosive eruptions at the summit of Mauna Loa: When did they occur?

This light gray block of rock (backpack for scale) is part of the approximately 830-year-old explosion deposit on the northwest rim of Moku‘āweoweo, the summit caldera of Mauna Loa. USGS photo by F.A. Trusdell.

This light gray block of rock (backpack for scale) is part of the approximately 830-year-old explosion deposit on the northwest rim of Moku‘āweoweo, the summit caldera of Mauna Loa. USGS photo by F.A. Trusdell.

Satellite image shows location of breakouts on flow field...
Satellite image shows location of breakouts on flow field
Satellite image shows location of breakouts on flow field
Satellite image shows location of breakouts on flow field

This satellite image was captured on Thursday, April 12, by the Landsat 8 satellite. Although this is a false-color image, the color map has been chosen to mimic what the human eye would expect to see. Bright red pixels depict areas of high temperatures and show active lava. White areas are clouds.

This satellite image was captured on Thursday, April 12, by the Landsat 8 satellite. Although this is a false-color image, the color map has been chosen to mimic what the human eye would expect to see. Bright red pixels depict areas of high temperatures and show active lava. White areas are clouds.

Disaster strikes Ka‘ū in 1868: The rest of the story...
Disaster strikes Ka‘ū in 1868: The rest of the story
Disaster strikes Ka‘ū in 1868: The rest of the story
Disaster strikes Ka‘ū in 1868: The rest of the story

Most of the lava flow (dark black) produced by the April 1868 Mauna Loa eruption can be seen in this aerial photo on the west (left) side of the prominent fault scarp, known informally as the Kahuku pali (formal names are Pali o Mamalu for the upper half and Pali‘okūlani for the lower half of the scarp).

Most of the lava flow (dark black) produced by the April 1868 Mauna Loa eruption can be seen in this aerial photo on the west (left) side of the prominent fault scarp, known informally as the Kahuku pali (formal names are Pali o Mamalu for the upper half and Pali‘okūlani for the lower half of the scarp).

Video of Kīlauea Volcano's summit lava lake...
Video of Kīlauea's summit lava lake
Video of Kīlauea's summit lava lake
Video of Kīlauea's summit lava lake

Video: Clear skies and sunshine provided a spectacular view of Kīlauea Volcano's summit lava lake this morning. Spattering on the north side and center of the lake surface—a departure from its more common location on the southeast side of the lake—occasionally happens when the surface flow direction reverses.

Video: Clear skies and sunshine provided a spectacular view of Kīlauea Volcano's summit lava lake this morning. Spattering on the north side and center of the lake surface—a departure from its more common location on the southeast side of the lake—occasionally happens when the surface flow direction reverses.

Seismic event devastated Ka'ū 150 years ago ...
Seismic event devastated Ka'ū 150 years ago
Seismic event devastated Ka'ū 150 years ago
Seismic event devastated Ka'ū 150 years ago

[Left] This cross-section through the south part of the Island of Hawai'i illustrates the hypocenter of the 1868 great Kaʻū earthquake (red star), located on the décollement (bold black line) between Mauna Loa (brown) and the ancient ocean floor (tan). Earth's lithospheric mantle and the ocean are represented in green and blue, respectively.

[Left] This cross-section through the south part of the Island of Hawai'i illustrates the hypocenter of the 1868 great Kaʻū earthquake (red star), located on the décollement (bold black line) between Mauna Loa (brown) and the ancient ocean floor (tan). Earth's lithospheric mantle and the ocean are represented in green and blue, respectively.

Seismic event devastated Ka'ū 150 years ago ...
Seismic event devastated Ka'ū 150 years ago
Seismic event devastated Ka'ū 150 years ago
Seismic event devastated Ka'ū 150 years ago

Destruction caused by the 1868 great Ka'ū earthquake included the Wai'ōhinu church, shown here, in the Ka'ū District of Hawaiʻi Island. With a magnitude estimated at 7.9, the earthquake is the largest in Hawaii's recorded history. Photo by Henry L. Chase, published in "Volcanoes of Kīlauea and Mauna Loa on the Island of Hawaiʻi" by W.T.

Destruction caused by the 1868 great Ka'ū earthquake included the Wai'ōhinu church, shown here, in the Ka'ū District of Hawaiʻi Island. With a magnitude estimated at 7.9, the earthquake is the largest in Hawaii's recorded history. Photo by Henry L. Chase, published in "Volcanoes of Kīlauea and Mauna Loa on the Island of Hawaiʻi" by W.T.

On March 25, between 10:06 and 10:08 p.m., a small lava flow began ...
On Mar. 25, between 10:06 and 10:08 p.m., a small lava flow began e...
On Mar. 25, between 10:06 and 10:08 p.m., a small lava flow began e...
On Mar. 25, between 10:06 and 10:08 p.m., a small lava flow began e...

On March 25, between 10:06 and 10:08 p.m., a small lava flow began erupting onto the Pu‘u ‘Ō‘ō crater floor for the first time since May 2016. In this thermal image, taken by the PTcam today (March 26) at 1:18 p.m., the flow (bright color) appears to be supplied by one of the small spatter cones in the crater's south embayment.

On March 25, between 10:06 and 10:08 p.m., a small lava flow began erupting onto the Pu‘u ‘Ō‘ō crater floor for the first time since May 2016. In this thermal image, taken by the PTcam today (March 26) at 1:18 p.m., the flow (bright color) appears to be supplied by one of the small spatter cones in the crater's south embayment.

Color photograph of a plastic box containing electronics
HVO volcano-monitoring station "health monitor" developed by CJ Moniz
HVO volcano-monitoring station "health monitor" developed by CJ Moniz
HVO volcano-monitoring station "health monitor" developed by CJ Moniz

A volcano-monitoring station "health monitor" developed by CJ Moniz at the Hawaiian Volcano Observatory (HVO). It consists of three programmable circuit boards (bottom row), voltage sensors (top row), a current sensor (top right corner), and a custom-made voltage sensor for a 48VDC system (tan circuit board on the bottom right).

A volcano-monitoring station "health monitor" developed by CJ Moniz at the Hawaiian Volcano Observatory (HVO). It consists of three programmable circuit boards (bottom row), voltage sensors (top row), a current sensor (top right corner), and a custom-made voltage sensor for a 48VDC system (tan circuit board on the bottom right).

Antarctic-volcano radar system visits Halema‘uma‘u...
Antarctic-volcano radar system visits Halema‘uma‘u
Antarctic-volcano radar system visits Halema‘uma‘u
Antarctic-volcano radar system visits Halema‘uma‘u

Dr. Nial Peters from the University of Cambridge sets up the prototype radar on the rim of Halema‘uma‘u at the summit of Kīlauea in January 2018. Microwave pulses are transmitted from one dish towards the lava lake surface. Some of the microwave energy is reflected back and is received by the other dish.

Dr. Nial Peters from the University of Cambridge sets up the prototype radar on the rim of Halema‘uma‘u at the summit of Kīlauea in January 2018. Microwave pulses are transmitted from one dish towards the lava lake surface. Some of the microwave energy is reflected back and is received by the other dish.

Matt Patrick on Kīlauea
USGS Scienctist talks about his work monitoring the lava lake
USGS Scienctist talks about his work monitoring the lava lake
USGS Scienctist talks about his work monitoring the lava lake

For the 10th anniversary of Kīlauea Volcano's summit eruption, USGS–Hawaiian Volcano Observatory research geologist Matt Patrick talks about his work monitoring the lava lake in the Halema'uma'u Crater. Dr.

For the 10th anniversary of Kīlauea Volcano's summit eruption, USGS–Hawaiian Volcano Observatory research geologist Matt Patrick talks about his work monitoring the lava lake in the Halema'uma'u Crater. Dr.

USGS scientist talks about his work monitoring the lava lake in Hal...
Scientist talks about work monitoring lava lake in Halema'uma'u Crater
Scientist talks about work monitoring lava lake in Halema'uma'u Crater
Scientist talks about work monitoring lava lake in Halema'uma'u Crater

To mark the 10th anniversary of Kīlauea Volcano's summit eruption, USGS-Hawaiian Volcano Observatory geologist Matt Patrick talks about his work monitoring the lava lake in Halema'uma'u Crater, for a USGS Volcanoes Facebook Live event.

To mark the 10th anniversary of Kīlauea Volcano's summit eruption, USGS-Hawaiian Volcano Observatory geologist Matt Patrick talks about his work monitoring the lava lake in Halema'uma'u Crater, for a USGS Volcanoes Facebook Live event.

10th anniversary of Kīlauea volcano's summit eruption...
10th anniv. of Kīlauea's summit eruption
10th anniv. of Kīlauea's summit eruption
10th anniv. of Kīlauea's summit eruption

Today marks the 10th anniversary of the eruption within Halema‘uma‘u at the summit of Kīlauea Volcano. When the vent first opened on March 19, 2008, it formed a small pit about 115 feet (35 m) wide. Over the past decade, that pit (informally called the "Overlook crater") has grown into a gaping hole about 919 feet by 656 feet (280 x 200 m) in size.

Today marks the 10th anniversary of the eruption within Halema‘uma‘u at the summit of Kīlauea Volcano. When the vent first opened on March 19, 2008, it formed a small pit about 115 feet (35 m) wide. Over the past decade, that pit (informally called the "Overlook crater") has grown into a gaping hole about 919 feet by 656 feet (280 x 200 m) in size.

When Matt measured the lava lake level this morning, the lake surfa...
When Matt measured the lava lake level this morning, the lake surfa...
When Matt measured the lava lake level this morning, the lake surfa...
When Matt measured the lava lake level this morning, the lake surfa...

When Matt measured the lava lake level this morning, the lake surface was 89 feet (27 m) below the Overlook crater rim. With the lava lake at that level, spattering on the lake surface could be seen from the Jaggar Museum overlook in Hawai‘i Volcanoes National Park today.

When Matt measured the lava lake level this morning, the lake surface was 89 feet (27 m) below the Overlook crater rim. With the lava lake at that level, spattering on the lake surface could be seen from the Jaggar Museum overlook in Hawai‘i Volcanoes National Park today.

Double rainbow ends in Moku‘āweoweo...
Double rainbow ends in Moku‘āweoweo
Double rainbow ends in Moku‘āweoweo
Double rainbow ends in Moku‘āweoweo

On March 14, HVO's webcam [MLcam] captured this image of a double rainbow, which seems to end in Moku‘āweoweo, the caldera at the summit of Mauna Loa. No pots of gold were observed—only patches of snow from recent winter storms.

On March 14, HVO's webcam [MLcam] captured this image of a double rainbow, which seems to end in Moku‘āweoweo, the caldera at the summit of Mauna Loa. No pots of gold were observed—only patches of snow from recent winter storms.

HVO's HMcam also captured an image of today's rockfall and subseque...
HVO's HMcam also captured an image of today's rockfall and subseque...
HVO's HMcam also captured an image of today's rockfall and subseque...
Small rockfall and explosion at Kīlauea Volcano's summit lava lake...
Small rockfall and explosion at Kīlauea's summit lava lake
Small rockfall and explosion at Kīlauea's summit lava lake
Small rockfall and explosion at Kīlauea's summit lava lake

Just before noon today, HVO's summit webcam (KIcam) captured this striking image of Kīlauea Volcano's ongoing summit eruption. A small rockfall on the north side of the Overlook crater triggered a small explosion in the lava lake, sending a dark-colored ash plume skyward.

Just before noon today, HVO's summit webcam (KIcam) captured this striking image of Kīlauea Volcano's ongoing summit eruption. A small rockfall on the north side of the Overlook crater triggered a small explosion in the lava lake, sending a dark-colored ash plume skyward.

Is the current summit eruption a return to Kīlauea Volcano's past? ...
Is the current summit eruption a return to Kīlauea's past?
Is the current summit eruption a return to Kīlauea's past?
Is the current summit eruption a return to Kīlauea's past?

On November 5, 1967, a line of vigorous lava fountains erupted on the floor of Halema‘uma‘u at the summit of Kīlauea. Lava soon covered the entire crater floor as volcanic gases billowed skyward (aerial view). Near the center, a pool of molten lava repeatedly overflowed a levee of crusted lava, spilling flows onto the lava-covered crater floor (inset).

On November 5, 1967, a line of vigorous lava fountains erupted on the floor of Halema‘uma‘u at the summit of Kīlauea. Lava soon covered the entire crater floor as volcanic gases billowed skyward (aerial view). Near the center, a pool of molten lava repeatedly overflowed a levee of crusted lava, spilling flows onto the lava-covered crater floor (inset).

A photo of the ledge that is building on Halema‘uma‘u lava lake's s...
A photo of the ledge that is building on Halema‘uma‘u lava lake's s...
A photo of the ledge that is building on Halema‘uma‘u lava lake's s...
A photo of the ledge that is building on Halema‘uma‘u lava lake's s...

A photo of the ledge that is building on Halema‘uma‘u lava lake's southern ledge. Small collapses of the unstable ledge are also common.

Clear views of Halema‘uma‘u lava lake and spattering...
Clear views of Halema‘uma‘u lava lake and spattering
Clear views of Halema‘uma‘u lava lake and spattering
Clear views of Halema‘uma‘u lava lake and spattering

Within Kīlauea Volcano's summit lava lake, vigorous spattering was occurring on the southern margin where a ledge of solidified lava has built out from the vent wall. The vigorous spattering site was active in an indentation in the ledge.

Within Kīlauea Volcano's summit lava lake, vigorous spattering was occurring on the southern margin where a ledge of solidified lava has built out from the vent wall. The vigorous spattering site was active in an indentation in the ledge.

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