Showing posts with label Tonga Ridge. Show all posts
Showing posts with label Tonga Ridge. Show all posts

Saturday, 24 September 2022

Warnings issued to mariners and aviators after Home Reef Volcano, Tonga, erupts eight times in forty eight hours.

Warnings have been issued to air and sea traffic after Home Reef Volcano, an ephemeral island volcano in Tonga, erupted eight times in a 48 hour period between 18 and 20 September 2022. Aviators have been warned not to approach within three kilometres of the volcano, due to the dangers of volcanic ash to aircraft engines, and mariners have been advised not to approach the volcano and to be vigilant for rafts of floating pumice (volcanic rock with numerous large pore-spaces which can float on water), which can be damaging to boats.

Image of an eruption on Home Reef captured by the Operational Land Imager-2 instrument on the Landsat-9 satellite on 14 September 2022. NASA/Earth Observatory.

Home Reef is usually beneath the water, but the formation of temporary islands from ash effusions which are subsequently washed away has previously recorded in 1852, 1857, 1984 and 2006. The volcano began to erupt again on 10 September 2022, and by 17 September had formed an island with an area of 24 300 m², which by 23 September had grown to 32 375 m².

Home Reef lies on the Tonga/Kermadec Ridge, and is fed by the subduction of the Pacific Plate beneath the Australian Plate along the Kermadec/Tonga Trench. As the Pacific Plate sinks into the Earth, it is warmed by the heat from the planets interior. This leads to partial melting of the Pacific Plate, with some of the melted material rising through the overlying Australian Plate as magma, fuelling the volcanos of the Kermadec/Tonga Ridge.

Diagram showing subduction along the Tonga Trench, and how this feeds the volcanoes of the Tonga Volcanic Arc. York University.

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Thursday, 20 January 2022

Tonga devastated by tsunami following eruption on the Hunga Ha'apai volcano

Three people, including a British citizen, have been confirmed dead and many more are missing following a tsunani that swept across the island nation of Tonga on Saturday 15 January 2022, following an eruption on the Hunga Ha'apai volcano. The volcano, which is usually underwater and is about 65 km to the north of the nation's capital, Nukuʻalofa, began erupting on 20 December 2021, producing a small island by the first week of January. However, on 15 January the centre of this island sank abruptly beneath the sea about two hours before the eruption. Vulcanologists have hypothesised that the eruption was caused by the collapse of a magma chamber, allowing seawater to come into contact with the hot magma, and triggering a phreatic explosion (rapid expansion of gas as a large volume of water turns to vapour more-or-less instantly).

 
Devastation on Tonga caused by the 15 January 2022 tsunami. Consulate of the Kingdom of Tonga.

Following the explosion a huge wave swept across the islands of Tonga, then out across the Pacific Ocean, reaching Australia and New Zealand in four hours, Japan in eight hours, California in ten hours and Alaska in eleven. Ths islands of Tonga suffered extensive damage, which destroyed much of the nation's communications infrastructure, with the extent of the destruction only becoming clear as ships from the New Zealand Navy reached the area several days later. As well as the obvious problems caused by the devastation of the nation's infrastructure, much of the area has been covered by sulphur-rich volcanic dust, which can be harmful if breathed in, and can react with fresh water to form sulphuric acid, threatening drinking water supplies. 

 
How a submarine phraetic explosion can cause a tsunami. BBC.

Hunga Ha’apai lies on the Tonga/Kermadec Ridge, and is fed by the subduction of the Pacific Plate beneath the Australian Plate along the Kermadec/Tonga Trench. As the Pacific Plate sinks into the Earth, it is warmed by the heat from the planets interior. This leads to partial melting of the Pacific Plate, with some of the melted material rising through the overlying Australian Plate as magma, fuelling the volcanos of the Kermadec/Tonga Ridge.

 
Diagram showing subduction along the Tonga Trench, and how this feeds the volcanoes of the Tonga Volcanic Arc. York University.

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Saturday, 15 January 2022

Tsunami warning issued across the Kingdom of Tonga following an eruption on the Hunga Ha'apai underwater volcano.

A tsunami warning was issued to people living in coastal areas on all the islands of the Kingdom of Tonga on Thursday 13 January 2022, following an eruption on the Hunga Ha'apai underwater volcano, which produced a column of gas and ash about 20 km high. In the event, the largest wave observed was only about 30 cm high, which reached Nuku'alofa on the north coast of the island of Tongatapu at about 12.30 pm local time. The volcano began its current eruptive cycle on 20 December 2021, prior to which it had been inactive since 2015.

 
GOES-17 satellite imigary of the 13 January 2022 Hunga Ha'apai underwater volcano eruption. University of Wisconsin Madison/Space Science and Engineering Center/CIMMS Satelite Blog.

Hunga Ha’apai lies on the Tonga/Kermadec Ridge, and is fed by the subduction of the Pacific Plate beneath the Australian Plate along the Kermadec/Tonga Trench. As the Pacific Plate sinks into the Earth, it is warmed by the heat from the planets interior. This leads to partial melting of the Pacific Plate, with some of the melted material rising through the overlying Australian Plate as magma, fuelling the volcanos of the Kermadec/Tonga Ridge.

 
Diagram showing subduction along the Tonga Trench, and how this feeds the volcanoes of the Tonga Volcanic Arc. York University.

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Wednesday, 22 December 2021

Eruption on Hunga Ha'apai volcano, Tongo.

The remote Hunga Ha'apai volcano in Tongo erupted on Monday 20 December 2021, producing an ash column 18 km high, and ash-falls across the island group. There are no reports of any casualties associated with this event, however, local authorities are warning people not to collect rainwater for drinking (a common practice in a nation where many communities do not have access to other water sources) until the ash cloud has cleared, due to the dangers of acid rain, which can cause severe health problems. Aircraft were warned to keep away from the islands during the eruption, resulting in the cancellation of at least one flight.

 
An eruption on the Hunga Ha'apai volcano, seen from Nuku'alofa on Monday 20 December 2021. Mary Lyn Fonua/AFP.

Hunga Ha’apai lies on the Tonga/Kermadec Ridge, and is fed by the subduction of the Pacific Plate beneath the Australian Plate along the Kermadec/Tonga Trench. As the Pacific Plate sinks into the Earth, it is warmed by the heat from the planets interior. This leads to partial melting of the Pacific Plate, with some of the melted material rising through the overlying Australian Plate as magma, fuelling the volcanos of the Kermadec/Tonga Ridge.
 
 
Diagram showing subduction along the Tonga Trench, and how this feeds the volcanoes of the Tonga Volcanic Arc. York University.
 
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Tuesday, 7 July 2015

Magnitude 6.2 Earthquake to the northeast of Tonga.

The United States Geological Survey detected a Magnitude 6.2 Earthquake at a depth of 10 km, about 70 km to the northeast of the island of Tongatapu (the largest of the 177 islands that make up the Kingdom of Tonga) slightly before 1.25 am local time on Tuesday 7 July 2015 (slightly before 12.25 pm on Monday 6 July, GMT). While this was a large quake, it was unlikely to present any danger due to its distance from shore, though it was felt on the island.

The approximate location of the 7 July 2015 Tonga Earthquake. Google Maps.

The islands of Tonga lie along the boundary between the Pacific and Australian Tectonic Plates. The Pacific Plate is being subducted beneath the Australian Plate along the Tonga Trench, which forms the boundary between these two plates, with the volcanic islands that make up the archipelago being formed as the subducting plate is melted by the heat of the planet's interior, so that lighter minerals rise up through the overlying plate as liquid magma, which fuels the volcanoes that build the islands. This subduction is not a smooth process, with the two plates constantly sticking together until the pressure generated by their movement builds up sufficiently to break them apart, causing a sudden forward jerk we experience as an Earthquake.

Diagram showing subduction along the Tonga Trench, and how this feeds the volcanoes of the Tonga Volcanic Arc. York University.

Witness accounts of Earthquakes can help geologists to understand these events, and the structures that cause them. The international non-profit organization Earthquake Report is interested in hearing from people who may have felt this event; if you felt this quake then you can report it to Earthquake Report here.

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Flights to and from New Zealand have been disrupted following an eruption on Hunga Ha’apai, a submarine volcano in Tonga, on Monday 12 December 2015, producing an ash column 4500 m high and discolouring the sea red with ash, according to theWellington Volcanic Ash Advisory Centre. The volcano is...


Pumice is a volcanic rock, produced by the rapid cooling of gas rich lava from submarine eruptions, or high-pressure eruptions on land. The rapid cooling traps bubbles of gas within the rock, creating a very light material that will often float on water. Submarine volcanic eruptions can produce vast mats of...



On Thursday 9 August 2012 the Royal New Zealand Air Force spotted a raft of pumice-stone (volcanic rock filled with gas bubbles that floats on water) covering an area nearly 26 000 km², roughly 1000 km north  of North Island, in the Kermadec Islands, a New Zealand possession. This discovery was later confirmed by the Royal New Zealand Navy ship HMNZS Canterbury...



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Tuesday, 13 January 2015

Eruption on Hunga Ha’apai.

Flights to and from New Zealand have been disrupted following an eruption on Hunga Ha’apai, a submarine volcano in Tonga, on Monday 12 December 2015, producing an ash column 4500 m high and discolouring the sea red with ash, according to the Wellington Volcanic Ash Advisory Centre. The volcano is reported to have become active on 20 December 2014, according to the Institute of Geological & Nuclear Science in New Zealand, but this is the first major disruption caused by the volcano this year. The crater of Hunga Ha’apai lies beneath the sea, but two small islands, Hunga Tonga and Hunga Ha’apai, which form part of the crater rim, reach 149 m and 128 m above the sea respectively.

 The ash coloumn over Hunga Ha'apai on 13 January 2014. Radio Live/Twitter.

Hunga Ha’apai ies on the Tonga/Kermadec Ridge, and is fed by the subduction of the Pacific Plate beneath the  Australian Plate along the Kermadec/Tonga Trench. As the Pacific Plate sinks into the Earth it is warmed by a combination of heat from friction with the overlying Australian Plate, and heat from the planets interior. This leads to partial melting of the Pacific Plate, with some of the melted material rising through the overlying Australian Plate as magma, fuelling the volcanos of the Kermadec/Tonga Ridge.

Diagram showing subduction along the Tonga Trench, and how this feeds the volcanoes of the Tonga Volcanic Arc. York University.

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http://sciencythoughts.blogspot.co.uk/2012/08/the-biology-of-pumice-rafts.htmlThe biology of pumice rafts.                                Pumice is a volcanic rock, produced by the rapid cooling of gas rich lava from submarine eruptions, or high-pressure eruptions on land. The rapid cooling traps bubbles of gas within the rock, creating a very light material that will often float on water. Submarine volcanic eruptions can produce vast mats of...
http://sciencythoughts.blogspot.co.uk/2012/08/pumice-raft-suggests-eruption-from.htmlPumice raft suggests eruption from Mount Monowai.                                                                    On Thursday 9 August 2012 the Royal New Zealand Air Force spotted a raft of pumice-stone (volcanic rock filled with gas bubbles that floats on water) covering an area nearly 26 000 km², roughly 1000 km north  of North Island, in the Kermadec Islands, a New Zealand possession. This discovery was later confirmed by the Royal New Zealand Navy ship HMNZS Canterbury...
http://sciencythoughts.blogspot.co.uk/2011/07/earthquake-in-kermadec-islands-triggers.htmlEarthquake in the Kermadec Islands triggers tsunami alert.                                                                                                The Kermadec Islands are the northernmost outpost of New Zealand, situated 650 km northeast of North Island, and 550 km southwest of Tonga. They are a Volcanic Island Arc, which is to say a group of islands that sits on a convergent plate margin (in this case the one where the Pacific Plate is being subducted beneath the Australian) and are formed entirely by volcanic activity. This volcanic activity occurs when rocks from the subducted plate melt as...

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Monday, 20 August 2012

The biology of pumice rafts.

Pumice is a volcanic rock, produced by the rapid cooling of gas rich lava from submarine eruptions, or high-pressure eruptions on land. The rapid cooling traps bubbles of gas within the rock, creating a very light material that will often float on water. Submarine volcanic eruptions can produce vast mats of pumice, which cover hundreds of square kilometers and persist for years, traveling vast distances across the oceans. While this is unusual on a human timescale, it is very common geologically, with 20 major events known in the last 200 years (not including the Kermadec Islands event of July/August 2012), suggesting that pumice rafts could provide a major dispersal mechanism for marine organisms. 

In a paper published in the journal PLoS One on 18 July 2012, a team of scientists led by Scott Bryan of the School of Geography, Geology and Environment at Kingston University and the School of Earth, Environmental and Biological Sciences at the Queensland University of Technology report the results of a study of a pumice raft produced by Home Reef Volcano in Tonga in 2006. 

Home Reef is a submarine volcano midway between Metis Shoal and Late Island in Tonga. It currently has a summit 10 m bellow sea-level, but sometimes rises above the waves forming ephemeral islands. In August 2006 the volcano an eruption produced a pumice raft covering over 440 km², which then drifted through the islands of Tonga and Fiji before reaching the Australian coast in March 2007, by which time it had spread out to cover about 1600 km²; roughly ⅔ of the original material is thought to have reached Australian waters.

Map showing the progress of the Home Reef pumice raft. Bryan et al. (2012).

The pumice proved to be a very good transport system for marine organisms with a short larval stage and an attached adult phase. Unlike other floating material, such as rafts of algae (Seaweed) or wood, it started out with nothing living on it, thus everything present had to reach it, but it was long-lived on the surface, due to the nature of its buoyancy, and its lack of nutritious value (biological rafts are typically broken up in the end by feeding).

The pumice was host to a wider range of organisms than found by previous studies, which had concentrated on beech-collected pumice, where typically only the remains of mineralized shells of attached organisms were found; non-mineralized organisms on stranded pumice quickly die and decay, and non-attached organisms (e.g. crabs) simply walk away. The amount of organisms growing on the pumice grew steadily as time progressed, with some organisms living long enough to spawn and produce a second generation.

Piece of pumice collected at Marion Reef (roughly 450 km off the Queensland coast) on 30 April 2007. Based upon their size, the Goose Barnacles (Lepas anserifera; largest specimen 23 mm length) have been attached for at least 60 days and the Mollusc over 200. Coin is 2 cm in diameter. Bryan et al. (2012).

Two pieces of pumice bound together by Cyanobacteria (photosynthetic filament-forming Bacteria, principally Rivularia sp.) and Macroalgae (Seaweed, Caulerpa sp.) collected from Broadbeach in southeastern Queensland on 27 December 2007. Also present are two Cauliflower Corals (Pocillopora sp.), a Colonial Scyphozoan (Order Coronatae, the benthic larval stage of a Crown Jellyfish), Goose Barnacles (Lepas anserifera) and a Pearl Oyster (Pinctada sp.) Bryan et al. (2012).

Three pieces of pumice collected from Broadbeach in southeastern Queensland on 27 December 2007. Each has a Sea Anemone (Calliactus sp.) forming a keel, with Cheilostome Bryozoa (Jellyella sp.) along the waterline and Cyanobacteria (Rivularia spp.) occupying allof the dorsal surface. Left hand pumice stone is 5 cm in length. Bryan et al. (2012).

Piece of pumice collected at Lamberts Beach, Mackay, with dorsal surfaces almost exclusively occupied by Cyanobacteria (Rivularia sp.), and the ventral surface entirely covered by cheilostome Bryozoa (Jellyella sp.) colonies. Piece is 1.7 cm long. Bryan et al. (2012).


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Saturday, 11 August 2012

Pumice raft suggests eruption from Mount Monowai.

On Thursday 9 August 2012 the Royal New Zealand Air Force spotted a raft of pumice-stone (volcanic rock filled with gas bubbles that floats on water) covering an area nearly 26 000 km², roughly 1000 km north  of North Island, in the Kermadec Islands, a New Zealand possession. This discovery was later confirmed by the Royal New Zealand Navy ship HMNZS Canterbury, and by NASA's Aqua Satellite. This is believed to have originated from an eruption on Mount Monowai (or Orion Seamount), a submarine volcano between Tonga and the Kermadecs.

Aqua Satellite image of the floating pumice rafts, taken on 10 August 2012. NASA.

Mount Monowai lies on the Tonga/Kermadec Ridge, halfway between the two groups of islands. It rises from a seafloor 1500 m deep to 132 m below the surface. It is an active volcano, with at least six eruptions since 2000. Like all the volcanoes of the Kermadec and Tonga Islands it is fed by the subduction of the Pacific Plate beneath the  Australian Plate along the Kermadec/Tonga Trench. As the Pacific Plate sinks into the Earth it is warmed by a combination of heat from friction with the overlying Australian Plate, and heat from the planets interior. This leads to partial melting of the Pacific Plate, with some of the melted material rising through the overlying Australian Plate as magma, fueling the volcanos of the Kermadec/Tonga Ridge.

Topographic map showing the Kermadec/Tonga Trenches & Ridges. Wikipedia.

Diagram showing subduction along the Tonga Trench, and how this feeds the volcanoes of the Tonga Volcanic Arc. York University.


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