Underwater volcano creates huge floating islands of rock, disrupts shipping
A team of scientists from the UK, the US, Australia and New Zealand have modelled the fate of a huge floating raft of volcanic rocks that formed in 2012 during a submarine eruption of a Pacific volcano. Described in this month’s edition of Nature Communications, they show how satellite images of the...
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ftapo:oai:apo.org.au:39436 2023-05-15T16:09:42+02:00 Underwater volcano creates huge floating islands of rock, disrupts shipping Simon Redfern Australia New Zealand United States 2014-04-24 00:00:00 http://apo.org.au/node/39436 unknown The Conversation http://apo.org.au/node/39436 Shipping International trade Article 2014 ftapo 2020-05-20T09:43:46Z A team of scientists from the UK, the US, Australia and New Zealand have modelled the fate of a huge floating raft of volcanic rocks that formed in 2012 during a submarine eruption of a Pacific volcano. Described in this month’s edition of Nature Communications, they show how satellite images of the floating-rock raft’s passage across the Pacific can be used to test models of ocean circulation. Their results could be used to forecast the dispersal of future pumice (volcanic rock) islands, and protect shipping from the hazards they pose. The eruptions of the Icelandic volcano, Eyjafjallajökull, in 2010 brought the hazards associated with volcanic ash sharply into focus. Air routes across northern Europe were disrupted, leaving many passengers stranded and far from home for days on end. Floating pumice. Jeff Butterworth Ocean hazard But hazards of floating islands of pumice spewed into the ocean from erupting volcanoes are less well-known. Havre's pumice raft drifting in the Pacific. The scale bar is 20km. Nature Communications One such island grew from an explosion of the Havre volcano in the South Pacific, between Tonga and New Zealand, in July 2012. The volcano threw out a cubic kilometre of molten magma, which suddenly froze to form bubble-filled pumice. It is the bubbles trapped in pumice that make it so light – half the density of water – so the rock floats on water. Like natural flotsam, pebble to boulder-sized lumps of pumice clump together. This can create huge floating rafts in the seas around erupting volcanoes, and they can be tens of centimetres thick but thousands of kilometres in length. Records of the use of pumice exist since the time of the Romans and Ancient Greeks. Its rough texture made them effective abrasives to remove dead skin from calluses and corns. However, today, such floating pumice can pose a hazard for shipping. Hulls can be damaged by abrasion from the hard but light pumice, and when it approaches land these pumice rafts can block harbours and disrupt navigation. Havre’s pumice ... Article in Journal/Newspaper Eyjafjallajökull Australian Policy Online (Institute for Social Research, Swinburne University of Technology) Butterworth ENVELOPE(66.733,66.733,-70.700,-70.700) Havre ENVELOPE(-71.417,-71.417,-69.333,-69.333) New Zealand Pacific Tonga ENVELOPE(7.990,7.990,63.065,63.065) |
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Australian Policy Online (Institute for Social Research, Swinburne University of Technology) |
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Shipping International trade |
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Shipping International trade Simon Redfern Underwater volcano creates huge floating islands of rock, disrupts shipping |
topic_facet |
Shipping International trade |
description |
A team of scientists from the UK, the US, Australia and New Zealand have modelled the fate of a huge floating raft of volcanic rocks that formed in 2012 during a submarine eruption of a Pacific volcano. Described in this month’s edition of Nature Communications, they show how satellite images of the floating-rock raft’s passage across the Pacific can be used to test models of ocean circulation. Their results could be used to forecast the dispersal of future pumice (volcanic rock) islands, and protect shipping from the hazards they pose. The eruptions of the Icelandic volcano, Eyjafjallajökull, in 2010 brought the hazards associated with volcanic ash sharply into focus. Air routes across northern Europe were disrupted, leaving many passengers stranded and far from home for days on end. Floating pumice. Jeff Butterworth Ocean hazard But hazards of floating islands of pumice spewed into the ocean from erupting volcanoes are less well-known. Havre's pumice raft drifting in the Pacific. The scale bar is 20km. Nature Communications One such island grew from an explosion of the Havre volcano in the South Pacific, between Tonga and New Zealand, in July 2012. The volcano threw out a cubic kilometre of molten magma, which suddenly froze to form bubble-filled pumice. It is the bubbles trapped in pumice that make it so light – half the density of water – so the rock floats on water. Like natural flotsam, pebble to boulder-sized lumps of pumice clump together. This can create huge floating rafts in the seas around erupting volcanoes, and they can be tens of centimetres thick but thousands of kilometres in length. Records of the use of pumice exist since the time of the Romans and Ancient Greeks. Its rough texture made them effective abrasives to remove dead skin from calluses and corns. However, today, such floating pumice can pose a hazard for shipping. Hulls can be damaged by abrasion from the hard but light pumice, and when it approaches land these pumice rafts can block harbours and disrupt navigation. Havre’s pumice ... |
format |
Article in Journal/Newspaper |
author |
Simon Redfern |
author_facet |
Simon Redfern |
author_sort |
Simon Redfern |
title |
Underwater volcano creates huge floating islands of rock, disrupts shipping |
title_short |
Underwater volcano creates huge floating islands of rock, disrupts shipping |
title_full |
Underwater volcano creates huge floating islands of rock, disrupts shipping |
title_fullStr |
Underwater volcano creates huge floating islands of rock, disrupts shipping |
title_full_unstemmed |
Underwater volcano creates huge floating islands of rock, disrupts shipping |
title_sort |
underwater volcano creates huge floating islands of rock, disrupts shipping |
publisher |
The Conversation |
publishDate |
2014 |
url |
http://apo.org.au/node/39436 |
op_coverage |
Australia New Zealand United States |
long_lat |
ENVELOPE(66.733,66.733,-70.700,-70.700) ENVELOPE(-71.417,-71.417,-69.333,-69.333) ENVELOPE(7.990,7.990,63.065,63.065) |
geographic |
Butterworth Havre New Zealand Pacific Tonga |
geographic_facet |
Butterworth Havre New Zealand Pacific Tonga |
genre |
Eyjafjallajökull |
genre_facet |
Eyjafjallajökull |
op_relation |
http://apo.org.au/node/39436 |
_version_ |
1766405541339332608 |