"All the World's a Stage We Pass Through" R. Ayana

Showing posts with label volcanism. Show all posts
Showing posts with label volcanism. Show all posts

Saturday, 2 June 2012

Climate change will shake the Earth

Climate change will shake the Earth


A changing climate isn't just about floods, droughts and heatwaves. It brings erupting volcanoes and catastrophic earthquakes too


As the Earth's crust buckles, volcanic activity will increase.
As the Earth's crust buckles, volcanic activity will increase. Photograph: Corbis


The idea that a changing climate can persuade the ground to shake, volcanoes to rumble and tsunamis to crash on to unsuspecting coastlines seems, at first, to be bordering on the insane. How can what happens in the thin envelope of gas that shrouds and protects our world possibly influence the potentially Earth-shattering processes that operate deep beneath the surface? The fact that it does reflects a failure of our imagination and a limited understanding of the manner in which the different physical components of our planet – the atmosphere, the oceans, and the solid Earth, or geosphere – intertwine and interact.

If we think about climate change at all, most of us do so in a very simplistic way: so, the weather might get a bit warmer; floods and droughts may become more of a problem and sea levels will slowly creep upwards. Evidence reveals, however, that our planet is an almost unimaginably complicated beast, which reacts to a dramatically changing climate in all manner of different ways; a few – like the aforementioned – straightforward and predictable; some surprising and others downright implausible. Into the latter category fall the manifold responses of the geosphere.

The world we inhabit has an outer rind that is extraordinarily sensitive to change. While the Earth's crust may seem safe and secure, the geological calamities that happen with alarming regularity confirm that this is not the case. Here in the UK, we only have to go back a couple years to April 2010, when the word on everyone's lips was Eyjafjallajökull – the ice-covered Icelandic volcano that brought UK and European air traffic to a grinding halt. Less than a year ago, our planet's ability to shock and awe headed the news once again as the east coast of Japan was bludgeoned by a cataclysmic combination of megaquake and tsunami, resulting – at a quarter of a trillion dollars or so – in the biggest natural-catastrophe bill ever.

In the light of such events, it somehow seems appropriate to imagine the Earth beneath our feet as a slumbering giant that tosses and turns periodically in response to various pokes and prods. Mostly, these are supplied by the stresses and strains associated with the eternal dance of a dozen or so rocky tectonic plates across the face of our world; a sedate waltz that proceeds at about the speed that fingernails grow. Changes in the environment too, however, have a key role to play in waking the giant, as growing numbers of geological studies targeting our post-ice age world have disclosed.

Between about 20,000 and 5,000 years ago, our planet underwent an astonishing climatic transformation. Over the course of this period, it flipped from the frigid wasteland of deepest and darkest ice age to the – broadly speaking – balmy, temperate world upon which our civilisation has developed and thrived. During this extraordinarily dynamic episode, as the immense ice sheets melted and colossal volumes of water were decanted back into the oceans, the pressures acting on the solid Earth also underwent massive change. In response, the crust bounced and bent, rocking our planet with a resurgence in volcanic activity, a proliferation of seismic shocks and burgeoning giant landslides.

The most spectacular geological effects were reserved for high latitudes. Here, the crust across much of northern Europe and North America had been forced down by hundreds of metres and held at bay for tens of thousands of years beneath the weight of sheets of ice 20 times thicker than the height of the London Eye. As the ice dissipated in soaring temperatures, the crust popped back up like a coiled spring released, at the same time tearing open major faults and triggering great earthquakes in places where they are unheard of today. Even now, the crust underpinning those parts of Europe and North America formerly imprisoned beneath the great continental ice sheets continues to rise – albeit at a far more sedate rate.

As last year's events in Japan most ably demonstrated, when the ground shakes violently beneath the sea, a tsunami may not be far behind. These unstoppable walls of water are hardly a surprise when they happen within the so-called ring of fire that encompasses the Pacific basin but in the more tectonically benign North Atlantic their manifestation could reasonably be regarded as a bit of a shock. Nonetheless, there is plenty of good, hard evidence that this was the case during post-glacial times. Trapped within the thick layers of peat that pass for soil on Shetland – the UK's northernmost outpost – are intrusions of sand that testify to the inland penetration of three tsunamis during the last 10,000 years.

Volcanic blasts too can be added to the portfolio of postglacial geological pandemonium; the warming climate being greeted by an unprecedented fiery outburst that wracked Iceland as its frozen carapace dwindled, and against which the recent ashy ejaculation from the island's most unpronounceable volcano pales.

The huge environmental changes that accompanied the rapid post-glacial warming of our world were not confined to the top and bottom of the planet. All that meltwater had to go somewhere, and as the ice sheets dwindled, so the oceans grew. An astounding 52m cubic kilometres of water was sucked from the oceans to form the ice sheets, causing sea levels to plummet by about 130 metres – the height of the Wembley stadium arch. As the ice sheets melted so this gigantic volume of water was returned, bending the crust around the margins of the ocean basins under the enormous added weight, and provoking volcanoes in the vicinity to erupt and faults to rupture, bringing geological mayhem to regions remote from the ice's polar fastnesses.

The breathtaking response of the geosphere as the great ice sheets crumbled might be considered as providing little more than an intriguing insight into the prehistoric workings of our world, were it not for the fact that our planet is once again in the throes an extraordinary climatic transformation – this time brought about by human activities. Clearly, the Earth of the early 21st century bears little resemblance to the frozen world of 20,000 years ago. Today, there are no great continental ice sheets to dispose of, while the ocean basins are already pretty much topped up. On the other hand, climate change projections repeatedly support the thesis that global average temperatures could rise at least as rapidly in the course of the next century or so as during post-glacial times, reaching levels at high latitudes capable of driving catastrophic breakup of polar ice sheets as thick as those that once covered much of Europe and North America. Could it be then, that if we continue to allow greenhouse gas emissions to rise unchecked and fuel serious warming, our planet's crust will begin to toss and turn once again?

The signs are that this is already happening. In the detached US state of Alaska, where climate change has propelled temperatures upwards by more than 3C in the last half century, the glaciers are melting at a staggering rate, some losing up to 1km in thickness in the last 100 years. The reduction in weight on the crust beneath is allowing faults contained therein to slide more easily, promoting increased earthquake activity in recent decades. The permafrost that helps hold the state's mountain peaks together is also thawing rapidly, leading to a rise in the number of giant rock and ice avalanches. In fact, in mountainous areas around the world, landslide activity is on the up; a reaction both to a general ramping-up of global temperatures and to the increasingly frequent summer heatwaves.

Whether or not Alaska proves to be the "canary in the cage" – the geological shenanigans there heralding far worse to come – depends largely upon the degree to which we are successful in reducing the ballooning greenhouse gas burden arising from our civilisation's increasingly polluting activities, thereby keeping rising global temperatures to a couple of degrees centigrade at most. So far, it has to be said, there is little cause for optimism, emissions rocketing by almost 6% in 2010 when the world economy continued to bump along the bottom. Furthermore, the failure to make any real progress on emissions control at last December's Durban climate conference ensures that the outlook is bleak. Our response to accelerating climate change continues to be consistently asymmetric, in the sense that it is far below the level that the science says is needed if we are to have any chance of avoiding the all-pervasive devastating consequences.

So what – geologically speaking – can we look forward to if we continue to pump out greenhouse gases at the current hell-for-leather rate? With resulting global average temperatures likely to be several degrees higher by this century's end, we could almost certainly say an eventual goodbye to the Greenland ice sheet, and probably that covering West Antarctica too, committing us – ultimately – to a 10-metre or more hike in sea levels.

GPS measurements reveal that the crust beneath the Greenland ice sheet is already rebounding in response to rapid melting, providing the potential – according to researchers – for future earthquakes, as faults beneath the ice are relieved of their confining load. The possibility exists that these could trigger submarine landslides spawning tsunamis capable of threatening North Atlantic coastlines. Eastern Iceland is bouncing back too as its Vatnajökull ice cap fades away. When and if it vanishes entirely, new research predicts a lively response from the volcanoes currently residing beneath. A dramatic elevation in landslide activity would be inevitable in the Andes, Himalayas, European Alps and elsewhere, as the ice and permafrost that sustains many mountain faces melts and thaws.

Across the world, as sea levels climb remorselessly, the load-related bending of the crust around the margins of the ocean basins might – in time – act to sufficiently "unclamp" coastal faults such as California's San Andreas, allowing them to move more easily; at the same time acting to squeeze magma out of susceptible volcanoes that are primed and ready to blow.

The bottom line is that through our climate-changing activities we are loading the dice in favour of escalating geological havoc at a time when we can most do without it. Unless there is a dramatic and completely unexpected turnaround in the way in which the human race manages itself and the planet, then long-term prospects for our civilisation look increasingly grim. At a time when an additional 220,000 people are lining up at the global soup kitchen each and every night; when energy, water and food resources are coming under ever-growing pressure, and when the debilitating effects of anthropogenic climate change are insinuating themselves increasingly into every nook and cranny of our world and our lives, the last thing we need is for the dozing subterranean giant to awaken.

Bill McGuire is professor of geophysical and climate hazards at University College London. Waking the Giant: How a Changing Climate Triggers Earthquakes, Tsunamis and Volcanoes is published by Oxford University Press.

Hear him on the Science Weekly podcast at guardian.co.uk/scienceweekly

Waking the Giant: How a changing climate triggers earthquakes, tsunamis, and volcanoes by Bill McGuire

From the guardian @ http://www.guardian.co.uk/environment/2012/feb/26/why-climate-change-shake-earth?fb_source=timeline_news&fb_action_ids=2896931635140&fb_action_types=news.reads


And see Climate Change IS Increasing the Frequencies of Major Geological Events



 


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Wednesday, 30 May 2012

The Next Yellowstone Supereruption Is Closer Than You Think

The Next Yellowstone Supereruption Is Closer Than You Think




By Jesus Diaz

 

The good news: scientists have discovered that "the Yellowstone super-volcano is a little less super than previously thought." The bad news: the Yellowstone super-volcano is "more active than previously thought." That means eruptions are more frequent. So the next one is likely closer than previously predicted. Gulp.

According to the the researchers from Washington State University and the Scottish Universities Environmental Research Centre, the next eruption may not wipe out half of the United States, covering the rest in 3 feet of ash and pushing the world into hundreds of years of nuclear winter, challenging human civilization to a game of death and survival. That's what a previous study from the journal Earth and Planetary Science Letters posited. Again, very good news.

But on the other hand, as Ben Ellis—a post-doctoral researcher at Washington State University's School of the Environment and co-author of this most recent study—says: "the Yellowstone volcano's previous behavior is the best guide of what it will do in the future. This research suggests explosive volcanism from Yellowstone is more frequent than previously thought."


Multiple eruptions

 

 

 

Their new research shows that what scientists thought was Yellowstone's biggest eruption, the origin of the the 2 million year old Huckleberry Ridge deposit, was actually two eruptions 6,000 years apart from each other. They used a new high-precision argon isotope dating technique to find this difference. This technology, says co-author Darren Mark, is "like getting a sharper lens on a camera. It allows us to see the world more clearly."

The result is that the first eruption that created Huckleberry Ridge was "only" 2,200 cubic kilometers, roughly 12 percent less than what geologists thought. Then a second eruption happened 6,000 years later, adding the remaining 290 cubic kilometers.

For comparison, Mount St. Helens produced 1 cubic kilometer of ash in its 1980 eruption. And the latest comparable eruption registered in the United States were the 116 cubic kilometers of ash produced by Mount Mazama in Oregon, 6,850 years ago.

Somehow, the idea of the Yellowstone super-volcano eruption being 12-percent less powerful than previously thought but more frequent doesn't make me feel much better.



From Gizmodo @ http://gizmodo.com/5906622/the-yellowstone-supereruption-is-closer-than-you-think


Is the world's largest super-volcano set to erupt for the first time in 600,000 years, wiping out two-thirds of the U.S.?

 



  • The super-volcano beneath Yellowstone National Park in Wyoming has been rising at a record rate since 2004.
  • It would explode with a force a thousand times more powerful than the Mount St Helens eruption in 1980.

Spewing lava far into the sky, a cloud of plant-killing ash would fan out and dump a layer 10ft deep up to 1,000 miles away.

Two-thirds of the U.S. could become uninhabitable as toxic air sweeps through it, grounding thousands of flights and forcing millions to leave their homes.


On the verge of a catastrophe? Yellowstone National Park's caldera has erupted three times in the last 2.1million years and scientists monitoring it say we could be in for another eruption (file picture)
On the verge of a catastrophe? Yellowstone National Park's caldera has erupted three times in the last 2.1million years and scientists monitoring it say we could be in for another eruption (file picture)


This is the nightmare that scientists are predicting could happen if the world’s largest super-volcano erupts for the first time in 600,000 years, as it could do in the near future.

Yellowstone National Park’s caldera has erupted three times in the last 2.1million years and researchers monitoring it say we could be in for another eruption.

They said that the super-volcano underneath the Wyoming park has been rising at a record rate since 2004 - its floor has gone up three inches per year for the last three years alone, the fastest rate since records began in 1923.

But hampered by a lack of data they have stopped short of an all-out warning and they are unable to put a date on when the next disaster might take place.

When the eruption finally happens it will dwarf the effect of Iceland’s Eyjafjallajökull volcano, which erupted in April 2010, causing travel chaos around the world.

The University of Utah's Bob Smith, an expert in Yellowstone's volcanism told National Geographic: ‘It's an extraordinary uplift, because it covers such a large area and the rates are so high.

‘At the beginning we were concerned it could be leading up to an eruption.’


Area of outstanding natural beauty: The Yellowstone caldera (circled in red) in Wyoming is the world's largest super-volcano
Area of outstanding natural beauty: The Yellowstone caldera (circled in red) in Wyoming is the world's largest super-volcano

Scorched earth: An artist's interpretation of how the Midway Basin in the park might look after an eruption
Scorched earth: An artist's interpretation of how the Midway Basin in the park might look after an eruption


But he added: ‘Once we saw the magma was at a depth of ten kilometres, we weren't so concerned.

‘If it had been at depths of two or three kilometre we'd have been a lot more concerned.’

Robert B. Smith, professor of geophysics at the University of Utah, who has led a recent study into the volcano, added: ‘Our best evidence is that the crustal magma chamber is filling with molten rock.

‘But we have no idea how long this process goes on before there either is an eruption or the inflow of molten rock stops and the caldera deflates again’.

The Yellowstone Caldera is one of nature’s most awesome creations and sits atop North America’s largest volcanic field.

Its name means ‘cooking pot’ or ‘cauldron’ and it is formed when land collapses following a volcanic explosion.

In Yellowstone, some 400 miles beneath the Earth’s surface is a magma ‘hotspot’ which rises to 30 miles underground before spreading out over an area of 300 miles across.

Atop this, but still beneath the surface, sits the slumbering volcano.


July 22, 1980: Mount St Helens in Washington erupts. A Yellowstone caldera eruption would explode with a force a thousand times more powerful
July 22, 1980: Mount St Helens in Washington erupts. A Yellowstone caldera eruption would explode with a force a thousand times more powerful


Scientists monitoring it believe that a swelling magma reservoir six miles underground may be causing the recent uplifts.

They have also been keeping an eye on a ‘pancake-shaped blob’ of molten rock he size of Los Angeles which was pressed into the volcano some time ago.

But due the extreme conditions it has been hard to work out what exactly is going on down below, leading researchers unable to say with certainty what will happen - or when.

Since the most recent blast 640,000 years ago there have been around 30 smaller eruptions, the most recent of which was 70,000 years ago.

They filled the caldera with ash and lava and made the flat landscape that draws thousands of tourists to Yellowstone National Park every year.

‘Clearly some deep source of magma feeds Yellowstone, and since Yellowstone has erupted in the recent geological past, we know that there is magma at shallower depths too,’ said Dan Dzurisin, a Yellowstone expert with the U.S. Geological Survey at Cascades Volcano Observatory in Washington State.

‘There has to be magma in the crust, or we wouldn't have all the hydrothermal activity that we have.

‘There is so much heat coming out of Yellowstone right now that if it wasn't being reheated by magma, the whole system would have gone stone cold since the time of the last eruption 70,000 years ago.’




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Monday, 5 December 2011

Earth Changes: Where Did All The Water Go?

Earth Changes: Where Did All The Water Go?

by Dr. Mark Sircus

Bizarre reports of weather extremes continue to come in from all over the world and there is no one anywhere telling the public why we are seeing such violent climate change. Officials are again hitting the global warming button quite hard, but we really do not know what is going on and why. Extreme weather events are hitting human populations around the globe with no sign of any letup.
‘The year 2010 was one the worst years in world history for high-impact floods. But just three weeks into the New Year, 2011 has already had an entire year’s worth of mega-floods’ -- Meteorologist Jeff Masters

We are witnessing terrible flooding occurring in country after country, particularly hard in Italy and France as of late, and it’s not clear how much longer insurance companies can keep paying for claims.

Even the United States government is running out of emergency funds and has trouble voting in more. And when the funds are voted in, it is not real money that is available to repair damages and help disaster victims. It’s funny money, almost counterfeit because it is created out of thin air with more debt creation.

‘2011 has already seen more billion-dollar natural disasters than any year on record.’ -- National Climatic Data Center.

The Associated Press printed: “Nature is pummeling the United States this year with extremes, with insurance companies paying out record-breaking amounts.” Floods are wreaking havoc around the world; cold is setting in early, promising a long cold winter in the north, volcanoes are continuing to blow their tops spilling huge tonnages of gasses and ash, which alone hold potential to lower world temperatures further.

The water is certainly coming from somewhere and according to a NASA report, worldwide rainfall and snowfall were so extreme in so many places last year that sea levels fell dramatically. Sea levels have been rising steadily for over a century (some debate this assumption) as the ever-warmer ocean water expands and the world’s remaining glaciers and ice sheets melt. In fact, sea levels were thought to be rising twice as fast now as they were a few decades ago but now we have had an almost instant turnaround. Nothing in the modern satellite record comes close to the 6 mm drop worldwide last year. While 6 mm might not sound like a lot, when collected from the surface of all our planet’s oceans it adds up to 26,000 gallons of water per human.


One Possible Cause

Tiny changes in the Earth’s cloud cover could account
for variations in temperature of several degrees, most climatologists believe, so this could explain what we are seeing with intensifying rainfall. The amount of ultra-fine condensation nuclei (UFCN) material depends on the quantity of the background drizzle of cosmic rays. Normally this quantity varies depending on the strength of the Sun’s magnetic field and the strength of the Earth’s magnetic field. But lately there seems to be an unexplained increase in cosmic rays and this is troubling scientists.
The world’s most sophisticated particle study laboratory – CERN in Geneva – announced that more cosmic rays do indeed create more clouds in earth’s atmosphere. Henrik Svensmark of the Danish Space Research Institute cloud chamber experiment showed natural cosmic rays quickly created vast numbers of tiny “cloud seeds.” Since clouds often cover 30 percent of the earth’s surface, a moderate change in cloud cover clearly could explain the warming/cooling cycle. Svensmark noted the gigantic “solar wind” that expands when the Sun is active – and thus blocks many of the cosmic rays that would otherwise hit the Earth’s atmosphere. When the Sun weakens, the solar wind shrinks.

Recently, the U.S. Solar Observatory reported a very long period of “quiet sun” and predicted 30 years of cooling.

Recently at the South Pole, increased levels of cosmic rays have been detected crashing into the Earth and they appear to be coming from a particular location rather than being distributed uniformly across the sky. Scientists know of no source close enough to produce this pattern. “We don’t know where they are coming from,” says Stefan Westerhoff of the University of Wisconsin-Madison. It’s a mystery because the hotspots must be produced within about 0.03 light years of Earth. Further out, galactic magnetic fields should deflect the particles so much that the hotspots would be smeared out across the sky. But no such sources are known to exist.

Humans must stay within certain boundaries if they hope to avoid environmental catastrophe, a leading group of environmental scientists has recently said. Crossing those limits may not rock the Earth itself, but would lead to harsh consequences for human existence on the planet as we know it. It does seem like we have crossed that boundary and have done so very quickly. In 2011 natural disasters have been the rule not the exception with flooding taking first place in how Nature is striking at us.


All one has to do is look around to witness the world drowning in floods. Thousands of Bangkok residents flocked to bus, rail and air terminals in an exodus from the mass of floodwater that hit the city. Water was seeping into central areas of the city of 12 million people, entering the grounds of the Grand Palace after the main Chao Phraya river overflowed at high tide. The floods forced the closure of seven industrial estates in Ayutthaya, Nonthaburi and Pathum Thani provinces bordering Bangkok, causing billions of dollars of damage, disrupting supply chains for industry, and putting about 650,000 people temporarily out of work.

Over 700 people have been killed and eight million affected by heavy flooding across Southeast Asia. Torrential rains have pelted Thailand, Cambodia, Laos and Vietnam, cutting off roads and destroying homes and crops. At least 900 factories have been shut in Thailand because of the flooding; many of them auto-parts manufacturers.
On October 31, 2011 about 1.8 million people in at least five states remained without power after a rare October snowstorm buried parts of the Northeast under more than two feet of snow. On the 25th more than 90 people were counted dead from heavy rains pounding Central America after Guatemala reported more people swept away by raging floodwaters and Costa Rica found four drowned. An estimated 700,000 people were displaced by floods and landslides following as much as 120 centimeters (47 inches) of rain in the past week in some areas – three times the monthly average this season – officials said. The week before had people killed by a week of torrential rains in El Salvador.

At least nine people have been killed and five others are missing after flash floods hit the Italian Riviera turning roads into rivers and washing cars out to sea. Two people were swept away in floodwaters when torrential rains created rivers near Costa Blanca. And Dublin’s officials began the onerous task of piecing the capital back together again on Tuesday after a torrential downpour the day before swelled the city’s main waterways, causing them to burst their banks. Water spilled over into the streets, and the flooding quickly prompted Dublin’s City Council to enact its “major emergency plan.”



Volcanic Eruptions and Climate Change

Volcanic eruptions affect the Earth’s climate
more than previously thought by releasing far more weather-altering particles than scientists’ suspected, new research finds. Researchers have analyzed how many secondary particles of volcanic ash are generated and how this ash reacts chemically with other components of the atmosphere. The particles created from the eruptions are mostly composed of sulfuric acid.

.

If sulfuric acid particles become large enough, they act as seeds for cloud formation. Clouds, in turn, can alter the amount and type of precipitation an area receives. The atmospheric data the researchers collected during the Eyjafjallajökull eruption suggest that volcanic eruptions can release up to 100 million times more ash particles than thought. In addition, seeding particles can form at lower altitudes and farther distances from volcanoes than past studies had suggested.

“Most previous studies did not properly account for low-altitude impacts of volcanoes,” researcher Julien Boulon, a physicist at the Laboratory of Meteorology Physics of the French National Center for Scientific Research and Blaise Pascal University in Aubiere, France, told OurAmazingPlanet. The findings, detailed online on July 11 in the journal Proceedings of the National Academy of Sciences, point to the potentially broader climate influence that volcanoes could have.


Conclusion

Whatever is governing these extreme climate events
will hit us emotionally and in fact we do find survivors of disasters facing a considerable amount of post-traumatic stress. The worst danger, though, is to the world’s agricultural system, which is taking a beating from the flooding as the human race breaks through the seven billion mark. Even before this year’s record disasters, world food stocks were getting dangerously low. The poor peoples of the world are paying more dearly for their food as a result, meaning many are eating less.

Life is hard and has always been so for most of humanity. Certain moments in history are harder than others and of course it always depends on where and who one is. Today the entire fabric of Earth is changing and threatening us. We have entered one of the most difficult and perhaps dangerous periods of our existence; and it comes after 60 years of television and the easy life for too many people who will not do well when the going gets tougher.


Dr. Mark Sircus is a natural health expert and self-sufficiency advocate.  He is the author of several must-read books including titles such as Survival Medicine For the 21st Century, Winning the War on Cancer, and Humane Pediatrics.  You can find all of Mark's informative articles at his website IMVA.






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This material is published under Creative Commons Fair Use Copyright (unless an individual item is declared otherwise by copyright holder) – reproduction for non-profit use is permitted & encouraged, if you give attribution to the work & author - and please include a (preferably active) link to the original along with this notice. Feel free to make non-commercial hard (printed) or software copies or mirror sites - you never know how long something will stay glued to the web – but remember attribution! If you like what you see, please send a tiny donation or leave a comment – and thanks for reading this far…

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Tuesday, 4 May 2010

Ocean Floor Rises by 13 Feet per Day Near Australia

Ocean Floor Rises by 13 Feet per Day Near Australia





The National Oceanic and Atmospheric Administration website [link to www.ndbc.noaa.gov] has a Tsunami station in event mode activated for Station 55023 - STB Coral Sea located at 14.803 S 153.585 E (14°48'9" S 153°35'6" E).

The tsunami station has been in event mode since large quakes occurred in the area for several days now. This is triggered by the buoy registering anomalies in the level of water column height above the sea floor.

If you do a data search for 2010 March 20th to 2010 April 13th you get this-

Over 100 meters or 328 feet less distance from buoy to sea floor in 24 days! That’s 13 feet per day since the quakes.

As you will see from the waves on the line graph it matches the tide lines perfectly

Coral Sea tide chart –

[link to www.tide-forecast.com]

So Station buoy 55023 is still on the surface. Its not the lunar cycles, checked that as well.


There also has been a very odd sea surface temperature in the same location

See link CSIRO web page
[link to www.marine.csiro.au]

Note the area in blue on the map on the left then see the unusually cold surface temperatures on the surface in the map on the right.

Seismic activity has also offers an insight as to what may be occurring

[link to aslwww.cr.usgs.gov]

Note the long time periods of S waves on this seismic station is the upward thrust of the ocean floor by 13 feet per day?


New Illuminati’:

Here's a possible xplanation, gleaned from Davis Wilcock @ Divine Cosmos - "...And if you can indeed knock out something as solid and resilient as a missile with this technology, what could you do to the weather? Or to seismic fault lines, if you bounced your beam off the ionosphere and then aimed it back down towards the ground on a triangulated point?
This is precisely what many insiders say HAARP is really being used for -- weather modification and 'natural' disasters. This research article is a preliminary step towards establishing such a connection, despite making some huge and unlikely leaps in logic by tying in worldwide events that HAARP may or may not have been responsible for.
One of the most interesting data points the above author found is this -- namely how some of the waves from HAARP in Alaska would converge on a "magnetic conjugate point" in the South Pacific Ocean:
[link to www-star.stanford.edu]
The program will study radio waves generated by the HAARP transmitter in Alaska.
We expect some waves to be ducted along the earth’s magnetic field lines – propagating out beyond five times the earth’s radius and returning to earth at a remote location in the South Pacific Ocean…. {the South Pacific is a hot bed of seismic activity}
These waves will propagate through several important physical layers beyond the earth’s atmosphere.
By operating a receiver at the magnetic conjugate point where the waves are most likely to return to earth, we will develop significant scientific understanding of those layers and the processes that affect them.
Therefore, it may well be possible to generate HAARP effects that could potentially be strong enough to knock out a Russian nuclear missile. These same waves could also potentially hit certain locations around the world -- including seismic fault lines -- by directing them at various magnetic conjugate points..."
From [link to divinecosmos.com]


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