Showing posts with label Yamal. Show all posts
Showing posts with label Yamal. Show all posts

Thursday, 10 September 2020

Witnessing the methane exploding in Siberia

 'As if The Earth Was Breathing': Witness Describes Siberia Crater Before Explosion



Newsweek,

7 September, 2020


A woman who visited a "heave mound" on Siberia's Arctic tundra before it exploded to form a huge crater said it was "as if the earth was breathing" and that the ground was shaking.


Professor Vasily Bogoyavlensky, Doctor of Engineering Sciences from the Russian Academy of Sciences, told Siberian Times the local woman had become interested in the unusual ground formation that had developed in the region and had been visiting the site daily.


"But on the day of [the] explosion she felt some tremor, she described it as if the earth was breathing," he is quoted as saying. "She quickly left the place just in time before it exploded. If she had shown more curiosity, she would have been killed by this explosion and we would have the first victim."




There are 17 identified funnels of exploded so-called ‘heave mounds’ recorded on the Yamal and Gydan peninsulas since the first ’crater’ known as C1 started the history of observations in summer 2014.


They are believed to be caused by the build up of methane gas in pockets of thawing permafrost under the surface; these swollen pingo-like formations then erupt with gas blowing off thick caps of soil, shooting out chunks of ice and soil as large as 150 cubic metres as happened in 2017 when the Seyakha pingo erupted.


The newest - number 17 on Russian scientists’ list - ‘crater’ appeared earlier this summer in an undisclosed location on the Yamal peninsula. 


It is currently 31 metres (102 ft) deep, although scientists believe that it was about 40 metres (131 ft) deep at the moment of eruption, with the bottom of the crater quickly covered by collapsing soil.


It was in our database as one of 7,185 permafrost heave mounds on the Yamal and Gydan peninsula.


'Five to six per cent of them are really dangerous’, said Professor Vasily Bogoyavlensky, who has recently returned from a major scientific expedition to study the recently erupted mound. 

The massive database of pingos is getting compiled thanks to satellite monitoring and regular helicopter expeditions. 


Currently several areas in the Arctic - namely the Seyakha area, the North-Tambey area, the South-Tambey field close to the village of Sabetta, and the West-Seyakha gas field - are on the list of ‘the most dangerous sites’ with the highest concentration of the pingo-like mounds.


The process of these mounds forming and exploding is now mostly clear to science, with researchers focusing on how to distinguish the dangerous mounds from the non-explosive ones, and, most importantly, on how to prevent future eruptions.


They can be cut open with gas being pumped out. It must be done very carefully, it is sappers’ work, as these phenomena can be called ‘gas mines’, Dr Bogoyavlensky told The Siberian Times. 

At the Seyakha crater, a local woman became fascinated with the bulging mound and visited it daily, he said. 


But on the day of explosion she felt some tremor, she described it las if the earth was breathing.


She quickly left the place just in time before it exploded. If she had shown more curiosity, she would have been killed by this explosion and we would have the first victim.’


At least three of the recorded eruptions had witnesses, who reported seeing the ignition. 


These were the Antipayuta crater (C3), the Seyakha crater (C11) and the Yerkuta crater (C12) eruptions. 


We believe the ignition was caused by electrostatic discharges, which adds to the danger of the mounds’, Vasily Bogoyavlensky said. 


According to Professor Bogoyavlensky and his team, the exploding mounds described as ‘pingo like features’ differ from classic pingos or bulgunnyakhs. 


Pingos usually form in the depressions of dried up lakes (khasyrei) and have an ice core which expands and makes them grow. 


In the formation of the pingo-like features in northern Siberia, the methane migrates from deeper layers through sub-vertical faults in thawed zones (cryopegs) to fill a cavity formed in permafrost. 


Usually such cavities are covered by a 7 to 9 metre thick seal of permafrost.


The volume of the chamber increases under the growing pressure from the gas and eventually blows up the seal with massive chunks of frozen rock and soil thrown as far as 900 metres from the epicentre. 


Video filmed by Anton Sinitsky in 2017 shows the Seyakha 'crater' with gas emission continuing months after the eruption


http://siberiantimes.com/other/others/news/more-than-300-sealed-craters-are-ticking-time-bombs-from-a-total-7000-plus-arctic-permafrost-mounds/


 

Monday, 7 September 2020

The tundra is exploding in Siberia. Again

 Everything Is Extremely Normal and Totally Fine


Brian Kahn



Gizmodo,


The tundra is exploding in Siberia. Again.


A 165-foot-deep (50-meter) crater has ripped open in the northwest region of what’s normally one of the coldest places on Earth. The past year, though, it’s been anything but, and the crater is just the latest sign of Siberia’s summer of hot discontent.


Journalists on assignment to cover something else entirely on the Yamal Peninsula in northwest Siberia happened upon the perfectly concentric wound in the Earth. The footage showing the uninterrupted tundra marred by a pit to hell was shot in July but released over the weekend.


It looks like a bomb crater, but the reason for the hole isn’t an explosive dropped from above but rather what’s happening beneath the surface. The tundra of Siberia and in other parts of the world is undergird by permafrost, a frozen soil rich in the greenhouse gas methane. Unfortunately, the climate crisis is causing that soil to thaw, releasing methane into the atmosphere. Bad news for the planet, to be sure, since methane is a greenhouse gas roughly 30 times more potent than carbon dioxide (permafrost can also release that, too, because of course it can). But changes in permafrost can also cause Earth to occasionally yeet a hunk of tundra into the sky.


Methane is also the main ingredient in natural gas, which, as you may happen to know, can catch fire or explode under pressure. Sue Natali, Arctic program director at Woodwell Climate Research Center, said in an email that the gas can build up in pockets of unfrozen soil in the permafrost known as cryopegs.


Warming and thawing of surface soil weakens the frozen ‘cap,’ resulting in the blowout that causes the craters,” she said.



The Yamal Peninsula has seen a spate of these craters since 2014. Natali said there haven’t been enough to peg them to any specific feature there, but the structure of the permafrost with a thick icy layer and widespread presence of cryopegs and methane-rich natural gas deposits could be one possible explanation for why it’s the crater capital of the Arctic.


Conditions aboveground this year certainly have increased the odds of blowouts. Across Siberia, things have been extremely hot and on fire. Temperatures raced to 100 degrees Fahrenheit (37.8 degrees Celsius) in June, an exclamation point in what has been the hottest year on record for Russia so far. Wildfires have torn across the landscape since April, with some of them raging back to life after overwintering in carbon-rich peat soil. Temperatures in Russia averaged 7.2 to 12.4 degrees Fahrenheit (6 to 8 degrees Celsius) above normal this winter, with hotter pockets over Siberia. The heat likely weakened permafrost, priming it for all sorts of weird behavior this summer. In addition to the explosion, permafrost collapse contributed to a huge diesel spill that contaminated a pristine Siberian lake.


And honestly, while the crater is certainly worthy of staring at in slack-jawed wonder, it’s the other permafrost impacts that are the most scary. Scientists have found millions of methane hot spots dotting the landscape, and the Arctic has become a net carbon dioxide emitter for the first time on record. That’s bad news for the climate. The less explosive forms of permafrost destruction are also wreaking havoc for those who call the Arctic home. As permafrost thaws, it can slump, erode, or simply flood the landscape by creating marshy formations known as thermokarst. That wrecks infrastructure from apartment buildings to traditional ice cellars, upending life there. As many as 4 million people could see their lives directly altered by midcentury if permafrost continues its more liquid and sometimes explosive transformation. And those changes will be permanent unless we act to cut emissions and slow the planet from warming ASAP.


I think it is very likely that heat waves can and are triggering abrupt events in the Arctic,” Natali said. “This is pretty important, because these events (craters, thermokarsts) are largely irreversible.”



Everything Is Extremely Normal and Totally Fine


Brian Kahn




Gizmodo,


The tundra is exploding in Siberia. Again.


A 165-foot-deep (50-meter) crater has ripped open in the northwest region of what’s normally one of the coldest places on Earth. The past year, though, it’s been anything but, and the crater is just the latest sign of Siberia’s summer of hot discontent.


Journalists on assignment to cover something else entirely on the Yamal Peninsula in northwest Siberia happened upon the perfectly concentric wound in the Earth. The footage showing the uninterrupted tundra marred by a pit to hell was shot in July but released over the weekend.


It looks like a bomb crater, but the reason for the hole isn’t an explosive dropped from above but rather what’s happening beneath the surface. The tundra of Siberia and in other parts of the world is undergird by permafrost, a frozen soil rich in the greenhouse gas methane. Unfortunately, the climate crisis is causing that soil to thaw, releasing methane into the atmosphere. Bad news for the planet, to be sure, since methane is a greenhouse gas roughly 30 times more potent than carbon dioxide (permafrost can also release that, too, because of course it can). But changes in permafrost can also cause Earth to occasionally yeet a hunk of tundra into the sky.


Methane is also the main ingredient in natural gas, which, as you may happen to know, can catch fire or explode under pressure. Sue Natali, Arctic program director at Woodwell Climate Research Center, said in an email that the gas can build up in pockets of unfrozen soil in the permafrost known as cryopegs.


Warming and thawing of surface soil weakens the frozen ‘cap,’ resulting in the blowout that causes the craters,” she said.

Blocks of soil and ice thrown hundreds of metres from epicentre of the funnel at the Yamal peninsula.


The recently-formed new hole or funnel is the latest to be seen in northern Siberia since the phenomenon was first registered in 2014. 


It was initially spotted by chance from the air by a Vesti Yamal TV crew en route from an unrelated assignment. 


A group of scientists then made an expedition to examine the large cylindrical crater which has a depth of up to 50 metres.


Such funnels are believed to be caused by the build up of methane gas in pockets of thawing permafrost under the surface.


Scientist Dr Evgeny Chuvilin, a leading researcher at Skolkovo Institute of Science and Technology, said: ‘What we saw today is striking in its size and grandeur. 


'These are the colossal forces of nature that create such objects.’


The 'crater' - these holes are called hydrolaccoliths or bulgunnyakhs by scientists - is given the number 17, and is seen as the most impressive of the large holes to suddenly appear in recent years as the permafrost thaws. 


Professor Vasily Bogoyavlensky, of the Russian Oil and Gas Research Institute in Moscow, told Vesti Yamal: 'This object is unique. It carries a lot of additional scientific information, which I am not yet ready to disclose. 


'This is a subject for scientific publications. We have to analyse all this, and build three-dimensional models.’


The craters appear because ‘gas-saturated cavities are formed in the permafrost…


In a literal sense, a void space filled with gas with high pressure. The covering layer distends, the thickness of which is 5-10 metres approximately.’


Explosions have happened in swelling pingos, or mounds in the tundra which erupts when the gas builds up under a thick cap of ice. 


Bogoyavlensky has previously claimed that human activities, like drilling for gas from the vast Yamal reserves could be a factor in the eruptions. 


He is concerned at the risk of ecological disasters if pingos build up close to a gas pipelines, production facilities or residential areas.


In a number of areas, pingos - as we see both from satellite data and with our own eyes during helicopter inspections - literally prop up gas pipes,’ he said previously.


http://siberiantimes.com/other/others/news/giant-new-50-metre-deep-crater-opens-up-in-arctic-tundra/


Giant new 50-metre deep crater opens up after explosion in Arctic tundra 


Giant new 50-metre deep crater opens up after explosion in Arctic tundra 


Giant new 50-metre deep crater opens up after explosion in Arctic tundra 


Giant new 50-metre deep crater opens up after explosion in Arctic tundra 


Giant new 50-metre deep crater opens up after explosion in Arctic tundra 


Giant new 50-metre deep crater opens up after explosion in Arctic tundra 


Giant new 50-metre deep crater opens up after explosion in Arctic tundra 
Pictures of B1, the very first funnel seen in summer 2014 on the Yamal peninsula, and a map of the first four funnels in both Yamal and Taymyr peninsula. Pictures: Vasily Bogoyavlensky