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    Showing posts with label methane. Show all posts
    Showing posts with label methane. Show all posts

    Saturday, March 3, 2018

    Warning Signs


    The Arctic is warming up more than twice as fast as the rest of the world, due to numerous feedbacks. At times, large areas over the Arctic Ocean can become 30°C or 54°F warmer than 1979-2000, as illustrated by the image below.


    On February 27, 2018, large parts of the Arctic Ocean north of Greenland had turned into open water, as illustrated by the image below.


    Yet, while the situation in the Arctic is desperate, with sea ice north of Greenland collapsing and more, mainstream media do not seem to care. If there ever were warning signs of what could eventuate, this is one. The sea ice north of Greenland is typically the thickest, as it is the least affected by melting and can build over many years. Early February 2018, sea ice north of Greenland was up to 5 m thick. To see sea ice this thick getting pushed away and open water emerging north of Greenland in the middle of winter is simply stunning.

    For years, I've been warning about the situation in the Arctic, in particular the 'Open Doors Feedback', which is accelerating Arctic warming. Such feedbacks were taken into consideration in an earlier analysis that warned about a potential 1.6°C warming globally due to albedo changes in the Arctic, in combination with associated changes such as loss of the ice buffer (latent heat), more heat transfer from the Atlantic Ocean to the Arctic Ocean due to stronger winds along the path of the Gulf Stream, and more heat entering the atmosphere or remaining in the atmosphere, due to more open water in the Arctic Ocean and as oceans get more stratified and take up less heat from the atmosphere.

    So, the current situation doesn't come as a big surprise, but it's stunning to see sea ice collapse north of Greenland.

    Back in March 7, 2007, I posted the article 'Ten Dangers of Global Warming', describing events getting progressively worse, with one danger feeding and reinforcing the next one, culminating in panic. Then, I thought that reading that post could at least help people better understand what's going on, and thus help people avoid panicking, but right now, I wonder whether most people do want to understand at all. Anyway, here are some images and words describing what happened over the past few days.

    Jet Stream over Arctic Ocean on February 25, 2018

    As Arctic warming keeps accelerating, there's ever less temperature difference between the North Pole and the Equator, and this slows down the speed at which the jet stream circumnavigates Earth.

    Jet Stream over Arctic Ocean on February 26, 2018
    The jet stream is getting more wavy and a more wavy jet stream makes it easier for cold air to move out of the Arctic and for warm air to move into the Arctic, so this 'Open Doors Feedback' is a self-reinforcing feedback that further accelerates warming in the Arctic.

    During the northern winter, the Arctic is increasingly getting warmer than North America, Europe and Siberia. This increases the temperature difference between these continents and the oceans, which at times is causing winds to strongly speed up over the North Atlantic and the North Pacific, making an already wavy jet stream extend even further over the Arctic Ocean, reaching areas well beyond the North Pole.

    Atmospheric river of heat reaches the North Pole; temperatures were as high as 1.1°C or 34.1°F on February 25, 2018
    As the jet stream makes this detour, a huge amount of heat enters the Arctic from the south.

    Temperatures above 6°C at Kap Morris Jesup, Greenland's northernmost weather station, on February 25, 2018

    These events were preceded by the Polar Vortex splitting up. On February 9, 2018, the Polar Vortex was split up into 4 vortices and reached speeds as fast as 425 km/h or 264 mph.

    Polar Vortex split up into 4 vortices
    A Sudden Stratospheric Warming event occurred on February 16, 2018, with temperatures reaching as high as 8.9°C or 47.9°F over Hudson Bay.

    Polar Vortex splitting up into 4 vortices with a Sudden Stratospheric Warming event occurring on February 16, 2018
    The heat that has accumulated in the Arctic Ocean is further illustrated by the February 2018 NASA temperature anomalies image below.


    Below is an animation of sea ice thickness, from the Naval Research Laboratory.


    Arctic sea ice extent was at record low for the time of the year on February 26, 2018, at 14.159 million km². Arctic sea ice extent typically reaches its maximum in March, but maximum extent in 1991-2000 was reached on February 24. So, there is a chance that Arctic sea ice extent will go all downhill from now on this year.


    Zero sea ice volume is within the margins of the trend depicted on the image above on the right. Decline of the snow and ice cover in the Arctic comes with a huge loss in albedo, which means that huge amounts of sunlight that were previously reflected back into space instead get absorbed by the Arctic. Loss of sea ice also means loss of the buffer that until now has consumed huge amounts of heat.

    The Buffer has gone, feedback #14 on the Feedbacks page
    Peak SST near Svalbard rose from
    12.4°C or 55.4°F on Feb 23, 2018,
    to 15.6°C or 60°F on Mar 2, 2018.
    The danger is that a sudden influx of heat can no longer be absorbed by the sea ice and will instead warm up sediments at the seafloor of the Arctic Ocean that can contain huge quantities of methane in the form of hydrates and free gas.

    Destabilization of hydrates can occur in a relatively small area as a result of a relatively small temperature rise. Destabilization comes with a 160 times expansion in volume of the methane, which will send out shock waves that can destabilize nearby hydrates, causing them to destabilize as well, resulting in an eruption of huge quantities of methane over a large area.

    Here's another warning sign. Peak sea surface temperature near Svalbard rose from 12.4°C or 55.4°F on February 23, 2018, to 15.6°C or 60°F on March 2, 2018, as illustrated by the red line on the image on the right, with the blue line showing the 1981-2011 average.

    And here's another warning sign. High methane releases followed this chain of events on February 27, 2018, pm, likely originating from the seafloor of the East Siberian Arctic Shelf (ESAS).

    Methane levels as high as 2892 ppb on February 27, 2018
    On March 1, 2018, methane levels as high as 3087 were recorded. Note the solid magenta-colored areas over the ESAS on the image below.


    The image below, with measurement by another satellite, shows that methane levels were again very high over the ESAS the next day, i.e. March 2, 2018, confirming earlier indications that this is where the very high methane releases did occur.

    As the image below shows, methane levels on March 4, 2018, were still very high, i.e. as high as 2964 ppb.

    The image below shows the highest mean global methane readings on March 10 over the years from 2013 through 2018, for selected altitudes corresponding to 945 mb (close to sea level) to 74 mb.

    [ click on images to enlarge ]
    The table below shows the altitude equivalents in feet (ft), meter (m) and millibar (mb).
    57,016 ft44,690 ft36,850 ft30,570 ft25,544 ft19,820 ft14,385 ft 8,368 ft1,916 ft
    17,378 m13,621 m11,232 m 9,318 m 7,786 m 6,041 m 4,384 m 2,551 m 584 m
     74 mb 147 mb 218 mb 293 mb 367 mb 469 mb 586 mb 742 mb 945 mb

    An earlier analysis calculated that seafloor methane could cause a warming of 1.1°C within one decade. Given a possible additional warming of 2.7°C due to just two elements (i.e. Arctic albedo changes and associated changes, and seafloor methane), a further warming of 2.1°C due to extra water vapor in the warmer atmosphere does seem well possible within a decade. Add up the impact of all warming elements of this analysis and the rise in mean global temperatures from preindustrial could be more than 10°C within one decade, as illustrated by the images below.


    A rise of a few degrees Celsius would be devastating, especially when considering that the speed at which such a rise could occur leaves little or no time for plants and animals to adapt, let alone in case of a 10°C rise.


    The situation is dire and calls for comprehensive and effective action, as described in the Climate Plan.

    Links

    • Climate Plan
    https://arctic-news.blogspot.com/p/climateplan.html

    • Feedbacks in the Arctic
    https://arctic-news.blogspot.com/p/feedbacks.html

    • Extinction
    https://arctic-news.blogspot.com/p/extinction.html

    • Ten Dangers of Global Warming
    https://arctic-news.blogspot.com/p/ten-dangers-of-global-warming.html

    • Methane Erupting From Arctic Ocean Seafloor
    https://arctic-news.blogspot.com/2017/03/methane-erupting-from-arctic-ocean-seafloor.html

    • Warning of mass extinction of species, including humans, within one decade
    https://arctic-news.blogspot.com/2017/02/warning-of-mass-extinction-of-species-including-humans-within-one-decade.html


    Tuesday, January 2, 2018

    Unfolding Arctic Catastrophe

    On January 1, 2018, methane levels as high as 2764 ppb (parts per billion) were recorded. The solid magenta-colored areas near Greenland indicate that this very high reading was likely caused by methane hydrate destabilization in the sediments on the seafloor of the Arctic Ocean.


    The state of the sea ice is behind this. On January 1, 2018, Arctic sea ice extent was at record low for the time of the year. The smaller the extent, the less sunlight gets reflected back into space and is instead absorbed in the Arctic.

    At this time of year, though, hardly any sunshine is reaching the Arctic. So, what triggered this destabilization? As the image below indicates, year-to-date average Arctic sea ice volume has been at record low in 2017, which means that there has been very little sea ice underneath the surface throughout 2017.


    Warm water will melt the sea ice from below, which keeps the water at greater depth cool. However, when there is little or no sea ice underneath the surface, little or no heat will be absorbed by the process of melting and the heat instead stays in the water, with the danger that it will reach sediments at the bottom of the Arctic Ocean, as illustrated by the image below.

    The Buffer has gone, feedback #14 on the Feedbacks page
    [ image from: Warming is accelerating ]
    The image on the right shows warm water from the North Atlantic arriving near Svalbard. How warm is the water beneath the surface of the Arctic Ocean? The image below gives an indication, showing how much warmer the water was from October 1, 2017, to December 30, 2017, at selected areas near Svalbard, where warm water from the North Atlantic dives under the sea ice of the Arctic Ocean, carried by the Gulf Stream.

    [ click on images to enlarge ]
    In 1981-2011, temperatures were gradually falling by more than one degree Celsius from October 1 to the December 21 Solstice, then started to rise again in line with the change in seasons (blue line). In 2017, temperatures were rising in October. On October 25, 2017, the sea surface was as warm as 17.5°C or 63.5°F, i.e. a 14.1°C or 24.5°F anomaly. On average, it was 12.96°C or 23.35°F warmer during the period from October 1 to December 30, 2017 (red line), compared to the same days in 1981-2011.

    The images below further illustrate the situation. Surface temperature of the atmosphere near Svalbard was as warm as 7°C or 44.5°F on January 13, 2018 (at green circle, left panel). The sea surface near Svalbard was as warm as 15.9°C or 60.8°F on January 12, 2018, compared to 2.4°C or 36.4°F on January 12 for the period 1981-2011 (at green circle, center panel). Waves as high as 13.04 m or 42.8 ft (at green circle, right panel) batter the North Atlantic along Norway's coast all the way to Svalbard on January 15, 2018.


    The image below shows that waves as high as 16.01 m or 52.5 ft are forecast to batter the North Atlantic on January 16, 2018 (green circle, left panel). 100% relative humidity is recorded over the Arctic Ocean on January 15, 2018 (green circle, center panel). The Jet Stream reaches speeds as high as 426 km/h or 264 mph on January 15, 2018 (green circle, right panel).


    Similar extreme weather patterns can be seen elsewhere in the Arctic. The image below on the left shows that temperatures as high as 18.5°C or 65.3°F were recorded on Jan. 14 and 15, 2018 in Metlakatla, Alaska. The image below on the right shows that surface temperatures as high as 7.4°C or 45.2°F were reached on January 16, 2018, in Yukon Territory, Canada (at green circle).

    [ click on images to enlarge ]

    In conclusion, as the Arctic is warming up faster than the rest of the world, Jet Streams are getting more wavy, resulting in more extreme weather events. Wind speed accelerates over warmer oceans, pushing more heat into the Arctic Ocean, threatening to cause eruptions of huge amounts of methane from the Arctic Ocean seafloor.

    The situation is dire and calls for comprehensive and effective action as described at the Climate Plan.


    Links

    • Climate Plan
    https://arctic-news.blogspot.com/p/climateplan.html

    • Warming is accelerating
    https://arctic-news.blogspot.com/2017/11/warming-is-accelerating.html

    • Feedbacks
    https://arctic-news.blogspot.com/p/feedbacks.html

    • 10°C or 18°F warmer by 2021?
    https://arctic-news.blogspot.com/2017/04/10c-or-18f-warmer-by-2021.html

    • Abrupt Warming - How Much And How Fast?
    https://arctic-news.blogspot.com/2017/05/abrupt-warming-how-much-and-how-fast.html

    • Accelerating growth in CO₂ levels in the atmosphere
    https://arctic-news.blogspot.com/2017/02/accelerating-growth-in-co2-levels-in-the-atmosphere.html

    • High methane levels over the Arctic Ocean on January 14, 2014
    https://arctic-news.blogspot.com/2014/01/high-methane-levels-over-the-arctic-ocean-on-january-14-2014.html

    • Extinction
    https://arctic-news.blogspot.com/p/extinction.html

    • Methane Erupting From Arctic Ocean Seafloor
    https://arctic-news.blogspot.com/2017/03/methane-erupting-from-arctic-ocean-seafloor.html

    • 2015 warmest year on record
    https://arctic-news.blogspot.com/2015/12/2015-warmest-year-on-record.html

    • Accelerating Warming of the Arctic Ocean
    https://arctic-news.blogspot.com/2016/12/accelerating-warming-of-the-arctic-ocean.html

    • Arctic Ocean Feedbacks
    https://arctic-news.blogspot.com/2017/01/arctic-ocean-feedbacks.html

    • Warning of mass extinction of species, including humans, within one decade
    https://arctic-news.blogspot.com/2017/02/warning-of-mass-extinction-of-species-including-humans-within-one-decade.html

    Wednesday, August 2, 2017

    Arctic sea ice may well be gone by September 2017

    The Arctic Ocean is warming up fast and this is melting the sea ice from below.

    Sea surface temperature anomalies are well above 8°C (14.4°F) in several parts of the Arctic Ocean.

    The image on the right shows sea surface temperature anomalies from 1961-1990 for the Arctic (60°N - 90°N) on August 2, 2017.

    Global sea ice extent is at a record low for the time of the year, as illustrated by the graph below, by Wipneus. Lower sea ice extent means that less sunlight is reflected back into space.


    Arctic sea ice extent in 2017 is shrinking along a path that currently looks similar to the years 2012, 2016 and 2007, when sea ice reached 1st, 2nd and 3rd place, respectively, regarding lowest extent (image right).

    Arctic sea ice volume has been at record low since the start of 2017 and is currently similar to 2012, as illustrated by the graph below right, by Wipneus (click on images to enlarge them).

    Arctic sea ice may look to be similar to what it was in 2012, when extent and volume reached lowest since satellite measurements began.

    However, sea ice thickness has fallen dramatically over the years in the areas where previously was the thickest ice.

    This is illustrated by the combination image below, showing Arctic sea ice thickness (in m) in July 31, 2012 (left panel) versus thickness on July 31, 2017 (right panel).

    [ click to enlarge ]
    The navy.mil animation on the right shows sea ice getting thinner recently, with especially the thicker sea ice disappearing fast.

    There appear to be discrepancies between the PIOMASS calculation of ice volume and the ice thickness images by navy.mil.
    This may be due to the way volume is calculated and may be similar to differences in extent and area.

    Sea ice clearly has disappeared most where once the thickest ice was present.


    Harold Hensel points out that extent may at first glance show more ice but each cell in a grid may only have 15% of ice present to be labeled 'ice-covered'. Harold adds an image showing ice concentration, which gives another insight in the shape and condition of the sea ice (above image).

    Paul Beckwith and Patrick McNulty bluntly conclude that PIOMAS is wrong, as illustrated by the Twitter screenshot on the right.

    Clearly, dramatic shrinking of the thicker sea ice has occurred over the past few years and one of the reasons for this is the ever warmer water that is getting pushed into the Arctic Ocean along the Gulf Stream. This is melting the sea ice from below. Warming of the Arctic Ocean heats up the air over the Arctic Ocean, as illustrated by the image below.


    [ click on image to enlarge ]
    The above image shows a 365-day surface temperature anomaly. The change over time is also illustrated by the animation on the right.

    On average, surface temperatures over the Arctic Ocean have been more than 2.5°C (or 4.5°F) warmer than in 1981-2010. The warmer air is now also melting the sea ice from above, as temperatures over the Arctic have risen to well above the freezing point.

    High temperatures over the Arctic Ocean means that precipitation no longer takes the form of snow, but instead falls in the form of rain.


    Below is a further warning, against a more recent background image (situation on August 6, 2017).


    [ click on image to enlarge ]
    High temperatures of the surface of the ocean combined with strong winds makes that a lot of moisture is rising from the sea surface to the atmosphere.

    The image on the right shows that sea surface temperatures in the Bering Strait were as high as 19°C (or 66.2°F) on July 22, 2017. This is partly the result of warm water from rivers entering the Bering Strait.

    Furthermore, cyclones can make winds reach high speeds, as illustrated by the image below, showing Typhoon Noru approaching Japan.

    The image shows a forecast for August 5, 2017, 18:00 UTC. Waves have been forecast to be as high as 16.15 m or 53 ft, while winds have been forecast to be as fast as 214 km/h or 133 mph or 116 kn.

    [ click on image to enlarge ]
    Total precipitable water has been forecast to be as much as 91.000 kg/m² and 3-hr Precipitation Accumulation has been forecast to be as much as 281.3 mm (or 281.3 kg/m²) or 11.07 in.

    Back to the Arctic, where strong winds and moist air combine to make a lot of rain, as temperatures are well above freezing in most areas, as illustrated by the image on the right (showing air temperature at 2 m).

    The image below shows how strong winds are pushing warm and moist air through the Bering Strait on July 31, 2017 at surface level (left), at 700 hPa (center) and at 250 hPa (right), where the jet stream used to separate the cold air in the Arctic from the warmer air further south.


    As above image also shows, the jet stream is getting more and more out of shape, at places crossing the Arctic Ocean. In the video below, Paul Beckwith discusses the situation in the Arctic.


    The image below shows trends for both Arctic and Antarctic sea ice area pointing downward.


    When looking at sea ice volume, zero sea ice in September 2017 is within the margins of the trendline below on the right.

    [ Arctic sea ice, gone by Sept. 2017? ]
    Given the speed at which many feedbacks can kick in and the interaction between warming elements, Arctic sea ice volume may well be gone by September 2017.

    The low sea ice volume means that there is very little sea ice left to act as a buffer this year. Therefore, a huge amount of heat will not be able to be consumed this year in the process of melting ice and will instead speed up warming of water of the Arctic Ocean.

    Less sea ice additionally means that less sunlight will be reflected back into space, and this heat will instead further speed up Arctic warming.

    The Buffer has gone, feedback #14 on the Feedbacks page

    Where can all this extra heat go? Sea ice is expected to start sealing off much of the surface of the Arctic Ocean by the end of September 2017, which will make it harder for heat to escape the Arctic Ocean by entering the atmosphere.

    The danger is that much of the extra heat will instead reach sediments at the seafloor of the Arctic Ocean that contain huge amounts of methane in currently still frozen hydrates.

    The image on the right shows that methane reached levels as high as 2583 ppb on July 31, 2017.

    The image also shows high methane levels over Antarctica where hydrate destabilization also appears to be taking place, as discussed in an earlier post.

    The situation is dire and calls for comprehensive and effective action, as described at the Climate Plan.


    Links

    • Climate Plan
    https://arctic-news.blogspot.com/p/climateplan.html

    • 10°C or 18°F warmer by 2021?
    https://arctic-news.blogspot.com/2017/04/10c-or-18f-warmer-by-2021.html

    • Abrupt Warming - How Much And How Fast?
    https://arctic-news.blogspot.com/2017/05/abrupt-warming-how-much-and-how-fast.html

    • Accelerating growth in CO₂ levels in the atmosphere
    https://arctic-news.blogspot.com/2017/02/accelerating-growth-in-co2-levels-in-the-atmosphere.html

    • Feedbacks
    https://arctic-news.blogspot.com/p/feedbacks.html

    • Extinction
    https://arctic-news.blogspot.com/p/extinction.html

    • Methane Erupting From Arctic Ocean Seafloor
    https://arctic-news.blogspot.com/2017/03/methane-erupting-from-arctic-ocean-seafloor.html

    • Warning of mass extinction of species, including humans, within one decade
    https://arctic-news.blogspot.com/2017/02/warning-of-mass-extinction-of-species-including-humans-within-one-decade.html



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