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    Showing posts with label 1.5°C. Show all posts
    Showing posts with label 1.5°C. Show all posts

    Thursday, January 19, 2017

    2016 well above 1.5°C

    In December 2016, it was 6.58°C (11.84°F) warmer from latitude 83°N to the North Pole. In December 2016, the world as a whole was on average 0.82°C (1.47°F) warmer than in 1951-1980.


    Temperatures are rising fast, and especially so over the Arctic Ocean. In February 2016, the world was 1.34°C (2.41°F) warmer than 1951-1980, while part of the Kara Sea was 11.3°C (20.34°F) warmer than 1951-1980, as the image on the right illustrates.

    The 1951-1980 period is the default baseline used by NASA. When comparing the current temperature to years such as 1900 or 1750, the difference will be even larger, as illustrated by the image below.

    In 2016, the global temperature was well above the 1.5°C (2.7°F) guardrail set by the Paris Agreement. This is illustrated by the different baselines used in image below (the use of different baselines was discussed in an earlier post), given that the Paris Agreement uses preindustrial levels as baseline.


    [ click on images to enlarge ]
    To some extent, the rise above 1.5°C was due to El Niño, as the trendline indicates, but the trend also indicates that temperatures will cross the 1.5°C mark in 2017 even if 2017 will be El Niño/La Niña-neutral.

    Worryingly, another El Niño is actually forecast for 2017, as discussed in an earlier post.

    Even more worrying is that rise of this trendline could well be too conservative.

    Ocean temperatures are rising rapidly, as illustrated by the image on the right, and the rapid warming of the oceans is causing a dramatic fall in sea ice extent, as illustrated by the image below and as discussed in an earlier post.

    The lack of sea ice spells trouble. Not only is snow and ice decline causing more sunlight to be absorbed (rather than getting reflected back into space as before), there are further feedbacks associated with this. As the temperature difference between the Arctic and the Equator decreases, changes are taking place to wind patterns that cause further acceleration of warming in the Arctic, as discussed in an earlier post. This in turn threatens to trigger huge amounts of methane to erupt abruptly from the seafloor.

    Methane levels over the Arctic Ocean are much higher than over the rest of the world, as illustrated by the image below, showing the situation in the afternoon of January 17, 2017, with peaks reaching levels as high as 2406 ppb. Particularly worrying are the solid magenta-colored areas over the East Siberian Arctic Shelf, indicating methane levels above 1950 ppb.


    When also taking into account further elements that could cause warming, a potential warming of 10°C (18°F) could eventuate by the year 2026, i.e. within about nine years from now, as discussed at the extinction page and as illustrated by the image below, from the Temperature page.


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


    Links

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

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

    • Temperature
    http://arctic-news.blogspot.com/p/temperature.html

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

    • Global sea ice extent falling off chart
    http://arctic-news.blogspot.com/2017/01/global-sea-ice-extent-falling-off-chart.html

    • How much warming have humans caused?
    http://arctic-news.blogspot.com/2016/05/how-much-warming-have-humans-caused.html



    Thursday, December 17, 2015

    Paris Agreement

    At the Paris Agreement, nations committed to strengthen the global response to the threat of climate change by holding the increase in the global average temperature to well below 2°C above pre-industrial levels and to pursue efforts to limit the temperature increase to 1.5°C above pre-industrial levels.


    How much have temperatures risen already? As illustrated by above image, NASA data show that during the three-month period from September through November 2015, it was ~1°C warmer than it was in 1951-1980 (i.e the baseline).

    A polynomial trend based on the data from 1880 to 2015 for these three months indicates that a temperature rise of 1.5°C compared to the baseline will be reached in the year 2024.

    Let's go over the calculations. The trendline shows it was ~0.3°C colder in 1900 compared to the baseline. Together with the current ~1°C rise, that implies that since 1900 there's been a rise of 1.3°C compared to the baseline. This makes that another rise of 0.2°C by 2024, as pointed at by the trendline, would result in a joint rise in 2024 of 1.5°C compared to the baseline.


    The situation is even more worse than this. The Paris Agreement seeks to avoid a temperature increase of 1.5°C above pre-industrial levels. When we include temperature rises from pre-industrial levels to the year 1900, it becomes evident that we have already surpassed a rise of 1.5°C since pre-industrial levels. This is illustrated by above image, earlier added at How much time is there left to act? (see notes there) and by the graph below, from a recent post by Michael Mann, who adds that ~0.3°C greenhouse warming had already taken place by the year 1900. 
    ~0.3C greenhouse warming had already taken place by 1900, and ~0.2C warming by 1870
    Let's add things up again. A rise of ~0.3°C before 1900, a further rise of 0.3°C from 1900 to the baseline (1951-1980) and a further rise of ~1°C from the baseline to date, together that adds up to a rise of ~1.6°C from pre-industrial levels.

    In other words, we have already surpassed a rise of 1.5°C from pre-industrial levels by 0.1°C.

    The trendline indicates that a further rise of 0.5°C will take place by the year 2030, i.e. that without comprehensive and effective action, it will be 2°C warmer than pre-industrial levels before the year 2030.

    Full wrath of emissions yet to come

    The full wrath of global warming is yet to come and the situation is even more threatening than pictured above, for the following reasons:
    1. Half of global warming has until now been masked by aerosols, particularly sulfates that are emitted when some of the dirtiest fossil fuels are burnt, such as coal and bunker oil. As we make the necessary shift to clean energy, the masking effect that comes with those emissions will disappear. 
    2. As Ricke and Caldeira point out, the carbon dioxide that is released now will only reach its peak impact a decade from now. In other words, we are yet to experience the full wrath of the carbon dioxide emitted over the past decade. 
    3. The biggest threat comes from temperature peaks. People in some parts of the world will be hit  harder, especially during summer peaks, as discussed in the next section of this post. As temperatures rise, the intensity of such peaks will increase.
      The image on the right illustrates this with a forecast for December 25, 2015, showing extreme weather for North America, with temperatures as low as 30.6°F or -0.8°C in California and as high as 71.5°F or 22°C in North Carolina. 
    4. Feedbacks such as rapid albedo changes in the Arctic and large amounts of methane abruptly released from the Arctic Ocean seafloor could dramatically accelerate the temperature rise. Furthermore, water vapor will increase by 7% for every 1°C warming. Water vapor is one of the strongest greenhouse gases, so increasing water vapor will further contribute to a non-linear temperature rise. The resulting temperature rises threaten to be non-linear, as discussed in the final section of this post.  
    Situation even worse for some

    Such temperature rises will hit some people more than others. For people living on the Northern Hemisphere, the outlook is worse than for people on the Southern Hemisphere.

    NOAA data show that the November global land and ocean temperature anomaly was 0.97°C, while the 3-month global land and ocean temperature anomaly was 0.96°C. The 12-month anomaly on November 2015 on land on the Northern Hemisphere (where most people live) was 1.39°C, as shown on the image below, while the trendline shows that for people living on the Northern Hemisphere, a 1.5°C rise compared to 1910-2000 could be reached as early as in 2017.


    Similarly, the outlook is worse for people living in regions that are already now experiencing high temperatures during the summer peaks. As said, as temperatures rise, the intensity of such peaks will increase.

    Feedbacks in the Arctic

    The image below, from an earlier post, depicts the impact of feedbacks that are accelerating warming in the Arctic, based on NASA data up to November 2013, and their threat to cause runaway global warming. As the image shows, temperatures in the Arctic are rising faster than elsewhere in the world, but global warming threatens to catch up as feedbacks start to kick in more. The situation obviously has deteriorated further since this image was created in November 2013.
    [ click on image at original post to enlarge ]
    Above image, from an earlier post, depicts the impact of feedbacks that are accelerating warming in the Arctic, based on NASA data up to November 2013. The image shows that temperatures in the Arctic are rising faster than elsewhere in the world. Global warming threatens to catch up as feedbacks start to kick in more, triggering runaway global warming. The situation obviously has deteriorated further since this image was created in November 2013.

    The image below shows sea surface temperature anomalies on the Northern Hemisphere in November.


    The image below gives an indication of the high temperatures of the water beneath the sea surface. Anomalies as high as 10.3°C or 18.5°F were recorded off the east coast of North America (green circle on the left panel of the image below) on December 11, 2015, while on December 20, 2015, temperatures as high as 10.7°C or 51.3°F were recorded near Svalbard (green circle on the right panel of the image below), an anomaly of 9.3°C or 16.7°F.


    This warm water is carried by the Gulf Stream into the Arctic Ocean, threatening to unleash huge amounts of methane from its seafloor. The image below illustrates the danger, showing huge amounts of methane over the Arctic Ocean on December 10, 2015.


    Methane is released over the Arctic Ocean in large amounts, and this methane is moving toward the equator as it reaches high altitudes. The image below illustrates how methane is accumulating at higher altitudes.


    Above image shows that methane is especially prominent at higher altitudes recently, having pushed up methane levels by an estimate average of 9 ppb or some 0.5%. Annual emissions from hydrates were estimated to amount to 99 Tg annually in a 2014 post (image below).





    An additional 0.5% of methane represents an amount of some 25 Tg of methane. This comes on top of the 99 Tg of methane estimated in 2014 to be released from hydrates annually. 

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


    Links

    - How Close Are We to 'Dangerous' Planetary Warming? By Michael Mann, December 24, 2015http://www.huffingtonpost.com/michael-e-mann/how-close-are-we-to-dangerous-planetary-warming_b_8841534.html

    - Maximum warming occurs about one decade after a carbon dioxide emission, by Katharine L Ricke and Ken Caldeira (2014)
    http://iopscience.iop.org/1748-9326/9/12/124002/article

    - How much time is there left to act?
    http://arctic-news.blogspot.com/p/how-much-time-is-there-left-to-act.html



    During the three-month period from September through November 2015, it was 1°C warmer than it was in 1951-1980,...
    Posted by Sam Carana on Wednesday, December 16, 2015

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