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OKIsItJustMe

(19,938 posts)
Mon Mar 9, 2015, 07:05 PM Mar 2015

The climate is starting to change faster

Please note, US Federal research lab. - Copyright concerns are nil.

http://www.pnnl.gov/news/release.aspx?id=4186

[font face=Serif][font size=5]The climate is starting to change faster[/font]

[font size=4]The speed with which temperatures change will continue to increase over the next several decades, intensifying the impacts of climate change[/font]

March 09, 2015

[font size=3]COLLEGE PARK, Md. – An analysis of changes to the climate that occur over several decades suggests that these changes are happening faster than historical levels and are starting to speed up. The Earth is now entering a period of changing climate that will likely be faster than what's occurred naturally over the last thousand years, according to a new paper in Nature Climate Change, committing people to live through and adapt to a warming world.


[font size=1]The rate of temperature change is rising and will continue to do so, as seen here with the thick gray line. This model depicts rates measured in 40-year windows of time, a time frame that reflects lifespans of people.[/font]


In this study, interdisciplinary scientist Steve Smith and colleagues at the Department of Energy's Pacific Northwest National Laboratory examined historical and projected changes over decades rather than centuries to determine the temperature trends that will be felt by humans alive today.

"We focused on changes over 40-year periods, which is similar to the lifetime of houses and human-built infrastructure such as buildings and roads," said lead author Smith. "In the near term, we're going to have to adapt to these changes."

See CMIP run

Overall, the Earth is getting warmer due to increasing greenhouse gases in the atmosphere that trap heat. But the rise is not smooth — temperatures bob up and down. Although natural changes in temperature have long been studied, less well-understood is how quickly temperatures changed in the past and will change in the future over time scales relevant to society, such as over a person's lifetime. A better grasp of how fast the climate might change could help decision-makers better prepare for its impacts.

To examine rates of change, Smith and colleagues at the Joint Global Change Research Institute, a collaboration between PNNL and the University of Maryland in College Park, turned to the Coupled Model Intercomparison Project. The CMIP combines simulations from over two-dozen climate models from around the world to compare model results.

All the CMIP models used the same data for past and future greenhouse gas concentrations, pollutant emissions, and changes to how land is used, which can emit or take in greenhouse gases. The more models in agreement, the more confidence in the results.

The team calculated how fast temperatures changed between 1850 and 1930, a period when people started keeping records but when the amount of fossil fuel gases collecting in the atmosphere was low. They compared these rates to temperatures reconstructed from natural sources of climate information, such as from tree rings, corals and ice cores, for the past 2,000 years.

Taken together, the shorter time period simulations were similar to the reconstructions over a longer time period, suggesting the models reflected reality well.

While there was little average global temperature increase in this early time period, Earth's temperature fluctuated due to natural variability. Rates of change over 40-year periods in North America and Europe rose and fell as much as 0.2 degrees Celsius per decade. The computer models and the reconstructions largely agreed on these rates of natural variability, indicating the models provide a good representation of trends over a 40-year scale.

Now versus then

Then the team performed a similar analysis using CMIP but calculated 40-year rates of change between 1971 to 2020. They found the average rate of change over North America, for example, to be about 0.3 degrees Celsius per decade, higher than can be accounted for by natural variability. The CMIP models show that, at the present time, most world regions are almost completely outside the natural range for rates of change.

The team also examined how the rates of change would be affected in possible scenarios of future emissions. Climate change picked up speed in the next 40 years in all cases, even in scenarios with lower rates of future greenhouse gas emissions. A scenario where greenhouse gas emissions remained high resulted in high rates of change throughout the rest of this century.

Still, the researchers can't say exactly what impact faster rising temperatures will have on the Earth and its inhabitants.

"In these climate model simulations, the world is just now starting to enter into a new place, where rates of temperature change are consistently larger than historical values over 40-year time spans," said Smith. "We need to better understand what the effects of this will be and how to prepare for them."

This work was supported by the Department of Energy Office of Science.[hr]Reference: Steven J. Smith, James Edmonds, Corinne A Hartin, Anupriya Mundra, and Katherine Calvin. Near-term acceleration in the rate of temperature change, Nature Climate Change, March 9, 2015, DOI: 10.1038/nclimate2552.[hr]The Joint Global Change Research Institute is a unique partnership formed in 2001 between the Department of Energy's Pacific Northwest National Laboratory and the University of Maryland. The PNNL staff associated with the institute is world renowned for expertise in energy conservation and understanding of the interactions between climate, energy production and use, economic activity and the environment.[/font][/font]
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The climate is starting to change faster (Original Post) OKIsItJustMe Mar 2015 OP
IMO they fudged by using RCP 4.5 instead of the 8.5 we're actually on. GliderGuider Mar 2015 #1
They actually looked at RCP 4.5 & RCP 8.5 OKIsItJustMe Mar 2015 #3
Can you post a link to the paper? GliderGuider Mar 2015 #4
I’m afraid that’s the link… OKIsItJustMe Mar 2015 #5
OK, I found the direct link to the figure GliderGuider Mar 2015 #6
That's what happens with feedback: Maedhros Mar 2015 #2
Time to post this again: hunter Mar 2015 #7
 

GliderGuider

(21,088 posts)
1. IMO they fudged by using RCP 4.5 instead of the 8.5 we're actually on.
Mon Mar 9, 2015, 07:50 PM
Mar 2015

The Arctic warming is what's going to get us, though.

see also: http://www.democraticunderground.com/112782156

OKIsItJustMe

(19,938 posts)
3. They actually looked at RCP 4.5 & RCP 8.5
Tue Mar 10, 2015, 12:32 AM
Mar 2015

From the OP:



The team also examined how the rates of change would be affected in possible scenarios of future emissions. Climate change picked up speed in the next 40 years in all cases, even in scenarios with lower rates of future greenhouse gas emissions. A scenario where greenhouse gas emissions remained high resulted in high rates of change throughout the rest of this century.



From the paper:


Figure 4 shows the 40-year global rate of change for two future scenarios used to drive the CMIP5 climate models, RCP4.5 and RCP8.5. The RCP4.5 scenario represents a world where global actions are taken to limit greenhouse gas concentrations, whereas the RCP8.5 examines a contrasting case where greenhouse gas emissions remain at high levels throughout the century. Also shown, for reference, is the historical rate of change derived from the HADCRU4 record. By 2030, the 40-year rate of change spans 0.15 to 0.33 °C/decade. The range in future rates of change from the simple model are comparable to the CMIP5 range (Supplementary Fig. 17). A number of the CMIP5 models, however, do not reproduce the historical drop in the rate of change seen in both the simple model and the HADCRU record.

 

GliderGuider

(21,088 posts)
4. Can you post a link to the paper?
Tue Mar 10, 2015, 07:17 AM
Mar 2015

All I can get to is the abstract, which doesn't contain the text you quote. I did finally find a single reference to 8.5 in Fig 4 in the abstract at http://www.nature.com/nclimate/journal/vaop/ncurrent/full/nclimate2552.html

The figure appears to show a rate of change approaching 0.45C/decade, reflective of the RCP trajectory itself.

Until I see the actual paper, I'll say that at least the lead-in articles are downplaying 8.5.

OKIsItJustMe

(19,938 posts)
5. I’m afraid that’s the link…
Tue Mar 10, 2015, 08:46 AM
Mar 2015

And, I’m afraid that’s about it for RCP 8.5, aside from this:



Although the rate of change slows under a 4.5 W m[font size=1]?2[/font] policy, global temperatures still increase throughout the century. Only a much stronger climate policy, such as a 2.6 W m[font size=1]?2[/font] peak and decline scenario (Supplementary Fig. 16), can begin to reduce global-mean temperatures by the end of the century. Even under such strong climate mitigation, rates of climate change are above historical values until mid-century. In contrast, a reference scenario with higher greenhouse gas emissions, such as the RCP8.5, leads to much higher rates of change throughout the century (Fig. 4).

 

Maedhros

(10,007 posts)
2. That's what happens with feedback:
Mon Mar 9, 2015, 07:59 PM
Mar 2015

Greenhouse gas content increases, atmosphere warms up, permafrost melts, trapped methane is released, greenhouse gas content increases....

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