Dear Alan


This is what Wunderlich and Mitchell say in the conclusions



A more robust indicator for the strengthening of the dynamically driven
influence of the volcanic eruption

is the characteristic winter warming over northern Europe (Shindell et al.,
2004; Fischer et al., 2007). By averaging over

the whole first year after the eruption we still could find a significant
positive signal in northern Europe due to the winter

warming. This means that the general decrease of the surface temperature due
to the injected aerosols is overwhelmed by

this dynamical effect at midlatitudes. This contributes to the fact that the
strength of the radiative-driven cooling is still

not completely determined. The less dynamically influenced tropical response
to volcanic eruptions shows a general cooling

mainly over ocean areas (Stenchikov et al., 2006). Nevertheless, considering
the first 2 years after the eruption of

Mt Agung and El Chichón no clear tropical cooling in both reanalysis and
observation data is found. The model response

to the eruptions shows a large uncertainty spread, suggesting a high
dependence of the climate response on the atmospheric

state during and after the eruption.



Also these are the conclusion of Fujiwara eta al.



 The latitude-pressure distribution of El Chichón and Mount Pinatubo
temperature response was quite similar at least among the recent four
reanalysis data sets (JRA-

55, MERRA, ERA-Interim, and NCEP-CFSR) and between the 1979–2009 and
1958–2001 analyses. For the Mount Pinatubo eruption, tropical lower
stratospheric warming and

tropical upper tropospheric cooling were observed. For the El Chichón
eruption, tropical lower stratospheric warming

was observed, but tropospheric cooling was much weaker than the Mount
Pinatubo case. For the Mount Agung eruption,

JRA-55, ERA-40, and NCEP-1 showed Southern Hemisphere lower stratospheric
warming centred at 40–30  S and

100–50 hPa, with an equatorial extension to 50 hPa. Thus, the Agung signal
was asymmetric about the equator and very different

from the El Chichón and Pinatubo signals.We suggest that this may be due to
differences in the transport of volcanic

aerosols (Sato et al., 1993).



An this is what the abstract of Driscoll et al says



The study confirms previous similar evaluations and raises concern for the
ability of current climate models to simulate the response of a major mode
of global circulation variability to external forcings. This is also of
concern for the accuracy of geoengineering modeling studies that assess the
atmospheric response to stratosphere-injected particles.



As for Hansen et al.



Those second digits approximations are very suspicious as are the data from
Newell and Weare that refers to just one station(I may be wrong)  Not to
mention the approximation on the optical depth.



I know that is very hard to give up  a golden egg hen but sometime we have
to face the Matrix recommendation: welcome to the real world



Guido









Da:  Alan Robock <[email protected]>
Risposta:  <[email protected]>
Data:  Fri, 1 Dec 2017 09:38:11 -0500
A:  Guido Visconti <[email protected]>, <[email protected]>
Cc:  <[email protected]>, geoengineering
<[email protected]>
Oggetto:  Re: [geo] VEI vs cooling

    
 Dear Guido,
 
 Yes, volcanic eruptions that inject SO2 into the stratosphere cool Earth
and cause Northern Hemisphere winter warming in the first winter after
tropical eruptions.  Hansen et al. (1979) is correct, and Jim has been a
pioneer in studying the effects of volcanic eruptions on climate.
 
 Canty et al. (2013) made a fundamental error in counting the cooling by
volcanic eruptions twice, as I pointed out here:
https://www.atmos-chem-phys-discuss.net/12/C10686/2012/acpd-12-C10686-2012.p
df
 
 Driscoll et al. (2012) diluted the volcanic signal by including many small
eruptions and looking at two winters following each eruption.  By looking at
only large eruptions and one winter, we show a clear signal in:
 
 
> Zambri, Brian, and Alan Robock, 2016: Winter warming and summer monsoon
> reduction after volcanic eruptions in Coupled Model Intercomparison Project 5
> (CMIP5) simulations. Geophys. Res. Lett., 43, 10,920-10,928,
> doi:10.1002/2016GL070460.
>  
>  and
>  
>  Zambri, Brian, Allegra N. LeGrande, Alan Robock, and Joanna Slawinska, 2017:
> Northern Hemisphere winter warming and summer monsoon reduction after volcanic
> eruptions over the last millennium. J. Geophys. Res. Atmos., 122, 7971-7989,
> doi:10.1002/2017JD026728.
>  
 Fujiwara et al. (2015) find stratospheric warming after the three most
recent eruptions, consistent with previous work.  Why mention it?
 
 Wunderlich and Mitchell (2017) actually do find a positive NAO and tropical
cooling after large eruptions, so I don't understand why you even mention
that paper either.
 
 So you have brought up two papers that agree with Hansen et al. (1979) and
conventional wisdom, and two with fundamental problems.
 
Alan

Alan Robock, Distinguished Professor
  Editor, Reviews of Geophysics
Department of Environmental Sciences             Phone: +1-848-932-5751
Rutgers University                                 Fax: +1-732-932-8644
14 College Farm Road                  E-mail: [email protected]
New Brunswick, NJ 08901-8551  USA     http://envsci.rutgers.edu/~robockhttp://twitter.com/AlanRobock         2017 Nobel Peace Prize to ICAN!
Watch my 18 min TEDx talk at http://www.youtube.com/watch?v=qsrEk1oZ-54
 
On 12/1/2017 4:08 AM, Guido Visconti wrote:
 
 
>   Hello all 
> 
>  
>  
> but the eruptions really cool? Read the papers
>  
> 
>  
>  
>      
> Wunderlich, F., & Mitchell, D. M. (2017). Revisiting the observed surface
> climate response to large volcanic eruptions. Atmospheric Chemistry and
> Physics, 17(1), 485-499. DOI: 10.5194/acp-17-485-2017ù
>  
> 
>  
>  
> Fujiwara, M., Hibino, T., Mehta, S. K., Gray, L., Mitchell, D., & Anstey, J.
> (2015) Global temperature response to the major volcanic eruptions in multiple
> reanalysis data sets. Atmospheric Chemistry and Physics, 15, 13507–13518.
>  
> 
>  
>  
> Canty, T., Mascioli, N. R., Smarte, M. D., & Salawitch, R. J. (2013) An
> empirical model of global climate-Part 1: A critical evaluation of volcanic
> cooling. Atmospheric Chemistry and Physics,13, 3997.
>  
> 
>  
>  
>     Driscoll, S., Bozzo, A., Gray, L.J., Robock, A. and G. Stenchikov (2012)
> Coupled Model Intercomparison Project 5 (CMIP5) simulations, of climate
> following volcanic eruptions, J. Geophys. Res., 117, D17105,
> doi:10.1029/2012JD01760
>  
> 
>  
>  
> 
>  
>  
> In view of these the paper by Jin Hansen et al. (Hansen, J. E.,Wang,W. C., and
> A.A. Lacis, (1978) Mount Agung eruption provides test of a global climatic
> perturbation. Science, 199, 1065-1068, DOI 10.1126/science.199.4333. 1065)
>  
> 
>  
>  
> should be at least  withdrawn
>  
> 
>  
>  
> Guido Visconti
>       
> 
>  
>  
> 
>  
>  
> 
>  
>  
> 
>  
>   
>  
>>  
>> Il giorno 01 dic 2017, alle ore 06:41, Paul Beckwith <[email protected]>
>> ha scritto:
>>  
>>  
>>  
>> Hello Alan,
>>  
>>  For Mount St. Helens in 1980, wasn’t the main reason for the lack of climate
>> impact the fact that the explosive energy was mostly directed horizontally as
>> opposed to upwards, so that minimal sulfur amounts reached the stratosphere.
>> I thought that there was significant sulfur released from the eruption, but
>> that it mostly stayed in the troposphere.
>>  
>>  Sincerely,
>>  Paul
>>  
>>  -----Original Message-----
>>  From: [email protected]
>> [mailto:[email protected]] On Behalf Of Alan Robock
>>  Sent: Thursday, November 30, 2017 11:27 PM
>>  To: [email protected]; geoengineering
>>  Subject: Re: [geo] VEI vs cooling
>>  
>>  There is a positive correlation, but VEI is not a good index.  It is an
>> estimate of the explosive energy, not the amount of sulfur injected into the
>> stratosphere, which is what determines the climate impact.  Mount St. Helens
>> in 1980 was VEI 5, very explosive, but had little SO2 and no climate impact.
>> See the discussion on pp. 11551-11553 of my paper,
>> http://climate.envsci.rutgers.edu/pdf/RobockFree95JD00825.pdf
>>  
>>  Alan
>>  
>>  Alan Robock, Distinguished Professor
>>    Editor, Reviews of Geophysics
>>  Department of Environmental Sciences             Phone: +1-848-932-5751
>>  Rutgers University                                 Fax: +1-732-932-8644
>>  14 College Farm Road                  E-mail: [email protected]
>>  New Brunswick, NJ 08901-8551  USA     http://envsci.rutgers.edu/~robock
>> <http://envsci.rutgers.edu/%7Erobock>
>>  ☮ http://twitter.com/AlanRobock         2017 Nobel Peace Prize to ICAN!
>>  Watch my 18 min TEDx talk at http://www.youtube.com/watch?v=qsrEk1oZ-54
>>  
>>  On 11/30/2017 10:21 PM, David Appell wrote:
>>  
>>> SRM people:
>>>  
>>>  Does a volcanic eruption's VEI correlate to the amount of cooling it
>>>  will/can cause?
>>>  
>>>  David
>>>  
>>>  
>>  
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>>  
>>  
>  
>  
>  
>  
 
 
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