Showing posts sorted by relevance for query non-hockey-stick. Sort by date Show all posts
Showing posts sorted by relevance for query non-hockey-stick. Sort by date Show all posts

Tuesday, January 14, 2014

The rise and fall of the Hockey Stick and Mann-made global warming alarm

A first-class summary of the rise and fall of Michael Mann's bogus Hockey Stick graph, and the Mann-made global warming alarm along with it, reblogged from A Skeptical Mind:

The rise and fall of the Hockey Stick

The rise of the so called Hockey Stick graph is pivotal to the story of the rise of the alarm about man made global warming.
The fall of the Hockey Stick graph is pivotal to the rise of scepticism about man made global warming.
Here is the story of the rise and fall of the Hockey Stick.
The Background
A central and critical plank of the alarmist global warming case is that the current phase of warming that started in the late 19th century is unprecedented.
Why is this claim so important?
Because if a similar or greater warming phase has occurred in the very recent past, before human CO2 emissions had caused CO2 levels to rise, then clearly any such recent warming must have been natural and was not caused by CO2. And if any recent similar warming phase was natural then clearly the current phase of warming could also be a natural phenomena.
If the current phase of warming could be natural then those arguing that it was primarily caused  by human CO2 emissions would have to prove their hypothesis. And this is something they cannot do.
The only “proof” that CO2 is currently forcing up global temperatures is the claim that the current warming is somehow unusual, unique and unnatural. That’s the total argument for CO2 forcing. Something unprecedented is happening to the climate and CO2 is the only candidate for what is causing this unique phenomena.
Its certainly true that the well understood physics of CO2 in the atmosphere demonstrates (see “CO2 the basic facts“) that CO2 is indeed a greenhouse gas and will have a warming impact. No one disputes that. The issue is what is the scale of impact that this CO2 warming is having on the overall climate system. Is the effect of the CO2 so big that it can drive the temperature of the whole planet up in a way that is big enough to actually alter the climate?
This is a much harder question to answer because no one has a model of the total climate system that actually works and which verifiably produces even remotely accurate forecasts about climate trends.
So without a working model of the total climate system the only way to “prove” that CO2 is driving climate change is to prove that something truly unique is happening to the climate, that there is unprecedented warming occurring, and and then propose man made CO2 change as the only candidate as the cause of this ‘unprecedented’ warming.
The “problem” of the Medieval Warm Period
Until the 1990s there were many, many references in scientific and historical literature to a period labelled the Medieval Warm Period (MWP) lasting from about AD 800–1300. It was followed by a much cooler period termed the Little Ice Age. Based on both temperature reconstructions using proxy measures and voluminous historical references it was accepted that the Medieval Warm Period had been a period when global temperatures were a bit hotter than today’s temperatures. Until about the mid-1990s the Medieval Warm Period was for climate researchers an undisputed fact. The existence of the Medieval Warm Period was accepted without question and noted in the first progress report of the IPCC from 1990. On page 202 of that 1990 IPCC report there was the graphic 7c (see below), in which the Medieval Warm Period was portrayed as clearly warmer than the present.
By the time of the second IPCC report in 1995 where for the first time CO2 forcing began to be proposed more prominently as a cause of serious alarm, the Medieval Warm Period was sidelined in the text and narrative. An important way that this was done in the report was to alter the diagram of recent climate history by simply shortening the time period it covered so that it now started after the Medieval Warm Period. All that was shown was the long slow recovery from the Little Ice Age to today’s temperatures, i.e. a long period of increasing temperatures. But clearly this was only a short term solution. The way that the Medieval Warm Period dominated the recent climate graph challenged the basic argument for CO2 forcing which was that the late 20th century climate was some how unique. As Jay Overpeck, an IPCC participant said in his email to Professor Deming, “We have to get rid of the Medieval Warm Period”.
In order to prove CO2 forcing the Medieval Warm Period had to be eliminated.
The Rise of the Hockey Stick
Between the 1995 second IPCC report and the 2001 third IPCC report there was a complete revision in the way that recent climate history was portrayed. The supporters of the theory that CO2 changes were driving temperatures up had succeeded in their goal of eliminating the Medieval Warm Period. This rewriting of climate history and the elimination of the Medieval Warm Period was achieved through the famous Hockey Stick graph.
To understand the scale of the revision that had taken place compare the two graphs below. The one on the left is diagram 7c from page 202 of the 1990 IPCC report in which the Medieval Warm Period was portrayed as clearly warmer than the present. On the right is the Hockey Stick graph from the 2001 IPCC report in which the Medieval Warm Period and the Little Ice Age have all but disappeared and the recent climate history is dominated by a rapid temperature rise in the last 20th century.
The first blow against the accepted understanding of climate history came in 1995 when the English climatologist Keith Briffa (based at the Climate Research Unit at East Anglia) published in the journal Nature a study with sensational results. According to his studies of tree rings in the Siberian Polar-Ural, there had never been a Medieval Warm Period and the 20th century suddenly appeared as the warmest of the last 1000 years. The most recent part of this study is known as the Yamal study, because of the name of the region it was done in, and it has recently been discredited – see here.
Briffa’s work boldly proposed that the 20th Century had experienced the warmest climate of the millennium and this claim was now the central battlefield for the scientific argument about CO2 forcing. This of course ignored the Climatic Optimum (see Happy Holocene) between 5000 and 9000 years ago when temperatures were significantly higher than today but most people (and certainly the media and politicians) actually think that 5000 years is a long time ago so there was no need to undermine the Climatic Optimum in order to win wide public support for the CO2 forcing hypothesis. Hottest in the last 1000 years would do.
Briffa’s work had an impact and laid the ground work but the real knock out blow that finally succeeded in eliminating the Medieval Warm Period was a paper published in 1998 in Nature by Mann, Bradley and Hughes entitled, “Global-scale temperature patterns and climate forcing over the past six centuries” (you can download it here). This was the original peer reviewed hockey stick article.
Michael Mann of the Department of Geosciences, University of Massachusetts, who was the primary author of the paper, had in one scientific coup overturned the whole of climate history. Using tree rings as a basis for assessing past temperature changes back to the year 1,000 AD, supplemented by other proxies from more recent centuries, Mann completely redrew climate history, turning the Medieval Warm Period and Little Ice Age into non-events.In the new Hockey Stick diagram the Medieval Warm Period and Little Ice Age have disappeared, to be replaced by a largely benign and slightly cooling linear trend in climate until 1900 AD after which the Mann’s new graph showed the temperature shooting up in the 20th century in an apparently anomalous and accelerating fashion.
In every other science when such a drastic revision of previously accepted knowledge is promulgated, there is considerable debate and initial scepticism, the new theory facing a gauntlet of criticism and intense review. Only if a new idea survives that process does it become broadly accepted by the scientific peer group and the public at large.
This never happened with Mann’s `Hockey Stick’. The coup was total, bloodless, and swift as Mann’s paper was greeted with a chorus of uncritical approval from the increasingly politically committed supporters of the CO2 greenhouse theory. Within the space of only 12 months, the new theory had become entrenched as a new orthodoxy. The ultimate consummation of the new theory came with the release of the draft of the Third Assessment Report of the IPCC in 2000. Based solely on this new paper from a relatively unknown and young scientist the IPCC could now boldly state:
“It is likely that the rate and duration of the warming of the 20th century is larger than any other time during the last 1,000 years. The 1990s are likely to have been the warmest decade of the millennium in the Northern Hemisphere, and 1998 is likely to have been the warmest year.”
Overturning its own previous view in the 1995 report, the IPCC presented the `Hockey Stick’ as the new orthodoxy with hardly an apology or explanation for the abrupt U-turn since its 1995 report. The IPCC could show almost no supporting scientific justification because other than Mann’s Hockey Stick paper, and Briffa’s Siberian tree ring study there was little in the way of research confirming their new line.
The Hockey Stick graph, the new orthodoxy, was blown up to a wall sized display and used as a back drop for the public launch of the 2001 IPCC report.
Within months of the IPCC draft release, the long-awaited draft U.S. `National Assessment’ Overview document featured the `Hockey Stick’ as the first of many climatic graphs and charts in its report, affirming the crucial importance placed in it by the authors and by the active pro CO2 warming campaign at large. This was now not an esoteric theory about the distant past but rather the core foundation upon which the offensive on global warming was being mounted.
Soon the Hockey Stick was everywhere and with it went the new simple and catchy campaigning slogans “its hotter now than the last 1000 years!“, “1998 was the hottest year for a 1000 years!
Not long after the 2001 IPCC report the Government of Canada sent the hockey stick to schools across the country, and its famous conclusion about the 1990s being the warmest decade of the millennium was the opening line of a pamphlet sent to every household in Canada to promote the Kyoto Protocol.
Al Gore’s Oscar winning and hugely popular film “An Inconvenient Truth” was virtually built around the Hockey Stick (although Gore couldn’t resist tweaking it to make it look even more compelling by changing the way the graph data was displayed along the axis so that the temperature trend line it showed looked even steeper and starker).
In the UK the Government announced that the DVD of the “An Inconvenient Truth” would be sent to every school in the country as a teaching aid.
The Hockey Stick seemed to be carrying all before it. Dr Mann was promoted, given a central position in the IPCC and became a star of the media.
And then it all went horribly wrong.
The Fall of the Hockey Stick
In the years immediately after the 2001 IPCC report it seemed as if the sudden adoption of the Hockey Stick model of the earth’s recent climate past had created a new orthodoxy which could not be challenged. Even when some scientists quietly worried that the new theory about the past climate had been adopted way too quickly or were unhappy about the way that satellite temperature readings didn’t seem to fit the Hockey Stick model or they noticed that new individual proxy studies still seemed to keep showing that the Medieval Warm Period was hotter than today, they mostly stayed silent. They didn’t want to be branded as ‘deniers‘ after all.
Then an unlikely hero emerged in the shape of Stephen McIntyre a retired mineralogist fromToronto. McIntyre is not a scientist or an economist but he does know a lot about statistics, maths and data analysis and he is a curious guy. He didn’t start off as a climate sceptic but was just someone interested in the nuts and bolts of these new and apparently exciting ideas about climate change, and he was curious about how the Hockey Stick graph was made and wanted to see if the raw data looked like hockey sticks too. In the Spring of 2003, Stephen McIntyre requested the raw data set used in the Hockey Stick paper from Mann. After some delay Mann arranged provision of a file which he said was the one used in the original 1998 Hockey Stick paper and McIntyre began to look at how Mann had processed all the data from the numerous different proxy studies cited as his source material and how they had been combined to produce the average that was the basis of the famous Hockey Stick shape.
About this time Steve McIntyre linked up with Ross McKitrick a Canadian economist specialising in environmental economics and policy analysis. Together McIntyre and McKitrick began to dig down into the data that Mann had used in his paper and the statistical techniques used to create the single blended average used to make the Hockey Stick. They immediately began to find problems.
Some of these problems just seemed the sort of errors that are caused by sloppy data handling concerning location labels, use of obsolete editions, unexplained truncations of available series, etc. Although such errors should have been spotted in the peer review process and they would adversely affect the quality of Mann’s conclusions they had a relatively small effect on the final results.
But McIntyre and McKitrick found one major error, an error so big that it invalidated the entire conclusion of the whole paper. A whopper of an error.
As we have seen what Mann had done was blend together lots of different proxy studies of the past climate going back a 1000 years and then produced an average of all these studies and a single graph showing the trend. Clearly the validity of the techniques used to blend together and average the different data from the various different studies was absolutely critical as to the validity of the final conclusions reached and the resulting Hockey Stick graph. This sort of blending of data sets is a very common statistical exercise and there are very well established techniques for undertaking such an exercise, these techniques use values that are called ‘principal components’ (if you want to know a lot more about the technical details then download McKitrick’s paper from here). What McIntyre and McKitrick discovered was that Mann had used very unusual principal component values and the effect of the choice of value used had drastically skewed the outcome of the blending and averaging exercise. Effectively what Mann’s odd statistical techniques did was to select data that had any sort of Hockey Stick shape and hugely increase its weight in the averaging process. Using Mann’s technique it meant that any data was almost certain to produce a spurious Hockey Stick shape.
Here is an example of the sort of things Mann was doing to the raw date.
Above are two separate temperature reconstructions running from 1400AD, both use tree rings, one is from California and one is from Arizona. Both were were part of the data used by Mann and included in the Hockey Stick average. The top one shows a temperature up tick at the end in the 20th century like the final Hockey Stick, the other shows a relatively flat temperature for the 20th century. Mann’s statistical trick gives the top series, the one with the desired Hockey Stick shape a weighting in the data that is 390 times that of the bottom series just because it has a Hockey Stick bend at the end. This means that whatever data is fed into Mann’s statistical manipulations is almost bound to produce a Hockey Stick shape whether it is actually in the data or not.
McIntyre and McKitrick then took their critical analysis a step further. When you apply a statistical manipulation to a set of data it is important to make sure that what you doing is not actually distorting the data so much that you are really just creating something new, spurious and false in the numbers. One way to do this is to take the statistical manipulation in question and apply it to several examples of random numbers (sometimes this is called a Red Noise test). To simplify, you use random numbers as input data, then apply the statistical technique you are testing to the random numbers then if the techniques are sound you should get a set of random numbers coming out the other end of the calculations. There should be no false shape imparted to the random noise by the statistical techniques themselves, if what you get out is random numbers then this would prove that the techniques you were testing were not adding anything artificial to the numbers. This is what McIntyre and McKitrick did using the techniques that Mann had used in the Hockey Stick paper. And the results were staggering.
What they found was that 99% of the time you could process random data using Mann’s techniques and it would generate a Hockey Stick shape. This meant that Mann’s claim that the Hockey Stick graph represented an accurate reconstruction of the past climate was in tatters.
Here are some examples. Below are eight graphs. Seven were made by processing random numbers using Mann’s techniques. The eighth is the actual Hockey Stick chart from Mann’s paper. See if you can spot which is which.
McIntyre and McKitrick submitted a letter to Nature about the serious flaws they had uncovered in the methodology used in the Hockey Stick paper. After a long (8-month) reviewing process Nature notified them that they would not publish it. They concluded it could not be explained in the 500-word limit they were prepared to give McIntyre and McKitrick, and one of the referees said he found the material was quite technical and unlikely to be of interest to the general readers!
Instead of publishing anything from McIntyre and McKitrick explaining the serious errors that they had found Nature allowed Mann to make a coy correction in an on-line Supplement (but not in the printed text itself) where he revealed the nonstandard method he had used, and added the unsupported claim that it did not affect the results.
Eventually in 2003, McIntyre and McKitrick published an article entitled “Corrections to the Mann et al. (1998) Proxy Data Base and Northern Hemisphere Average Temperature Series” in the journal Energy and Environment raising concerns about what they had found in Manns Hockey Stick paper. By this point following further work analysing Mann’s paper McIntyre and McKitrick showed that the data mining procedure did not just pull out a random group of proxies, instead it pulled out a single eccentric group of bristlecone pine chronologies published by Graybill and Idso in 1993 called the Sheep Mountain series.The original authors of the bristlecone study have always stressed that these trees are not proper climate proxies, their study was not trying to do a climate reconstruction and that they were surprised that Mann included it in the Hockey Stick data set. McIntyre and McKitrick had discovered that just removing this odd series from Mann’s proxy set and then applying Mann’s own eccentric statistical averaging caused the Hockey Stick shape to disappear. This revolutionary new model of the recent climate past was that fragile and it revealed the Hockey Stick graph as just a carefully worked artificial creation.
In the graph below the dotted line is the original Hockey Stick chart as published by Mann and as adopted and promoted by the IPCC. The solid line shows the past temperature reconstruction if the data used by Mann is averaged using the correct statistical analysis techniques rather than Mann’s unconventional ones. As can be seen the familiar Medieval Warm Period re-emerges and the 1990s cease to be the hottest of the millennium, that title is now claimed by the early 1400s.
In doing this research McIntyre and McKitrick had legitimately accessed Mann’s public college web site server in order to get a lot of the source material, and whilst doing this they found the data that provoked them to look at the bristlecone series in a folder entitled “Censored”.  It seems that Mann had done this very experiment himself and discovered that the climate graph loses its hockey stick shape when the bristlecone series are removed. In so doing he discovered that the hockey stick was not an accurate chart of the recent global climate pattern, it is an artificial creation that hinges on a flawed group of US proxies that are not even valid climate indicators. But Mann did not disclose this fatal weakness of his results, and it only came to light because of McIntyre and McKitrick’’s laborious efforts.
You can download McKitrick’ss own account of the whole Hockey Stick saga here and this web page compiled by McIntyre and McKitrick has a list of links and documents relating to the Hockey Stick controversy.
Following the publication of McIntyre and McKitrick’s critique of Mann’s work there was an immediate counter attack by some climatologists who had worked closely with Mann in the past. The attack on McIntyre and McKitrick’s critique of Mann’s work really boiled down to saying that of course the Hockey Stick disappeared if you stopped using Mann’s techniques and that you should carry on using Mann’s techniques and then you could get the Hockey Stick back!
Eventually a US senate committee of inquiry was set up under the chairmanship of Edward Wegman a highly respected Professor of mathematics and statistics and in 2006 his report was published. You can download it here.
The report examined the background to Mann’s Hockey Stick paper, the paper itself, the critique of it by McIntyre and McKitrick and took evidence from all the key players. Interestingly Wegman’s committee commissioned some original research into how the small world of climatology actually worked. The study of the social networking of the paleoclimatology world showed how closed it was and how often a small group of scientists both co-wrote and peer reviewed each others papers. For work that depended so much on making statistical claims about trends it was noted that it was surprising that no statisticians ever seemed to be involved in either the research work itself or its peer review.
The key finding in the WEgman Report was that “Our committee believes that the assessments that the decade of the 1990s was the hottest decade in a millennium and that 1998 was the hottest year in a millennium cannot be supported by the MBH98/99 [the technical name of Mann's original Hockey Stick paper]”
The other conclusions of the Wegman Report are also very interesting; It listed the following conclusions:
Conclusion 1. The politicization of academic scholarly work leads to confusing public debates. Scholarly papers published in peer reviewed journals are considered the archival record of research. There is usually no requirement to archive supplemental material such as code and data. Consequently, the supplementary material for academic work is often poorly documented and archived and is not sufficiently robust to withstand intense public debate. In the present example there was too much reliance on peer review, which seemed not to be sufficiently independent.
Conclusion 2. Sharing of research materials, data, and results is haphazard and often grudgingly done. We were especially struck by Dr. Mann’s insistence that the code he developed was his intellectual property and that he could legally hold it personally without disclosing it to peers. When code and data are not shared and methodology is not fully disclosed, peers do not have the ability to replicate the work and thus independent verification is impossible.
Conclusion 3. As statisticians, we were struck by the isolation of communities such as the paleoclimate community that rely heavily on statistical methods, yet do not seem to be interacting with the mainstream statistical community. The public policy implications of this debate are financially staggering and yet apparently no independent statistical expertise was sought or used.
Conclusion 4. While the paleoclimate reconstruction has gathered much publicity because it reinforces a policy agenda, it does not provide insight and understanding of the physical mechanisms of climate change except to the extent that tree ring, ice cores and such give physical evidence such as the prevalence of green-house gases. What is needed is deeper understanding of the physical mechanisms of climate change.
Generally the response of the IPCC, the supporters of the CO2 hypothesis and the broader coalition of climate campaigners to all this was a cross between a sneer and a yawn, and the Hockey Stick continued to be used widely as a campaigning and propaganda tool.
It is still being used today.
In 2008 the BBC paid for a large truck to tour central London displaying a giant version of Mann’s Hockey Stick as part of the promotion of its very pro CO2 warming mini series called “Climate Wars”.
Related: 

Michael Mann, climate charlatan



Sunday, August 3, 2014

New paper finds another non-hockey-stick in Corsica & no trend in precipitation past 815 years

A new paper published in Quaternary Science Reviews reconstructs temperature and precipitation on the Mediterranean island of Corsica and finds no long-term trends or pronounced periods with extreme high or low precipitation over the past 815 years. Reconstructed temperatures also show relatively stable temperatures over the past 600 years with no evidence of a hockey stick in the 20th century.

According to the authors, 

"No long-term trends or pronounced periods with extreme high/low precipitation are recorded in our reconstruction, indicating relatively stable moisture conditions over the entire time period."
The paper joins over 1,000 other non-hockey-sticks worldwide published in the scientific literature and clearly rebuts alarmist claims of a "hockey stick" rise in temperature, precipitation, or increased extreme weather with extreme precipitation either wet or dry.

No long-term trends in precipitation or pronounced periods with extreme high or low precipitation are found in the reconstruction over the past 815 years

Top 7 graphs show various non-hockey-stick tree-ring chronologies, d18O graph is a proxy of temperature and precipitation which shows a decline over the past 600 years, decreases in d13C are a proxy for the quantity of volcanic + anthropogenic CO2 in the atmosphere as volcanic & fossil-fuel CO2 is depleted in 13C. 
However, there's little doubt that Michael Mann could find a hockey stick in this data using his hockey-stick generating computer code, which also creates hockey sticks from Monte Carlo random numbers, baseball statistics, and telephone book numbers. 

Highlights

We present a multi-parameter dataset from Pinus nigra.
Isotope values and wood anatomical parameters are compared over 600 years.
Carbon isotopes and tree-ring width are suitable for climate reconstructions.
Summer temperature and precipitation is reconstructed back to AD 1450.
Extreme climate conditions during summer influence cell parameter characteristics.

Abstract

We present a new multi-parameter dataset from Corsican black pine growing on the island of Corsica in the Western Mediterranean basin covering the period AD 1410–2008. Wood parameters measured include tree-ring width, latewood width, earlywood width, cell lumen area, cell width, cell wall thickness, modelled wood density, as well as stable carbon and oxygen isotopes. We evaluated the relationships between different parameters and determined the value of the dataset for climate reconstructions. Correlation analyses revealed that carbon isotope ratios are influenced by cell parameters determining cell size, whereas oxygen isotope ratios are influenced by cell parameters determining the amount of transportable water in the xylem. A summer (June to August) precipitation reconstruction dating back to AD 1185 was established based on tree-ring width. No long-term trends or pronounced periods with extreme high/low precipitation are recorded in our reconstruction, indicating relatively stable moisture conditions over the entire time period. By comparing the precipitation reconstruction with a summer temperature reconstruction derived from the carbon isotope chronologies, we identified summers with extreme climate conditions, i.e. warm-dry, warm-wet, cold-dry and cold-wet. Extreme climate conditions during summer months were found to influence cell parameter characteristics. Cold-wet summers promote the production of broad latewood composed of wide and thin-walled tracheids, while warm-wet summers promote the production of latewood with small thick-walled cells. The presented dataset emphasizes the potential of multi-parameter wood analysis from one tree species over long time scales.

Wednesday, November 5, 2014

New paper finds bristlecone pines (used for Mann's hockey stick) grow at significantly different rates & often not related to temperature

A paper published today in Environmental Research Letters has very important implications for tree-ring paleoclimate research [dendrochronology], including Michael Mann's debunked hockey sticks. The paper finds that growth of bristlecone pines varies significantly depending on altitude, and also depending on whether the trees are located on the North or South side of a mountain. According to the authors, such differences are often not temperature-related and thus could contaminate tree-ring datasets for which the false assumption is made that tree-rings accurately reconstruct temperature variations.

Michael Mann's hockey stick is perhaps the most thoroughly debunked "icon" in the history of science, but this paper demonstrates even more reasons why his hockey stick cannot be relied upon. According to the authors,
"Treeline site chronologies should be constructed with this vertical heterogeneity in mind. Samples from upper treeline and from trees below treeline should not be mixed to avoid a 'diluted' or 'mixed-signal' site chronology, particularly at treeline sites that occur in relatively dry environments such as the White Mountains of California. Similarly, treeline samples from differing aspects should not be mixed to avoid problems and uncertainties related to potential 'divergences' and to 'dilution'. Interpretations of existing bristlecone chronologies need to take this into account, particularly when these ring width chronologies are used in climate reconstructions. Furthermore, bristlecone pine dendroclimatological research would benefit from the pursuit of mechanistic studies of bristlecone radial growth and from directly measured temperature and moisture variability in high alpine environments. Such research would help to more accurately describe the species response to climate variability." 
And tree-ring data from different sites "should not be mixed to avoid a 'diluted' or 'mixed-signal' site chronology, particularly at treeline sites that occur in relatively dry environments such as the White Mountains of California. Similarly, treeline samples from differing aspects should not be mixed to avoid problems and uncertainties related to potential 'divergences' and to 'dilution'. Interpretations of existing bristlecone chronologies need to take this into account, particularly when these ring width chronologies are used in climate reconstructions"
Michael Mann's "iconic" MBH98 hockey stick featured prominently in the 2001 IPCC report, before being fully debunked and subsequently dropped by the IPCC. Mann's use of bristlecone pines was criticized by McIntyre and McKitrick, and the NAS panel agreed and went further by saying that bristlecone pines were unsuitable for dendrochronology research:
McIntyre and McKitrick argued that the hockey stick relied for its shape on the inclusion of a small set of invalid proxy data (called bristlecone, or “strip-bark” records). If they are removed, the conclusion that the 20th century is unusually warm compared to the pre-1450 interval is reversed. Hence the conclusion of unique late 20th century warmth is not robust—in other word it does not hold up under minor variations in data or methods. The NAS panel agreed, saying Mann’s results are “strongly dependent” on the strip-bark data (pp. 106-107), and they went further, warning that strip-bark data should not be used in this type of research (p. 50)
According to this new paper, "We have shown that [only] approximately 60–80 meters of vertical elevation can be sufficient to create a change in the climate response of bristlecone pine" and can make the difference between a "hockey-stick" and a non-hockey-stick, as shown in Fig 6:



Bristlecone pines located at a mountaintop treeline can show an apparent hockey stick, but 60-90 meters downslope the hockey stick disappears.

And guess which data Mann's flawed statistical methods selected? Tree-rings showing hockey sticks only. 

This new paper is a huge thorn in the side of the field of dendrochronology and could invalidate decades of prior research, especially including Mann's hockey sticks which rely heavily upon bristlecone pines. The authors recommend in the future no mixing and matching of tree-rings from different sites, and "directly measured temperature and moisture variability in high alpine environments. Such research would help to more accurately describe the species response to climate variability."



Excerpt from Conclusions:


Dendroclimatology relies on networks of sites that represent approximations of the shared temporal variability found in collections of tree-ring samples from a particular location (Fritts 1976, Hughes 2011). Sites are areas thought to be similar with respect to the factors determining the climate control of tree-ring variability. The site principle relies on a common signal among all of the samples contributing to the site chronology due to their like responses to the same growth-limiting factor(s). We have shown that approximately 60–80 m of vertical elevation can be sufficient to create a change in the climate response of bristlecone pine. Trees below this elevation are not as effective temperature recorders as trees at treeline. Such fine-scale sensitivity, if present at other treeline sites around the world, would have important implications for chronology development and inferences of past climate variability. Treeline site chronologies should be constructed with this vertical heterogeneity in mind. Samples from upper treeline and from trees below treeline should not be mixed to avoid a 'diluted' or 'mixed-signal' site chronology, particularly at treeline sites that occur in relatively dry environments such as the White Mountains of California. Similarly, treeline samples from differing aspects should not be mixed to avoid problems and uncertainties related to potential 'divergences' and to 'dilution'. Interpretations of existing bristlecone chronologies need to take this into account, particularly when these ring width chronologies are used in climate reconstructions. Furthermore, bristlecone pine dendroclimatological research would benefit from the pursuit of mechanistic studies of bristlecone radial growth and from directly measured temperature and moisture variability in high alpine environments. Such research would help to more accurately describe the species response to climate variability. Millennial-length bristlecone pine tree-ring chronologies are an extremely valuable paleoclimatic resource. New studies that emphasize the importance of precise individual tree location and the measured physiological response of these trees to quantified local values of temperature and moisture will be a step toward using these archives to their full potential.

Changing climate response in near-treeline bristlecone pine with elevation and aspect

Matthew W Salzer1,4, Evan R Larson2, Andrew G Bunn3 and Malcolm K Hughes1
Matthew W Salzer et al 2014 Environ. Res. Lett. 9 114007
doi:10.1088/1748-9326/9/11/114007
© 2014 IOP Publishing Ltd
Received 7 May 2014, accepted for publication 9 October 2014
Published 4 November 2014
  • are on 

Abstract

In the White Mountains of California, eight bristlecone pine (Pinus longaeva) tree-ring width chronologies were developed from trees at upper treeline and just below upper treeline along North- and South-facing elevational transects from treeline to ~90 m below. There is evidence for a climate-response threshold between approximately 60–80 vertical m below treeline, above which trees have shown a positive growth-response to temperature and below which they do not. Chronologies from 80 m or more below treeline show a change in climate response and do not correlate strongly with temperature-sensitive chronologies developed from trees growing at upper treeline. Rather, they more closely resemble lower elevation precipitation-sensitive chronologies. At the highest sites, trees on South-facing slopes grow faster than trees on North-facing slopes. High growth rates in the treeline South-facing trees have declined since the mid-1990s. This suggests the possibility that the climate-response of the highest South-facing trees may have changed and that temperature may no longer be the main limiting factor for growth on the South aspect. These results indicate that increasing warmth may lead to a divergence between tree growth and temperature at previously temperature-limited sites.

Tuesday, August 5, 2014

New paper finds another non-hockey-stick in Sweden & Finland; temperatures in Medieval & Roman Warm Periods ~ same as today

A paper published today in Climate of the Past reconstructs summer temperatures in northernmost Sweden and Finland and shows another non-hockey-stick with temperatures in the year 2000 approximately the same as during the Medieval Warm Period 1000 years ago and the Roman Warm Period 2000 years ago. In addition, the reconstruction shows excellent agreement with the instrumental record since 1800, unlike the "trick to hide the decline" in reconstructed temperatures after 1960 of Michael Mann's bogus hockey stick.

The paper joins over 1000 other non-hockey-sticks published in the scientific literature proving that global temperatures were as warm or warmer than the present during the Medieval Warm Period. 

Reconstruction of summer temperatures June-August [JJA]. Note excellent agreement with the instrumental record [black line] since 1800. 

Clim. Past, 10, 1473-1487, 2014
www.clim-past.net/10/1473/2014/
doi:10.5194/cp-10-1473-2014



V. V. Matskovsky1 and S. Helama2
1Institute of Geography, Russian Academy of Sciences, Moscow, Russia
2Finnish Forest Research Institute, Northern Unit, Rovaniemi, Finland

Abstract. Here we analyse the maximum latewood density (MXD) chronologies of two published tree-ring data sets: one from Torneträsk region in northernmost Sweden (TORN; Melvin et al., 2013) and one from northern Fennoscandia (FENN; Esper et al., 2012). We paid particular attention to the MXD low-frequency variations to reconstruct summer (June–August, JJA) long-term temperature history. We used published methods of tree-ring standardization: regional curve standardization (RCS) combined with signal-free implementation. Comparisons with RCS chronologies produced using single and multiple (non-climatic) ageing curves (to be removed from the initial MXD series) were also carried out. We develop a novel method of standardization, the correction implementation of signal-free standardization, tailored for detection of pure low-frequency signal in tree-ring chronologies. In this method, the error in RCS chronology with signal-free implementation is analytically assessed and extracted to produce an advanced chronology. The importance of correction becomes obvious at lower frequencies as smoothed chronologies become progressively more correlative with correction implementation. Subsampling the FENN data to mimic the lower chronology sample size of TORN data shows that the chronologies bifurcate during the 7th, 9th, 17th and 20th centuries. We used the two MXD data sets to reconstruct summer temperature variations over the period 8 BC through AD 2010. Our new reconstruction shows multi-decadal to multi-centennial variability with changes in the amplitude of the summer temperature of 2.2 °C on average during the Common Era. Although the MXD data provide palaeoclimate research with a highly reliable summer temperature proxy, the bifurcating dendroclimatic signals identified in the two data sets imply that future research should aim at a more advanced understanding of MXD data on distinct issues: (1) influence of past population density variations on MXD production, (2) potential biases when calibrating differently produced MXD data to produce one proxy record, (3) influence of the biological age of MXD data when introducing young trees into the chronology over the most recent past and (4) possible role of waterlogging in MXD production when analysing tree-ring data of riparian trees.

Wednesday, July 25, 2012

Attorney analyzes Michael Mann's frivolous legal threats

New SLAAPstick Courtroom Capers as Michael Mann Falls Foul Again

BY JOHN O'SULLIVAN  07/25/12
Media war of words erupts in anticipation of another global warming courtroom battle. We take time to see how latest events connected to Climategate’s controversial scientist Michael Mann stack up alongside Mann’s legal shoot out versus Dr. Tim Ball.
Last week Pennsylvania State University (PSU) popped back up on the notoriety radar thanks to lingering fallout over their jailed child sex felon, football coach Jerry Sandusky. PSU’s other alleged  bad boy, climatologist Michael Mann, came out with all legal guns blazing after popular right-wing writer, Mark Steynand the National Review wrote of the parallels in the “whitewashes” PSU investigations performed separately on Sandusky and Mann. The recent and hard-hitting Freeh Report is damning of PSU’s hierarchy.
With talk of more lawsuits flying, observers are now wondering how an earlier Michael Mann face off with Tim Ball is shaping up one year on. Readers may recall that Ball’s whimsy that Mann belongs in “the State Pen., not Penn. State”triggered the first of what now may become a series of desperate SLAAP lawsuits.
You might imagine plenty must have transpired by now up there in the British Columbia Supreme Court. But you would be wrong. Mann’s zeal for pressing home his action against his fellow climatologist appears to have waned. Some observers are even of the opinion that Mann is delaying the inevitable until Ball slaps one home between the pipes.
Today – despite being duly served with legal notices – Steyn and the National Review are taking a leaf from Ball’s book and not caving over their “Football and Hockey” article. Steyn has a reputation for being a tough enforcer capable of lighting the lamp in any SLAAP face off. So is Mann skating on thin ice with more time wasting dangles and dekes?
Steyn and others will no doubt take note of how Mann’s prevarications over Ball suggest he has finally realized he’s dug himself a humungous hole. I’m one of many who believes the Mann-v- Ball case will turn out to be a watershed moment for Mann. It’s most likely he will be compelled by the court to disclose his “dirty laundry” (as Mann, himself, refers to his hidden data in his Climategate email). If the hidden numbers are as bad as skeptics suggest then none of his friends in high places can save him.
So Steyn should take with a pinch of salt the “warning shot” from Mann’s lawyer claiming that a slew of official investigations “cleared” Mann of any wrongdoing in the 2009 Climategate scandal. Such claims are not what they seem.
Andrew Montford (read his ‘Caspar and Jesus’ paper)  is one such expert who deftly explains that those (non-judicial) “Climategate” inquiries fell well short of robust exoneration. This is because they all skirted around the unscientific behavior concerning Mann’s key hidden data. Unfortunately, for Mann he has made himself the plaintiff in this Canadian libel suit and cannot now duck the issue.
In the B.C. Supreme Court Ball’s attorney, Michael Scherr, has a clear run to perfectly demonstrate how climate “scientists” have been (and still are) withholding data that would help to resolve the climate controversy; we may say unscientific behavior, because hiding data makes it difficult or impossible for independent scientists/statisticians to replicate the claimed results.
As we know, Mann’s “dirty laundry” is the withheld r-squared correlation coefficient numbers for the “hockey stick” graph which McIntyre, Wegman,Cuccinelli and others have been desperate to see publicly examined but which Mann (and his university employers) have always kept under wraps. It’s not just the key evidence, but also Mann’s days that are numbered. This is because, as plaintiff in the action, Mann picked the worst possible jurisdiction to do legal battle over his “hockey stick” graph. This is for two key reasons:
(1.) The “Truth Defense” to Libel
Canadian courts offer the defendant in a libel lawsuit the unique opportunity to pursue the “truth defense.“ Ball has sagely opted to pursue that path rather than, for example, the “fair comment” defense. This is because the “truth defense” places a higher – more onerous – evidential burden on the parties. This means any and all evidence demanded by either party in the ongoing discovery process must be revealed. So effective can the “truth defense” be that some cynics refer to it as the “scorched earth” defense.
(2.) “Spoliation”: The Intentional Withholding/Destruction of Evidence
Since 2008 we can give thanks that Canada has beefed up it’s due process laws to punish litigants that intentionally withhold or destroy evidence (e.g. seeMcDougall v. Black & Decker Canada Inc.,[1.]). This means that Mann’s lawyer,Roger McConchie, cannot persist in indefinitely stalling over compliance with Ball’s motion to hand over those “hockey stick” r-squared correlation coefficient numbers.
Purposely prevaricating and failing to comply with this disclosure demand renders this omission to act a willful contempt of court (“intentional spoliation”) with serious repercussions. As such, due process rules entitle Ball to file a motion demanding the imposition of [a] punitive sanction[s]. Note: this is not discretionary but mandatory upon the court.
Such sanction[s] may include summary dismissal of Mann’s case with prejudice or, in the alternative; the court may grant what is termed an adverse inference jury instruction. This is a binding direction on jurors that they must find that Mann “intentionally spoliated” the evidence of the r-squared correlation coefficient numbers (i.e. with a sense of guilt Mann unlawfully withheld/destroyed his metadata).
(3.) A Legal Analysis
Be advised that as of July last year I have not assisted Dr. Ball in any way in this case so my opinion should not construed as necessarily the same as his or his counsel’s and we’ve had no discussions on the matter since. But to my mind neither of the above outcomes bodes well for Mann in other jurisdictions with regard to any possible subsequent legal proceedings. Firstly, this is because dismissal with prejudice will destroy what little remains of Mann’s credibility – even though he may get to keep his numbers hidden; while the second outcome sets a compelling and unequivocal international legal precedent  in other common law jurisdictions (i.e. U.S., U.K. Australia, N.Z). For example, a prosecutor in Virginia may then apply any such a Mann-v-Ball Canadian judgment as proof of Mann’s guilt to conspire to commit climate data fraud.
My guess is that Mann will go with the first option and let Ball win the libel suit without having to disclose the “dirty laundry.” But this outcome may only serve to buy Mann a little more time. But that’s probably the best he can do hereon in.
(4.) Case Background
Michael Mann apologists appear not to understand the issue. A brief summary of the historic background is thus helpful. Mann’s hockey stick graph first appeared to worldwide fanfare in 2001 when it became the battle flag for global warming crusaders of the Intergovernmental Panel on Climate Change (IPCC). It’s a 1,000-year  proxy (tree ring) reconstruction of past climates (proxies are used because thermometer records only go back 150 years). The controversy over Mann’s hockey stick graph is less a climatology question, but more an issue of plain, black and white statistical analysis. Thus any claim that only climatologists are “qualified” to weigh the matter is bogus. JoNova has an excellent article addressing the basics here.
Mann’s tree-ring proxy graph purported to prove modern temperatures were dangerously warmer than previous eras. Mann’s number-crunching had somehow managed to do away with the balmy Medieval Warm Period (WMP). Bizarrely, the IPCC immediately bought into Mann’s graph and quietly dropped their original version from 1995 with no explanation whatsoever.
IPCC Presentation of the Medieval Warm Period from their 1995 Report
IPCC Presentation of the Medieval Warm Period from their 1995 Report
Unusually, Mann refused to disclose key calculations for his flat-handled, uptick-bladed graph thus blocking independent scientists from fully checking their reliability. However, it wasn’t long before Michael Mann’s published work was falsified by McIntyre & McKittrick. McIntyre also destroyed Mann08, in which Mann used the Tiljander proxy – known to be corrupted [2.]
IPCC Replacement Presentation - Mann's Version of the MWP (2001)
IPCC Replacement Presentation – Mann’s Version of the MWP (2001)
Retired Canadian statistician, Steve McIntyre and Ross McKitrick, an economics professor at the University of Guelph (M&M) thus came to the fore as the key critics of Mann’s methodology. Together they uncovered fatal flaws in both Mann’s statistical analysis and data interpretation. In 2005 this led M&M to publish a paper explaining the problems in Geophysical Research Letters.What was proven was that Mann’s methodology would generate a hockey stick regardless of almost any data input. This was because Mann numbers had been generating “Spectral noise,” One satirist, “Iowahawk” provided a primer on how to create a hockey stick at home, using a standard spreadsheet program.
Defenders of Mann claim that even if there are problems with his method or data set independent results from other researchers back him up. But as Andrew Montford’s ‘Caspar and Jesus’ study demonstrates, those third party statistical efforts to vindicate Mann actually raise more questions than they answer. But so much focus has been on Mann that his co-author of the hockey stick graph, Keith Briffa has managed to evade the same level of scrutiny. But as
McIntyre showed, Briffa was no less culpable. Briffa had claimed to have independent Eurasian tree-ring analysis that confirmed Mann’s results. But what he offered from the Polar Urals and Eurasian data from Yamal led to even greater suspicion because leaked Climategate emails proved Briffa’s claims about these were unreliable. Emails proved Briffa had been telling one story in public but another privately. A criminal prosecution was only averted due a technicality over the statute of limitations. British Information Commissioner’s Office (ICO) confirmed that the UK’s University of East Anglia at the center of Climategate scandal had indeed  unlawfully withheld and/or destroyed data. Further McIntyre examinations proved thatBriffa’s Polar Urals update would not show a hockey stick shape graph at all.
Absent a full release of all the evidence (which governments and university authorities appear not to want) the evidence in the public domain points to a clique of climatologists that conspired to cherry-pick tree ring data. It appears their purpose was to be bolster “evidence” for their belief of unprecedented warmth in our modern era due to human emissions of carbon dioxide.
Briffa and others secretly accepted that the data from modern tree ring analysis showed a poor match with temperatures. So if there is was poor reliability when compared with modern temperatures it is reasonable to infer that any conclusions drawn from them before the pre-thermometer era would also be unreliable.
What this means is that there is no persuasive proxy evidence from trees to substantiate Mann’s hockey stick graph – more precisely – there is no blade to Mann’s stick.
Conclusion
What does this all mean? For certain, bristlecone pines and larches are not accurate thermometers. Also, climatologists who persist in hiding their statistical data from independent review should no longer be given the benefit of the doubt and their findings should be treated with extreme caution.
If the British Columbia Supreme Court rules against Michael Mann and in favor of Tim Ball then there is a strong likelihood that Mann’s conduct in the tree ring controversy was malevolent. As such, it becomes increasingly likely he and others will face criminal investigation.
[1.] McDougall v. Black & Decker Canada, Inc.; 2008 ABCA 353; October 2008
[2.] McIntyre, S., McKitrick, The M&M Project: Replication Analysis of the Mann et al. Hockey Stick; (accessed online: July 25, 2012)

See also Steve Goddard's History of how the hockey stick was manufactured