Degrees of Change – 5.5 Communicating uncertainty and confidence in climate change impacts in Degrees of change
5.5 Communicating uncertainty and confidence in climate change impacts in Degrees of change
| Previous | Table of Contents |
The NRTEE’s Degrees of Change diagram is a summary of some of the more important impacts, those we know most about, are most confident about, and those expected to occur this century. Collectively, these impacts are important because they give a picture of the scope and scale of the issue for Canada. The types of impacts on it are also well researched, although some more than others. Many of the impacts are already occurring and the rest are likely to occur in Canada over this century. The diagram does not present low probability yet catastrophic impacts, although we draw attention to these in several parts of our report.
An important difference exists between our degree of confidence on the collective of climate impacts and their ability to paint a scientifically robust picture, and in certainty and confidence in each of the 60 impacts plotted on the diagram at a specific temperature range, based on the research sources available and utilized for this report.
For impacts already occurring, we can say with more confidence that the trends will continue as the globe warms and can easily envision how these trends would unfold into the future. For example, glaciers will continue to lose ice and snow until conditions are such that ice and snow no longer accumulate. Winter road seasons will continue shortening until they are not a viable transportation option and others become cost-effective, such as all-season roads.
Future impacts are by definition more uncertain, and within these future impacts, statements with numbers attached to them can be even more uncertain in terms of absolute precision, given the state of research at this time. Confidence in these forecasted impacts is a function of understanding and learning more about the direction and magnitude (how much or how little) of change; the global temperature range associated with this change; delays between global temperature change and the response of our physical environment; and conditions under which the direction of change may flip, or the speed of change may actually accelerate, upon crossing a threshold.
The following table provides additional explanation for some of the impacts in the Degrees of Change diagram where questions of uncertainty and confidence may appear
| IMPACT | MAGNITUDE OF CHANGE |
SPEED OF CHANGE |
COMPLEX INTERACTIONS/ LAGS |
CHALLENGE MAPPING TO SPECIFIC GLOBAL TEMPERATURE |
OTHER REASONS / COMMENTS |
| SUMMER ARCTIC SEA ICE EXTENT HALVED |
X | X | X | OBSERVED SEA-ICE DECLINE HAS TAKEN PLACE FASTER THAN PROJECTED BY GLOBAL CLIMATE MODELS. |
|
| SUMMER THAW DEPTHS IN PERMAFROST TERRAIN INCREASE 15-40% IN THE MACKENZIE VALLEY |
X | THERE’S A LAG BETWEEN AIR TEMPERATURE CHANGE AND GRADUAL RESPONSE OF THE FROZEN GROUND. |
|||
| WESTERN MOUNTAIN GLACIERS LOSE OVER 50 % OF VOLUME AND SOME DISAPPEAR |
X | X | STUDY ON WHICH THE 50% FIGURE IS BASED USES A SMALL SUB-SET OF HIGH-LATITUDE GLACIERS, NOT ALL FROM CANADA. |
||
| GLOBAL SEA LEVEL RISES TO 1m |
X | X | EVEN AT LOW TEMPERATURE INCREASES, SEA LEVELS WOULD CONTINUE TO RISE BEYOND THE 21ST CENTURY. SEA-LEVELS ARE RISING FASTER THAN EXPECTED. |
||
| RISK OF LOSING OVER 20% OF BOREAL FOREST AND OVER 10% OF TUNDRA |
X | X | MAGNITUDE OF CHANGE (% LOSSES) COMES FROM 2 STUDIES, ON BOREAL AND TUNDRA LOSSES RESPECTIVELY. |
||
| AREA BURNED IN WESTERN WILDFIRES INCREASES TWO TO FOUR TIMES |
X | X | SIGNIFICANT REGIONAL VARIABILITY, SITE SPECIFIC CONDITIONS. |
||
| FREQUENCY OF PRAIRIE DROUGHT DOUBLES |
X | X | |||
| RISK OF DESERTIFICATION IN PRAIRIES INCREASED 50% |
X | LIMITED NUMBER OF STUDIES AVAILABLE. |
|||
| HEAT WAVE DEATHS DOUBLE IN PARTS OF SOUTHERN CANADA |
X | X | NUMBER OF EXTREME HEAT DAYS WILL INCREASE AND THIS WILL LIKELY RESULT IN ADDITIONAL DEATHS AMONG VULNERABLE POPULATIONS, BUT DOSE RESPONSE RELATIONSHIP INCLUDES IMPORTANT ASSUMPTIONS ABOUT ACCLIMATIZATION AND ADAPTATION THAT MAY CHANGE. |
||
| EXTREME RAIN EVENTS DOUBLE IN FREQUENCY |
X | X | SIGNIFICANT REGIONAL VARIABILITY LIKELY. LIMITED NUMBER OF STUDIES AVAILABLE. |
||
| TIMBER GAINS FROM ENHANCED TREE GROWTH IN SOME NORTHERLY LOCATIONS |
X | X | COMPLEX ECOSYSTEM DYNAMICS INVOLVED. ENHANCED PRODUCTIVITY STRONGLY A FUNCTION OF ADEQUATE MOISTURE AVAILABILITY, AS WELL AS CAPACITY OF TREE SPECIES TO THRIVE UNDER DIFFERENT CLIMATE ENVELOPES. ENHANCED CARBON FERTILIZATION LIKELY SHORT-LIVED. |
||
| RANGE OF ARCTIC CHAR RESTRICTED TO NORTHEASTERN CANADA |
X | X | LIMITED NUMBER OF STUDIES AVAILABLE. |
||
| ATLANTIC SALMON LOSES HABITAT IN GULF OF ST. LAWRENCE AND TAIL OF GRAND BANK |
X | X | LIMITED NUMBER OF STUDIES AVAILABLE. |
||
| INCREASED ABUNDANCE OF ATLANTIC COD NORTH OF 60 |
X | COMPLEX INTERACTIONS AND BASELINE VULNERABILITY OF SPECIES MAKE PRECISE FORECASTS CHALLENGING. |
|||
| NORTHWEST PASSAGE OPENS TO COMMERCIAL SHIPPING |
X | X | TEMPERATURE AT WHICH THE NWP IS EXPECTED TO OPEN WITHOUT HAZARDS OF ICE CHUNKS LEFT BEHIND IS UNCERTAIN, AND CONTINGENT ON COMPLEX ICE DYNAMICS NOT FULLY UNDERSTOOD YET. |
||
| CRUISE VOYAGE POTENTIAL INCREASES BY 50% |
X | LIMITED NUMBER OF STUDIES AVAILABLE. |
|||
| SKI SEASON REDUCED 15-25%, GOLF SEASON INCREASED 7-20% IN PARTS OF SOUTHEASTERN CANADA |
X | PERCENTAGE INCREASE / DECREASE SEASON LENGTHS EMBED SEVERAL MARKET ASSUMPTIONS AND ASSUMPTIONS ABOUT ADAPTATION THAT MAY CHANGE. |
|||



















