Javascript must be enabled to continue!
Changes in Köppen-Geiger climate types under a future climate for Australia: hydrological implications
View through CrossRef
Abstract. The Köppen-Geiger climate classification has been used for over a century to delineate climate types across the globe. As it was developed to mimic the distribution of vegetation it may provide a useful surrogate for making projections of the future distribution of vegetation, and hence resultant hydrological implications, under climate change scenarios. This paper developed projections of the Köppen-Geiger climate types covering the Australian continent for a 2030 and 2050 climate relative to a 1990 historical baseline climate using 17 Global Climate Models (GCMs) and five global warming scenarios. At the highest level of classification for a +2.4 °C future climate (the upper limit projected for 2050) relative to the historical baseline, it was projected that the area of the continent covered by: – Tropical climate types would increase from 8.8% to 9.1% – Arid climate types would increase from 76.5% to 81.7% – Temperate climate types would decrease from 14.7% to 9.2% – Cold climate types would decrease from 0.016% to 0.001%. Previous climate change impact studies on water resources in Australia have assumed a static vegetation distribution. If the change in projected climate types is used as a surrogate for a change in vegetation, then the major transition in climate from Temperate to Arid in parts of Australia under a drier future climate could cause indirect effects on water resources. For a transition from annual cropping to perennial grassland this would have a compounding effect on the projected reduction in recharge. In contrast, a transition from forest to grassland would have a mitigating effect on the projected reduction in runoff.
Copernicus GmbH
Title: Changes in Köppen-Geiger climate types under a future climate for Australia: hydrological implications
Description:
Abstract.
The Köppen-Geiger climate classification has been used for over a century to delineate climate types across the globe.
As it was developed to mimic the distribution of vegetation it may provide a useful surrogate for making projections of the future distribution of vegetation, and hence resultant hydrological implications, under climate change scenarios.
This paper developed projections of the Köppen-Geiger climate types covering the Australian continent for a 2030 and 2050 climate relative to a 1990 historical baseline climate using 17 Global Climate Models (GCMs) and five global warming scenarios.
At the highest level of classification for a +2.
4 °C future climate (the upper limit projected for 2050) relative to the historical baseline, it was projected that the area of the continent covered by: – Tropical climate types would increase from 8.
8% to 9.
1% – Arid climate types would increase from 76.
5% to 81.
7% – Temperate climate types would decrease from 14.
7% to 9.
2% – Cold climate types would decrease from 0.
016% to 0.
001%.
Previous climate change impact studies on water resources in Australia have assumed a static vegetation distribution.
If the change in projected climate types is used as a surrogate for a change in vegetation, then the major transition in climate from Temperate to Arid in parts of Australia under a drier future climate could cause indirect effects on water resources.
For a transition from annual cropping to perennial grassland this would have a compounding effect on the projected reduction in recharge.
In contrast, a transition from forest to grassland would have a mitigating effect on the projected reduction in runoff.
Related Results
“The Earth Is Dying, Bro”
“The Earth Is Dying, Bro”
Climate Change and Children
Australian children are uniquely situated in a vast landscape that varies drastically across locations. Spanning multiple climatic zones—from cool tempe...
GEOINFORMATION FOR DISASTER MANAGEMENT 2020 (GI4DM2020): PREFACE
GEOINFORMATION FOR DISASTER MANAGEMENT 2020 (GI4DM2020): PREFACE
Abstract. Across the world, nature-triggered disasters fuelled by climate change are worsening. Some two billion people have been affected by the consequences of natural hazards ov...
Changes in Köppen-Geiger climate types under a future climate for Australia: hydrological implications
Changes in Köppen-Geiger climate types under a future climate for Australia: hydrological implications
Abstract. The Köppen-Geiger climate classification has been used for over a century to delineate climate types across the globe. As it was developed to mimic the distribution of ve...
Burden of the Beast
Burden of the Beast
Introduction
Throughout the COVID-19 pandemic, and its fluctuating waves of infections and the emergence of new variants, Indigenous populations in Australia and worldwide have re...
Climate and Culture
Climate and Culture
Climate is, presently, a heatedly discussed topic. Concerns about the environmental, economic, political and social consequences of climate change are of central interest in academ...
[RETRACTED] Guardian Blood Balance Australia- Reviews - Guardian Botanicals Blood Balance [AU] SCAM ALERT! Read Real Critical Reports.. Price in Australia v1
[RETRACTED] Guardian Blood Balance Australia- Reviews - Guardian Botanicals Blood Balance [AU] SCAM ALERT! Read Real Critical Reports.. Price in Australia v1
[RETRACTED]Guardian Blood Balance Australia Reviews - Diabetes and blood sugar are some of the common problems that are attacking so many adult individuals nowadays. Obesity is t...
Constraining simulation uncertainties in a hydrological model of the Congo River Basin including a combined modelling approach for channel-wetland exchanges
Constraining simulation uncertainties in a hydrological model of the Congo River Basin including a combined modelling approach for channel-wetland exchanges
Compared to other large river basins of the world, such as the Amazon, the Congo River Basin appears to be the most ungauged and less studied. This is partly because the basin lack...
Ethics of climate change : a normative account
Ethics of climate change : a normative account
Consider, for instance, you and your family have lived around a place where you enjoyed the flora and fauna of the land as well as the natural environment. Fishing and farming were...

