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A new scenario framework for Climate Change Research: scenario matrix architecture

Climatic Change · 2013 · Vol. 122(3) · pp. 373–386
Detlef P. van VuurenElmar KrieglerBrian C. O’NeillKristie L. EbiKeywan RiahiTimothy R. CarterJae EdmondsStéphane HallegatteTom KramRitu MathurHarald Winkler

Abstract

Abstract This paper describes the scenario matrix architecture that underlies a framework for developing new scenarios for climate change research. The matrix architecture facilitates addressing key questions related to current climate research and policy-making: identifying the effectiveness of different adaptation and mitigation strategies (in terms of their costs, risks and other consequences) and the possible trade-offs and synergies. The two main axes of the matrix are: 1) the level of radiative forcing of the climate system (as characterised by the representative concentration pathways) and 2) a set of alternative plausible trajectories of future global development (described as shared socio-economic pathways). The matrix can be used to guide scenario development at different scales. It can also be used as a heuristic tool for classifying new and existing scenarios for assessment. Key elements of the architecture, in particular the shared socio-economic pathways and shared policy assumptions (devices for incorporating explicit mitigation and adaptation policies), are elaborated in other papers in this special issue.

Climate change impacts on agricultureSustainability and Climate Change GovernanceClimate Change Policy and EconomicsArchitectureAdaptation (eye)Climate changeComputer scienceKey (lock)Set (abstract data type)HeuristicRadiative forcingForcing (mathematics)Environmental resource management
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References
The representative concentration pathways: an overview
Climatic Change · 2011 · 7,889 citations
An Overview of CMIP5 and the Experiment Design
Bulletin of the American Meteorological Society · 2011 · 14,669 citations
Ensemble forecasting of species distributions
Trends in Ecology & Evolution · 2006 · 3,407 citations
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