How well do integrated assessment models represent non-CO2 radiative forcing?
Explore this paper's citation graph
- Type
- article
- Published
- 2015-09-07
- Cited by
- 22
- References
- 29
- Access
- Open access
- OpenAlex
- https://openalex.org/W1800781020
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:153984235
Keywords
Radiative forcing, Forcing (mathematics), Environmental science, Climate model, Climatology
References
- Future changes in tropospheric ozone under Representative Concentration Pathways (RCPs)
- The marginal impact of CO2 from PAGE2002: An integrated assessment model incorporating the IPCC's five reasons for concern
- Bounding the role of black carbon in the climate system: A scientific assessment
- Radiative forcing in the ACCMIP historical and future climate simulations
- Transport and storage of CO2 in the ocean ——an inorganic ocean-circulation carbon cycle model
- The benefits of climate change mitigation in integrated assessment models: the role of the carbon cycle and climate component
- The representative concentration pathways: an overview
- Non-Kyoto radiative forcing in long-run greenhouse gas emissions and climate change scenarios
- Emulating coupled atmosphere-ocean and carbon cycle models with a simpler model, MAGICC6 - Part 1: Model description and calibration
- Simultaneously Mitigating Near-Term Climate Change and Improving Human Health and Food Security
- Near-term climate mitigation by short-lived forcers
- Trade-offs between mitigation costs and temperature change
- Two hundred fifty years of aerosols and climate: the end of the age of aerosols
- Overview of EMF-21: Multigas Mitigation and Climate Policy
- How well do integrated assessment models simulate climate change?
- Efficacy of climate forcings
- A comparison of climate response to different radiative forcings in three general circulation models: towards an improved metric of climate change
- Global and regional evolution of short-lived radiatively-active gases and aerosols in the Representative Concentration Pathways
- The Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP): overview and description of models, simulations and climate diagnostics
- Future methane, hydroxyl, and their uncertainties: key climate and emission parameters for future predictions
Cited by
- From Atmospheric Gas Spectroscopy to Climatological Problems
- Equitable mitigation to achieve the Paris Agreement goals
- Co-benefits of black carbon mitigation for climate and air quality
- Evaluating process-based integrated assessment models of climate change mitigation
- The impact of aerosol emissions on the 1.5 °C pathways
- Evaluating Climate Emulation: Unit Testing of Simple Climate Models
- The role of methane in future climate strategies: mitigation potentials and climate impacts
- Taking some heat off the NDCs? The limited potential of additional short-lived climate forcers’ mitigation
- Evaluating climate emulation: fundamental impulse testing of simple climate models
- Reduced complexity model intercomparison project phase 1: Protocol, results and initial observations
- Large-scale optimization of multi-pollutant control strategies in the Pearl River Delta region of China using a genetic algorithm in machine learning.
- Reduced Complexity Model Intercomparison Project Phase 1: introduction and evaluation of global-mean temperature response
- The Energy Modeling Forum (EMF)-30 study on short-lived climate forcers: introduction and overview
- Reduced Complexity Model Intercomparison Project Phase 2: Synthesizing Earth System Knowledge for Probabilistic Climate Projections
- Equity is more important for the social cost of methane than climate uncertainty
- Translating observed household energy behavior to agent-based technology choices in an integrated modeling framework
- Changes in IPCC Scenario Assessment Emulators Between SR1.5 and AR6 Unraveled
- Non-carbon dioxide emissions modeling in integrated assessment models: A review
- Black carbon emissions and its impact on the monsoon rainfall patterns over the Indian subcontinent: Insights into localized warming effects
- Reduced Complexity Model Intercomparison Project Phase 2: Synthesising Earth system knowledge for probabilistic climate projections
Related papers
- An assessment of methods for computing radiative forcing in climate models
- The Radiative Forcing Model Intercomparison Project (RFMIP): Experimental Protocol for CMIP6 (in open review: 10.5194/gmd-2016-88)
- The Radiative Forcing Model Intercomparison Project (RFMIP): experimental protocol for CMIP6
- Uncertainty in aerosol-cloud radiative forcing is driven by clean conditions
- Spatial scales of climate response to inhomogeneous radiative forcing
- Rethinking the lower bound on aerosol radiative forcing