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The Radiative Forcing Model Intercomparison Project (RFMIP): Experimental protocol for CMIP6

Journal Article · · Geoscientific Model Development (Online)
 [1];  [2];  [3]
  1. Univ. of Colorado, Boulder, CO (United States); NOAA Earth System Research Lab., Boulder, CO (United States); None
  2. Univ. of Leeds, Leeds (United Kingdom)
  3. Max Planck Institute for Meteorology, Hamburg (Germany)

The phrasing of the first of three questions motivating CMIP6 – “How does the Earth system respond to forcing?” – suggests that forcing is always well-known, yet the radiative forcing to which this question refers has historically been uncertain in coordinated experiments even as understanding of how best to infer radiative forcing has evolved. The Radiative Forcing Model Intercomparison Project (RFMIP) endorsed by CMIP6 seeks to provide a foundation for answering the question through three related activities: (i) accurate characterization of the effective radiative forcing relative to a near-preindustrial baseline and careful diagnosis of the components of this forcing; (ii) assessment of the absolute accuracy of clear-sky radiative transfer parameterizations against reference models on the global scales relevant for climate modeling; and (iii) identification of robust model responses to tightly specified aerosol radiative forcing from 1850 to present.

Complete characterization of effective radiative forcing can be accomplished with 180 years (Tier 1) of atmosphere-only simulation using a sea-surface temperature and sea ice concentration climatology derived from the host model's preindustrial control simulation. Assessment of parameterization error requires trivial amounts of computation but the development of small amounts of infrastructure: new, spectrally detailed diagnostic output requested as two snapshots at present-day and preindustrial conditions, and results from the model's radiation code applied to specified atmospheric conditions. In conclusion, the search for robust responses to aerosol changes relies on the CMIP6 specification of anthropogenic aerosol properties; models using this specification can contribute to RFMIP with no additional simulation, while those using a full aerosol model are requested to perform at least one and up to four 165-year coupled ocean–atmosphere simulations at Tier 1.

Research Organization:
The Regents of the Univ. of Colorado, Denver, CO (United States)
Sponsoring Organization:
USDOE
Grant/Contract Number:
SC0012549
OSTI ID:
1361558
Journal Information:
Geoscientific Model Development (Online), Journal Name: Geoscientific Model Development (Online) Journal Issue: 9 Vol. 9; ISSN 1991-9603
Publisher:
European Geosciences UnionCopyright Statement
Country of Publication:
United States
Language:
English

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The GFDL Global Atmosphere and Land Model AM4.0/LM4.0: 1. Simulation Characteristics With Prescribed SSTs journal March 2018
The GFDL Global Atmosphere and Land Model AM4.0/LM4.0: 2. Model Description, Sensitivity Studies, and Tuning Strategies journal March 2018
The relative importance among anthropogenic forcings of land use/land cover change in affecting temperature extremes journal May 2018
How accurately can the climate sensitivity to $$\hbox {CO}_{2}$$CO2 be estimated from historical climate change? journal October 2019
Developments in the MPI‐M Earth System Model version 1.2 (MPI‐ESM1.2) and Its Response to Increasing CO 2 journal April 2019
Improved Aerosol Processes and Effective Radiative Forcing in HadGEM3 and UKESM1 journal November 2018
How Does Radiation Code Accuracy Matter? journal October 2019
Balancing Accuracy, Efficiency, and Flexibility in Radiation Calculations for Dynamical Models journal October 2019
The Development of an Atmospheric Aerosol/Chemistry‐Climate Model, BCC_AGCM_CUACE2.0, and Simulated Effective Radiative Forcing of Nitrate Aerosols journal November 2019
Evaluation of CNRM Earth System Model, CNRM‐ESM2‐1: Role of Earth System Processes in Present‐Day and Future Climate journal December 2019
On the Causal Relationship Between the Moist Diabatic Circulation and Cloud Rapid Adjustment to Increasing CO 2 journal November 2019
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Polar amplification dominated by local forcing and feedbacks journal November 2018
Strong remote control of future equatorial warming by off-equatorial forcing journal January 2020
Twentieth-century hydroclimate changes consistent with human influence journal May 2019
Quantifying stochastic uncertainty in detection time of human-caused climate signals journal September 2019
Reducing uncertainties in climate models journal July 2018
The Model Intercomparison Project on the climatic response to Volcanic forcing (VolMIP): Experimental design and forcing input data for CMIP6 text January 2016
The Scenario Model Intercomparison Project (ScenarioMIP) for CMIP6 text January 2016
ESD Reviews: Climate feedbacks in the Earth system and prospects for their evaluation text January 2019
Separating radiative forcing by aerosol–cloud interactions and rapid cloud adjustments in the ECHAM–HAMMOZ aerosol–climate model using the method of partial radiative perturbations journal January 2019
Anthropogenic aerosol forcing – insights from multiple estimates from aerosol-climate models with reduced complexity journal January 2019
ESD Reviews: Climate feedbacks in the Earth system and prospects for their evaluation journal January 2019
The Cloud Feedback Model Intercomparison Project (CFMIP) contribution to CMIP6 journal January 2017
The Palaeoclimate and Terrestrial Exoplanet Radiative Transfer Model Intercomparison Project (PALAEOTRIP): experimental design and protocols journal January 2017
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AerChemMIP: quantifying the effects of chemistry and aerosols in CMIP6 journal January 2017
The PMIP4 contribution to CMIP6 – Part 1: Overview and over-arching analysis plan journal January 2018
First forcing estimates from the future CMIP6 scenarios of anthropogenic aerosol optical properties and an associated Twomey effect journal January 2019
The CMIP6 Data Request (DREQ, version 01.00.31) journal January 2020
The Model Intercomparison Project on the climatic response to Volcanic forcing (VolMIP): experimental design and forcing input data for CMIP6 journal January 2016
The Land Use Model Intercomparison Project (LUMIP) contribution to CMIP6: rationale and experimental design journal January 2016
The Scenario Model Intercomparison Project (ScenarioMIP) for CMIP6 journal January 2016
The Land Use Model Intercomparison Project (LUMIP) contribution to CMIP6: Rationale and experimental design text January 2016
Fast and slow shifts of the zonal-mean intertropical convergence zone in response to an idealized anthropogenic aerosol text January 2017
The PMIP4 contribution to CMIP6 – Part 1: Overview and over-arching analysis plan text January 2018

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