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February 19, 2026Geoscientific model development0 citationsOpen Access

FRIDA-Clim v1.0.1: a simple climate model with process-based carbon cycle used in the integrated assessment model FRIDAv2.1

CWChristopher WellsLRLennart RammeCSChris Smith

Key Points

  • The aim is to develop and validate FRIDA-Clim v1.0.1, a simple climate model that incorporates a process-based carbon cycle within an integrated assessment framework.
  • Developed FRIDA-Clim as a standalone simple climate model based on the FaIR model.
  • Coupled simulations with integrated assessment model FRIDAv2.1 to connect human drivers with climate impacts.
  • Conducted system calibration to ensure accuracy in reproducing key climate variables and assess uncertainty.
  • Explored model response with idealized CO2 emissions and plausible future scenarios.
  • FRIDA-Clim demonstrated precise simulations of temperature response to radiative forcings.
  • Key climate variables reproduced accurately with a reduction in complexity compared to the FaIR model.
  • The model supports quick calculations of global climate response, aiding inter-model climate simulations.

Abstract

Abstract. The new global Feedback-based knowledge Repository for IntegrateD Assessments version 2.1 (FRIDAv2.1) Integrated Assessment Model (IAM) seeks to study the dynamics of the coupled human-Earth system. Connecting anthropogenic emissions to the resultant climate response is one part of the two-way feedback within this system, with the resultant climate impacts the other. This paper documents both the Climate Module within FRIDAv2.1, and the modified version separately simulated as a standalone simple climate model termed FRIDA-Clim version 1.0.1. This approach, based loosely on the existing FaIR simple climate model, simulates the key radiative forcings and the resultant temperature response, with process-based representations of the carbon cycle across the ocean, land, and atmosphere. When connected within the FRIDA IAM, it features deep connections to the other modules, being affected by processes such as water use for irrigation and land use change. In both uses, i.e. with the climate response interactively connected to the upstream human drivers and downstream climate impacts within the FRIDA IAM (coupled) and when ran separately as FRIDA-Clim driven by exogenous forcings (uncoupled), its climate drivers are simplified as compared to FaIR. This is to allow for this reduced set of key drivers to be interactively simulated within FRIDA, tightly coupling the evolution of the social and climate systems within the full model. Both the Climate Module and FRIDA-Clim are fully calibrated to accurately reproduce observations of key climate variables, with a systematic exploration of the uncertainty in the climate response. Together with the rest of the FRIDA model, this module is used to incorporate climate change systematically in the FRIDA System Dynamics IAM. As a standalone climate model, FRIDA-Clim comprises a simple climate model, enabling fast calculation of the global climate response to forcing; to explore this, the response of the model to both idealised CO2 emissions experiments and plausible future scenarios is also presented here. This setup will allow FRIDA-Clim to contribute to inter-model simple climate modelling initiatives, helping to explore the structural uncertainty in this modelling domain.

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Cite This Study

Wells et al. (2026) studied this question.

synapsesocial.com/papers/6996a83eecb39a600b3eec51https://doi.org/10.5194/gmd-19-1429-2026
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