Earth system modeling with endogenous and dynamic human societies: the copan:CORE open World-Earth modeling framework
Jonathan F. Donges, Jobst Heitzig, Wolfram Barfuss, Marc Wiedermann,, Johannes A. Kassel, Tim Kittel, Jakob J. Kolb, Till Kolster, Finn, M\"uller-Hansen, Ilona M. Otto, Kilian B. Zimmerer, and Wolfgang Lucht

TL;DR
This paper introduces the copan:CORE framework for constructing flexible, modular World-Earth Models that integrate human societies and biophysical systems to better analyze Earth system dynamics in the Anthropocene.
Contribution
It proposes design principles for Earth system models that include dynamic human societies and presents the copan:CORE framework for building such models.
Findings
Framework enables modeling of socio-cultural and biophysical feedbacks.
Illustrative model shows socio-cultural processes can alter outcomes.
Supports diverse theories and methodologies in Earth system analysis.
Abstract
Analysis of Earth system dynamics in the Anthropocene requires to explicitly take into account the increasing magnitude of processes operating in human societies, their cultures, economies and technosphere and their growing feedback entanglement with those in the physical, chemical and biological systems of the planet. However, current state-of-the-art Earth System Models do not represent dynamic human societies and their feedback interactions with the biogeophysical Earth system and macroeconomic Integrated Assessment Models typically do so only with limited scope. This paper (i) proposes design principles for constructing World-Earth Models (WEM) for Earth system analysis of the Anthropocene, i.e., models of social (World) - ecological (Earth) co-evolution on up to planetary scales, and (ii) presents the copan:CORE open simulation modeling framework for developing, composing and…
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