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Earth system modeling with endogenous and dynamic human societies: the copan:CORE open World–Earth modeling framework

机译:地球系统建模与内源性和动态人体社会:Copan:核心开放世界地球建模框架

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摘要

Analysis of Earth system dynamics in the Anthropocene requires explicitly taking 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?(WEMs) for Earth system analysis of the Anthropocene, i.e., models of social (world)–ecological (Earth) coevolution on up to planetary scales, and (ii)?presents the copan:CORE open simulation modeling framework for developing, composing and analyzing such WEMs based on the proposed principles. The framework provides a modular structure to flexibly construct and study WEMs. These can contain biophysical (e.g.,?carbon cycle dynamics), socio-metabolic or economic (e.g.,?economic growth or energy system changes), and sociocultural processes (e.g.,?voting on climate policies or changing social norms) and their feedback interactions, and they are based on elementary entity types, e.g., grid cells and social systems. Thereby, copan:CORE enables the epistemic flexibility needed for contributions towards Earth system analysis of the Anthropocene given the large diversity of competing theories and methodologies used for describing socio-metabolic or economic and sociocultural processes in the Earth system by various fields and schools of thought. To illustrate the capabilities of the framework, we present an exemplary and highly stylized WEM implemented in copan:CORE that illustrates how endogenizing sociocultural processes and feedbacks such as voting on climate policies based on socially learned environmental awareness could fundamentally change macroscopic model outcomes.
机译:人体中的地球系统动力学分析明确考虑到人类社会,文化,经济和技术障碍的过程增加,以及与地球的物理,化学和生物系统中的越来越多的反馈纠缠。然而,目前的最先进的地球系统模型不代表动态人类社会,其反馈与生物果实地球系统和宏观经济综合评估模型通常只有有限的范围。本文(i)提出了构建世界地球模型的设计原则?(WEMS)为乌拉内烯的地球系统分析,即社会(世界)的模型 - 生态(地球)协调达到行星鳞片,(II )?介绍Copan:基于所提出的原则,开发,撰写和分析这些WEMS的核心开放仿真建模框架。该框架提供了模块化结构,以灵活构建和研究WEMS。这些可以含有生物物理(例如,碳循环动态),社会代谢或经济(例如,?经济增长或能源系统变化),以及社会文化过程(例如,在气候政策或改变社会规范中投票)及其反馈互动,并且它们基于基本实体类型,例如网格单元和社会系统。由此,核心使得人类系统分析的贡献能够为拟人的竞争理论和方法的贡献提供贡献所需的认知灵活性,用于描述地球系统的社会代谢或经济和社会文化过程的各个领域和学校。为了说明框架的能力,我们在Copan中提出了一个示例性和高度程度化的WEM:核心,说明了社会文化过程和反馈,例如基于社会学习的环境意识的气候政策投票的反馈可能从根本上改变宏观模型结果。

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