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Constant elasticity of substitution functions for energy modeling in general equilibrium integrated assessment models: a critical review and recommendations

机译:一般均衡综合评估模型能源建模替代功能的恒定弹性:批判性审查和建议

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摘要

Applying constant elasticity of substitution (CES) functions in general equilibrium integrated assessment models (GE-IAMs) for the substitution of technical factor inputs (e.g., replacing fossil fuels) fails to match historically observed patterns in energy transition dynamics. This method of substitution is also very sensitive to the structure of CES implementation (nesting) and parameter choice. The resulting methodology-related artifacts are (i) the extension of the status quo technology shares for future energy supply relying on fossil fuels with carbon capture, biomass, and nuclear; (ii) monotonically increasing marginal abatement costs of carbon; and (iii) substitution of energy with non-physical inputs (e.g., knowledge and capital) without conclusive evidence that this is possible to the extent modeled. We demonstrate these issues using simple examples and analyze how they are relevant in the case of four major CES-based GE-IAMs. To address this, we propose alternative formulations either by opting for carefully applied perfect substitution for alternative energy options or by introducing dynamically variable elasticity of substitution as a potential intermediate solution. Nevertheless, complementing the economic analysis with physical modeling accounting for storage and resource availability at a high resolution spatially and temporally would be preferable.
机译:在一般均衡综合评估模型(GE-IAM)中替换技术因素输入(例如,更换化石燃料)的常量替换(GE-IAM)的恒定弹性未能匹配能量转换动态中的历史观察模式。这种替代方法对CES实现(嵌套)和参数选择的结构也非常敏感。相关的方法相关工件是(i)延长现状技术股份,以依赖于具有碳捕获,生物量和核的化石燃料的未来能源供应; (ii)单调增加碳的边际减排成本; (iii)通过非物理投入(例如,知识和资本)替代能量而无需确凿的证据,即建模的范围。我们使用简单的示例展示这些问题,并分析它们在四个基于CES的GE-IAM的情况下如何相关。为了解决这一点,我们通过选择备选能源选择的精心应用完美的替代或通过作为潜在的中间溶液引入动态可变弹性来提出替代制剂。尽管如此,在空间和时间下,使用物理建模核算具有物理建模的经济分析,是优选的。

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