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A hybrid energy-economy model for global integrated assessment of climate change, carbon mitigation and energy transformation

机译:全球气候变化,碳减排和能源转化综合评估的混合能源-经济模型

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This paper introduces the design of the CSIRO variant of the Global Trade and Environment model (GTEM-C). GTEM-C is a hybrid model that combines the top-down macroeconomic representation of a computable general equilibrium model with the bottom-up engineering details of energy production. The model features detailed accounting for global energy flows that are embedded in traded energy goods, and it offers a unified framework to analyse the energy-carbon-environment nexus. As an illustrative example, we present simulation results on global energy transformation under the Intergovernmental Panel on Climate Change's representative carbon pathways 4.5 and 8.5. By testing the model's sensitivity to the relevant parameter, we find that the pace of electrification will significantly contain the spiking of carbon prices because electricity can be produced from carbon-free or less carbon-intensive technologies. The decoupling of energy use and carbon footprint, due to the uptake of clean electricity technologies, such as nuclear, wind, solar, and carbon capture and storage, allows the world to maintain high level of energy consumption, which is essential to economic growth. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了全球贸易和环境模型(GTEM-C)的CSIRO变体的设计。 GTEM-C是一种混合模型,将可计算的一般均衡模型的自上而下的宏观经济表示与能源生产的自下而上的工程细节结合在一起。该模型具有对嵌入贸易能源产品中的全球能源流进行详细核算的功能,并提供了一个统一的框架来分析能源-碳-环境关系。作为说明性示例,我们在政府间气候变化专门委员会的代表性碳途径4.5和8.5下,介绍了全球能源转化的模拟结果。通过测试模型对相关参数的敏感性,我们发现电气化的步伐将极大地抑制碳价格的飙升,因为可以使用无碳或低碳强度技术来发电。由于采用了核电,风能,太阳能和碳捕集与封存等清洁电力技术,能源使用和碳足迹的脱钩使世界能够维持高水平的能源消耗,这对经济增长至关重要。 (C)2015 Elsevier Ltd.保留所有权利。

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