分析能源经济系统低碳转型的动力系统模型

Chengquan Zhang , Xifeng Wu , Sijia Zhao , Hatef Madani , Jin Chen , Yu Chen
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引用次数: 0

摘要

在这项研究中,我们开发了一个只显示一个稳定解决方案(汇)的动态系统模型,以分析各种因素对低碳转型的影响,包括政策含义、能源消耗和能源容量。我们的目标是根据该模型的模拟结果提供政策建议,该模型再现了分布式能源系统的五个代表性场景。我们还将我们的模拟结果与从一组基于代理的模型中获得的结果进行了比较。我们的分析表明,实现低碳转型的最有效方法是将两种方法结合起来:通过某些市场规则限制高碳能源的使用和减少能源消耗。基于不损害经济的相图,我们进一步获得了不同的低碳转型路径。对于发达国家来说,最可行的办法是直接提高市场监管比例。对于技术和能源条件中等、能源消耗相对较高的国家或地区,如一些东欧国家,降低能源消耗,然后实施低碳能源激励政策是最佳策略。最后,对于技术和能源条件较低的国家或地区,如非洲国家,主要任务是提高能源能力,以增加低碳转型的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A dynamical system model to analyze the low carbon transition in energy-economic system

In this study, we develop a dynamic system model that exhibits only one stable solution (sink) to analyze the impact of various factors on low-carbon transition, including policy implications, energy consumption, and energy capacity. Our aim is to provide policy recommendations based on the simulation results of the model, which reproduces five representative scenarios of distributed energy systems. We also compare our simulation results with those obtained from a set of agent-based models. Our analysis shows that the most effective way to achieve a low-carbon transition is by combining two approaches: limiting the use of high-carbon energy sources through certain market rules and reducing energy consumption. We further obtain different paths of low-carbon transition based on phase diagrams that do not harm the economy. For developed countries, the most feasible approach is to directly increase the market regulation ratio. For countries or regions with middle-level technical and energy conditions and relatively high energy consumption, such as some Eastern European countries, reducing energy consumption and then implementing low-carbon energy incentives policy is the best strategy. Finally, for countries or regions with lower technical and energy conditions, such as African countries, the main task is to improve energy capacity to increase the possibility of a low-carbon transition.

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