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Role of end-use technologies in long-term GHG reduction scenarios developed with the BET model

机译:利用BET模型开发的最终用途技术在减少温室气体的长期情景中的作用

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In this study, we develop a new integrated assessment model called the BET model (Basic Energy systems, Economy, Environment, and End-use Technology Model). It is a multi-regional, global model based on Ramsey's optimal growth theory and includes not only traditional end-use technologies but also advanced end-use technologies such as heat-pump water heaters and electric vehicles. Using the BET model, we conduct simulations and obtain the following results. (1) Advanced end-use technologies have an important role in containing carbon prices as well as GDP losses when GHG (greenhouse gas) constraints are stringent. (2) Electrification based on energy services progresses rapidly in scenarios with stringent GHG constraints. This is because electricity can be supplied by various methods of non-fossil power generation, and advanced end-use technologies can drastically improve energy-to-service efficiencies. The BET's results indicate the importance of analyses that systematically combine environmental constraints, end-use technologies, supply energy technologies, and economic development.
机译:在这项研究中,我们开发了一种新的综合评估模型,称为BET模型(基本能源系统,经济,环境和最终使用技术模型)。它是基于Ramsey最佳增长理论的多区域全球模型,不仅包括传统的最终使用技术,还包括先进的最终使用技术,例如热泵热水器和电动汽车。使用BET模型,我们进行模拟并获得以下结果。 (1)在温室气体(GHG)限制严格的情况下,先进的最终使用技术在控制碳价以及GDP损失方面具有重要作用。 (2)在温室气体排放严格的情况下,基于能源服务的电气化进展迅速。这是因为可以通过各种非化石能源发电方式来供电,并且先进的最终使用技术可以大大提高能源到服务的效率。 BET的结果表明了将系统限制,最终用途技术,供应能源技术和经济发展系统地结合起来的分析的重要性。

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