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Optimal energy mix for transitioning from fossil fuels to renewable energy sources - The case of the Mexican electricity system

机译:从化石燃料向可再生能源过渡的最佳能源组合-以墨西哥电力系统为例

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The establishment of an optimal mix of renewable energy sources (RES) is pertinent to creating low-carbon energy systems with adequate load-following capabilities. Transitioning from a fossil fuel-based energy system to a system based on RES is a process in which the RES penetration must be guided by specific targets in the medium term. Moreover, the relative contributions from RES and fossil fuels in every stage of the transition process must be identified through clear optimization criteria. In this article, we propose a methodology denoted the Minimum Total Mix Capacity (MTMC) to determine the optimal mix of RES and fossil fuels in an electricity system by taking into account the hourly values of RES production and electricity demand. The MTMC methodology is applied to the Mexican electricity system, which greatly depends on fossil fuels. The Mexican Congress mandated that the fossil fuel-based electricity generation be limited to 65% by the year 2024, 60% by 2035 and 50% by 2050. We use the MTMC methodology to investigate the potential for RES integration into the Mexican electricity system by constructing three scenarios (low, mid and high biomass) to achieve the 2024 target and analyze the system's response to varying contributions of wind and solar power production to the scenarios. The minimum complementary capacity based on fossil fuels that is needed to cover the demand without electricity imports is assessed to determine the total mix capacity for the transition system. Using the MTMC methodology, several combinations of biomass, wind and solar power that achieve a minimum of 35% RES electricity production are identified; however, there is only one combination that results in the minimum overall capacity, hence resulting in the optimal mix. Moreover, a domain of near-optimal mix combinations can be identified among all of the scenarios, which may also be considered as an alternative. Biomass has the highest effectiveness in terms of high RES production and the lowest required overall power generating capacity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建立可再生能源(RES)的最佳组合与创建具有足够负荷跟踪能力的低碳能源系统有关。从基于化石燃料的能源系统过渡到基于RES的系统是一个过程,其中RES的渗透必须在中期以特定目标为指导。此外,必须通过明确的优化标准来确定过渡过程中每个阶段中可再生能源和化石燃料的相对贡献。在本文中,我们提出一种称为最小总混合容量(MTMC)的方法,通过考虑RES生产和电力需求的小时值来确定电力系统中RES和化石燃料的最佳混合。 MTMC方法论已应用于墨西哥的电力系统,该系统在很大程度上取决于化石燃料。墨西哥国会要求,到2024年,将化石燃料发电量限制在65%,到2035年限制在60%,到2050年限制在50%。我们使用MTMC方法来研究RES整合到墨西哥电力系统中的潜力构建三种情景(低,中,高生物量)以实现2024年目标,并分析系统对风力和太阳能发电对情景的不同贡献的响应。评估了满足化石燃料需求(无需输入电力)所需的最小补充容量,以确定过渡系统的总混合容量。使用MTMC方法,确定了至少可实现35%RES电产量的生物质,风能和太阳能的几种组合;但是,只有一种组合会导致最小的总容量,从而导致最佳的组合。此外,可以在所有场景中识别接近最佳混合组合的域,这也可以视为替代方案。就高RES产生和最低要求的总发电量而言,生物质能具有最高的效率。 (C)2015 Elsevier Ltd.保留所有权利。

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