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Bridging the gap: Do fast-reacting fossil technologies facilitate renewable energy diffusion?

机译:缩小差距:快速反应的化石技术是否有助于可再生能源的扩散?

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The diffusion of renewable energy in the power system implies high supply variability. Lacking economically viable storage options, renewable energy integration is possible thanks to the presence of modem mid-merit fossil-based technologies, which act as back-up capacity. This paper discusses the role of modem fossil-based power generation technologies in supporting renewable energy investments. We study the deployment of these two technologies conditional on all other drivers in 26 OECD countries between 1990 and 2013. We show that moving from the first to the third quartile of the distribution of modem fossil technologies is associated with an increase in yearly renewable energy investment of between 6 and 14 kW per thousand people, on average and ceteris paribus. This is a sizeable effect, considering that average yearly renewable capacity addition in our sample are around 12 kW per thousand people. These findings are robust to different econometric specifications, various definitions of modern fossil technologies and are stronger for wind, which is more intermittent and for which the mismatch between supply and demand is more marked. Our analysis points to the substantial indirect costs of renewable energy integration and highlights the complementarity of investments in different generation technologies for a successful decarbonization process.
机译:可再生能源在电力系统中的扩散意味着高的电源可变性。缺乏经济可行的存储选项,由于存在基于现代中度化石的技术(可作为后备能力),因此可再生能源整合成为可能。本文讨论了基于现代化石的发电技术在支持可再生能源投资中的作用。我们研究了这两种技术在1990年至2013年间在OECD 26个国家中的所有其他驱动因素的部署情况。我们表明,从现代化石技术分布的第一四分位数到第三四分位数与每年可再生能源投资的增加相关平均每千人6至14千瓦之间考虑到我们样本中的年平均可再生容量增加量约为每千人12 kW,这是一个相当大的影响。这些发现对不同的计量经济学规范,现代化石技术的各种定义都具有鲁棒性,并且对于风而言更强,因为风更为断断续续,供需之间的失衡更为明显。我们的分析指出了可再生能源整合的巨大间接成本,并强调了成功进行脱碳过程的不同发电技术投资的互补性。

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