确保可靠性:随着气候变化,得克萨斯州电厂维护的最佳时间是什么时候?

Q1 Social Sciences
Hugh Daigle , Joshua D. Rhodes , Aidan Pyrcz , Michael E. Webber
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引用次数: 0

摘要

我们分析了德克萨斯州电力可靠性委员会(ERCOT)的数据,以评估肩峰季节--即春季和秋季能源使用总量和需求峰值最低的 45 天,通常用于电厂维护--的发生率是否随时间发生变化。在 1996-2022 年期间,肩季节的开始时间从未早于 3 月下旬,也从未晚于 10 月中旬,与总度日的最小值非常吻合。在 1959-2022 年的气温记录中,春季的最低度日从 3 月初提前到 2 月初,而秋季则从 11 月初推迟到 11 月中旬。到 2040 年代中期,气温升高可能会导致这些最低度日数在 12 月或 1 月合并为一个年度最低度日数,而在这个时间段,冬季暴风雪可能会带来创纪录的 1 天能源使用量和峰值需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ensuring reliability: What is the optimal time for power plant maintenance in Texas as the climate changes?

We analyzed data for the Electric Reliability Council of Texas (ERCOT) to assess shoulder seasons – that is, the 45 days of lowest total energy use and peak demand in the spring and fall typically used for power plant maintenance – and whether their occurrence has changed over time. Over the period 1996–2022, the shoulder seasons never started earlier than late March nor later than mid-October, corresponding well with the minimum of total degree days. In the temperature record 1959–2022, the minimum in degree days in the spring moved earlier, from early March to early February, and in the fall moved later, from early to mid-November. Warming temperatures might cause these minima in degree days to merge into a single annual minimum in December or January by the mid‐2040s, a time when there is a non-trivial risk of 1-day record energy use and peak demand from winter storms.

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来源期刊
Electricity Journal
Electricity Journal Business, Management and Accounting-Business and International Management
CiteScore
5.80
自引率
0.00%
发文量
95
审稿时长
31 days
期刊介绍: The Electricity Journal is the leading journal in electric power policy. The journal deals primarily with fuel diversity and the energy mix needed for optimal energy market performance, and therefore covers the full spectrum of energy, from coal, nuclear, natural gas and oil, to renewable energy sources including hydro, solar, geothermal and wind power. Recently, the journal has been publishing in emerging areas including energy storage, microgrid strategies, dynamic pricing, cyber security, climate change, cap and trade, distributed generation, net metering, transmission and generation market dynamics. The Electricity Journal aims to bring together the most thoughtful and influential thinkers globally from across industry, practitioners, government, policymakers and academia. The Editorial Advisory Board is comprised of electric industry thought leaders who have served as regulators, consultants, litigators, and market advocates. Their collective experience helps ensure that the most relevant and thought-provoking issues are presented to our readers, and helps navigate the emerging shape and design of the electricity/energy industry.
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