在大型供水网络中使用太阳能进行灌溉:对西班牙南部六个灌溉系统的基准研究

IF 8 Q1 ENERGY & FUELS
Maaike van de Loo, Emilio Camacho Poyato, Juan Antonio Rodríguez Díaz
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引用次数: 0

摘要

能源需求的增加和能源成本的上升导致大型灌溉系统越来越多地采用太阳能,特别是在西班牙南部。这项基准研究评估了六个大型灌溉系统,评估了太阳能整合及其与农业水管理实践的相互作用。结果表明,虽然太阳能占总能源消耗的比例在0.40至0.57之间,但由于24小时按需灌溉计划,太阳能的充分利用仍然受到限制,因此需要在非太阳能时段依赖传统能源。尽管能源消耗有所减少,但在全球市场波动的推动下,大多数系统的能源成本大幅上升,增幅在15%至302%之间。出售多余的太阳能是一种潜在的经济救济,但监管限制往往抑制这种做法。即使可行,盈利能力也会受到动态能源价格的挑战。该研究强调了创新解决方案的必要性,包括电池和抽水蓄能等能源储存技术,以及提高太阳能利用的系统调度调整。更广泛地采用浮动太阳能电池板等技术和ECO20等认证可以进一步支持能源主权和可持续性。这项研究强调了优化太阳能灌溉的挑战和机遇,为系统管理者和政策制定者在农业向可再生能源过渡的过程中提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using solar energy for irrigation in large water distribution networks: A benchmark study about six irrigation systems in the south of Spain
Increased energy requirements and rising energy costs have led to a growing adoption of solar energy in large irrigation systems, especially in southern Spain. This benchmark study evaluates six large-scale irrigation systems, assessing solar energy integration and its interplay with agricultural water management practices. Results indicate that while the ratio of solar energy to total energy consumption ranges from 0.40 to 0.57 across systems with large solar plants of several MWs, full solar energy utilization remains constrained due to the 24-h on-demand irrigation schedules, necessitating reliance on conventional energy during non-solar hours. Despite reductions in energy consumption, in most systems energy costs rose significantly, with increases between 15 % and 302 %, driven by global market fluctuations. Selling excess solar energy presents a potential economic relief, yet regulatory restrictions often inhibit this practice. Even when feasible, profitability is challenged by dynamic energy prices. The study highlights the need for innovative solutions, including energy storage technologies like batteries and pumped hydropower, and systemic scheduling adjustments to enhance solar energy use. Broader adoption of technologies such as floating solar panels and certifications like ECO20 could further support energy sovereignty and sustainability. This research underscores the challenges and opportunities in optimizing solar energy for irrigation, offering valuable insights for system managers and policymakers navigating the transition to renewable energy in agriculture.
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来源期刊
Energy nexus
Energy nexus Energy (General), Ecological Modelling, Renewable Energy, Sustainability and the Environment, Water Science and Technology, Agricultural and Biological Sciences (General)
CiteScore
7.70
自引率
0.00%
发文量
0
审稿时长
109 days
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