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光伏发电技术 储能系统 地面光伏电站 ★ 5.0

关于能源产出与水资源保护的渠道架设光伏系统实验性能分析

An experimental performance analysis of canal-mounted photovoltaic systems regarding energy production and water conservation

作者 Ali Canbaz · Yakup Karakoyun · Hasan Uzmus
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 299 卷
技术分类 光伏发电技术
技术标签 储能系统 地面光伏电站
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A comparative analysis of CM-PV with ground-based PV was conducted experimentally.
语言:

中文摘要

摘要 传统的地面安装光伏(PV)系统面临诸多挑战,包括土地资源稀缺以及在较高运行温度下性能下降的问题。渠道架设光伏(CM-PV)系统通过利用现有的输水渠道基础设施,不仅提升了热效率,还减少了水分蒸发,在干旱和缺水地区这一优势尤为重要。然而,目前文献中关于CM-PV系统的实证研究仍较为有限,尤其是在实际应用和运行约束方面的研究更为不足。本研究旨在评估CM-PV系统在炎热干旱地区的实际运行环境下,相较于传统地面安装光伏组件在能源效率和水资源保护方面的能力。实验测定了不同倾角(8°、23°和38°)下光伏板表面温度、发电效率及水分蒸发量。结果表明,CM-PV组件的表面温度最高可降低6.33°C,平均降低4.2°C,相较于地面安装组件显著降低了温度,从而提高了能源转换效率。安装光伏板的遮蔽渠道相比开放渠道表现出更低的蒸发速率;具体而言,在8°倾角下,水分蒸发量由10升减少至6升。较小的倾角使光伏板更接近水面,增强了冷却效果并进一步提升系统性能。尽管实验数据证实了CM-PV系统在能源生产和水资源管理方面的双重优势,但仍存在若干挑战,如长期耐久性、与不同类型渠道几何结构的整合难度以及经济可行性问题。本研究提供了重要的实证数据以弥补当前研究的不足,并支持CM-PV系统作为实现可持续能源生产与水资源节约双重目标的潜在解决方案。

English Abstract

Abstract Traditional ground-mounted photovoltaic (PV) systems encounter considerable obstacles, including land scarcity and performance decline at elevated operating temperatures. Canal-mounted photovoltaic (CM-PV) systems have significant benefits by leveraging existing canal infrastructure, improving thermal efficiency, and mitigating water evaporation—an increasingly pressing concern in dry and water-scarce areas. Nonetheless, empirical investigations on CM-PV systems are limited in the literature, especially regarding practical application and operational constraints. This research seeks to assess the energy efficiency and water conservation capabilities of CM-PV systems in comparison to conventional ground-mounted PV panels under actual working settings inside a hot and arid area. Experiments were performed to assess panel surface temperatures, energy efficiency, and water evaporation at various tilt angles (8°, 23°, and 38°). CM-PV panels demonstrated surface temperatures that were up to 6.33 °C lower and, on average, 4.2 °C lower than ground-mounted panels, leading to enhanced energy efficiency. Shaded canals equipped with photovoltaic panels shown reduced evaporation rates relative to open canals; specifically, at an 8° tilt, water evaporation decreased from 10 to 6 L. Reduced tilt angles increased closeness to the water surface, hence enhancing cooling and performance. Although data illustrate the benefits of CM-PV systems in energy and water management, obstacles persist, such as long-term durability, integration into diverse canal geometries, and cost-effectiveness. This study offers substantial empirical data to address these deficiencies and supports the potential of CM-PV systems as a dual-benefit approach for sustainable energy and water conservation.
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SunView 深度解读

该运河光伏研究对阳光电源SG系列逆变器和智能运维系统具有重要价值。CM-PV系统通过水体冷却使组件温度降低4-6°C,可显著提升发电效率,这为SG逆变器的MPPT算法优化提供了新场景数据。建议结合iSolarCloud平台开发针对水上光伏的温度-功率模型,实现精准预测性维护。同时,该双重效益模式(发电+节水)可拓展至农业灌溉渠道场景,与储能系统ST系列结合,构建农光互补智慧能源解决方案,特别适用于干旱缺水地区的可持续发展需求。