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光伏发电技术
★ 5.0
将太阳能引入农业:一种康科德葡萄农光系统的跨学科设计与分析
Bringing solar to agriculture: An interdisciplinary design and analysis of a Concord grape agrivoltaic system
| 作者 | Henry J.Williamsa1 · Yipu Wanga1 · Bo Yuan · Miguel Ignacio Gomez · Justine Vanden Heuvel · K. Max Zhang |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 393 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | An interdisciplinary approach to propose Concord grape agrivoltaics. |
语言:
中文摘要
摘要 农光系统(Agrivoltaics)为将太阳能光伏(PV)与农业生产相结合提供了机遇,但针对特定作物的挑战和运行约束仍缺乏深入研究。本研究在美国伊利湖葡萄酒产区开发并评估了一种康科德葡萄农光系统,该地区葡萄园正面临经济压力以及与太阳能开发之间的土地利用冲突。研究从垂直式、跟踪式和架空式光伏系统出发,利用农光辐射工具(Agrivoltaic Radiation Tool, ART)模拟葡萄藤光合光子通量密度(PPFD)的降低程度以及因遮荫导致的发电量损失。模拟结果表明,垂直式设计年均葡萄藤PPFD损失为0.47%,跟踪式为1.6%,而架空式系统最高可达25%。基于上述结果,选择垂直式和跟踪式设计进一步开展计算流体动力学(CFD)分析,以评估气流相互作用。CFD结果显示,垂直安装的光伏板对葡萄藤冠层内的气流无显著影响,而跟踪系统在水平位置时相比仅种植葡萄的情景可能增强气流。考虑到跟踪系统在实际操作中的运行限制,最终选定垂直式设计进行经济性评估,结果揭示了太阳能开发商的关键财务指标(14年投资回收期)以及种植者的经济效益(每年每英亩减少经济损失408美元)。敏感性分析量化了发电量(±8.8%)和PPFD(±5.0%)的不确定性,确保模型在不同葡萄园条件下均具有稳健性。这些发现为康科德葡萄农光系统的可行性提供了定量证据,展示了在保护葡萄种植区文化传承的同时实现太阳能双重利用的协同潜力。
English Abstract
Abstract Agrivoltaics presents an opportunity to integrate solar photovoltaics (PV) with agricultural production, but crop-specific challenges and operational constraints remain underexplored. This study develops and evaluates a Concord grape agrivoltaic system in the Lake Erie American Viticulture Area, where vineyards face economic pressures and land use conflicts with solar development. Starting with vertical, tracking, and overhead PV systems , we model photosynthetic photon flux density (PPFD) reduction in grapevines and power generation losses from shading using the Agrivoltaic Radiation Tool (ART). Based on these results, which indicate 0.47 % annual grapevine PPFD loss for vertical designs, 1.6 % for tracking, and up to 25 % for the overhead systems, the vertical and tracking designs are selected for further computational fluid dynamics (CFD) analysis to evaluate airflow interactions. CFD results show that vertical panels do not significantly impact airflow through the grapevine canopy, and that tracking systems in horizontal position may enhance airflow compared to a vine-only scenario. Considering operational constraints for tracking systems, the vertical design is selected for an economic evaluation to reveal key financial outcomes for solar developers (14-year payback period) and growers ($408 reduction in financial losses per acre annually). A sensitivity analysis quantifies uncertainty in power generation (±8.8 %) and PPFD (±5.0 %), ensuring model robustness across different vineyard conditions. These findings provide quantitative evidence for the feasibility of Concord grape agrivoltaics, demonstrating a synergistic opportunity for dual-use solar while preserving cultural heritage in grape-growing regions.
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SunView 深度解读
该葡萄园农光互补系统研究对阳光电源SG系列光伏逆变器和智能运维方案具有重要应用价值。垂直和跟踪式光伏系统设计需要高精度MPPT优化技术应对复杂遮挡场景,SG逆变器的多路MPPT可有效提升发电效率。研究中0.47%-25%的光照损失量化数据为iSolarCloud平台开发农光互补专用监控算法提供依据,可实时优化跟踪角度平衡发电与作物光照需求。CFD气流分析启发逆变器散热设计在农业环境的适应性改进,14年投资回报期验证了分布式光伏经济模型的准确性,为阳光电源拓展农业光伏市场提供技术路径参考。