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风电变流技术
★ 5.0
绘制并表征美国现有风力涡轮机机群的视觉影响
Mapping and characterizing the visual impacts of the existing US wind turbine fleet
| 作者 | Michael Gleaso · Anthony Lopez · Marie River |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 378 卷 |
| 技术分类 | 风电变流技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | The existing wind turbine fleet of the contiguous US is assessed for visual impacts. |
语言:
中文摘要
摘要:几十年来,风力涡轮机的视觉影响一直是美国(US)风电开发持续关注的问题,并且至今仍是导致项目延误和取消的主要原因之一。虽然通常针对单个项目在局部尺度上进行视觉影响评估,但目前仍缺乏对全美范围内视觉影响地理格局的全面认识。本文对美国本土连续地区(CONUS)现有的陆上风力涡轮机机群进行了视觉影响评估。该评估结合地理信息系统(GIS)与三维模拟方法,综合考虑了决定已安装涡轮机视觉影响程度的关键因素。结果表明,尽管在美国本土已部署约70,000台风力涡轮机,累计陆上风电装机容量超过144吉瓦,但从受影响土地面积、人口以及敏感视觉资源所占比例来看,其视觉影响总体非常有限。然而,视觉影响并非均匀分布:人们在少数特定自然环境中集中体验到较大影响,这些环境主要包括平原、草原和沙漠。最后,我们发现,尽管风电开发密度的增加始终会导致更大比例的土地面临视觉影响,但并不总是意味着更多比例的人口会受到影响。这些发现表明,迄今为止,美国本土地区的风能视觉影响总体上得到了较好的缓解,但也凸显出有必要更深入地理解最受影响自然环境中景观敏感性及个体对风力涡轮机的感知问题。
English Abstract
Abstract Visual impacts of wind turbines have been a persistent concern for wind energy development in the United States (US) for decades and remain a major source of project delays and cancellations. Assessments of visual impacts are frequently performed at a local scale for individual projects, but a comprehensive understanding of broader geographic patterns in visual impacts across the US is lacking. This paper presents a visual impact assessment of the existing land-based wind turbine fleet of the contiguous United States (CONUS). The assessment combines geographic information systems and 3D simulation methods to account for key factors driving the visual magnitude of impacts from the installed turbines. The results indicate that, despite the deployment of approximately 70,000 turbines and over 144 gigawatts of land-based wind in the CONUS, the visual impacts are very small when measured as a proportion of land area, population, and sensitive visual resources. Nonetheless, visual impacts are not evenly distributed: people experience a concentrated share in a small number of natural settings, primarily including plains, prairies, and deserts. Finally, we find that although increased density of wind development consistently leads to visual impacts across a greater proportion of land, it does not always lead to impacts to a greater share of the population. These findings suggest that visual impacts from wind energy are generally well-mitigated across the CONUS to date but also highlight the need for a deeper understanding of landscape sensitivity and individual perceptions of wind turbines in the most heavily impacted natural settings.
S
SunView 深度解读
该研究揭示美国陆上风电视觉影响集中于平原、草原和荒漠等特定地貌,对阳光电源风电变流器产品布局具有参考价值。研究表明风电密度增加不一定扩大人口影响面,启示我们在风光储一体化项目中,可通过优化ST储能系统与风电变流器的协同配置,在视觉敏感区域采用更紧凑的设备布局和智能化运维方案,利用iSolarCloud平台进行地理信息集成分析,实现发电效率与环境友好的平衡,为北美市场风电项目提供差异化解决方案。