卫星遥感揭示江淮流域湖泊围网大幅拆除
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1.安徽大学农业生态大数据分析与应用技术国家地方联合工程研究中心;2.中国科学院南京地理与湖泊研究所;3.湖北工业大学河湖健康智慧感知与生态修复教育部重点实验室

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国家自然科学基金面上项目·(42271377) ·和云南省省市一体化专项·(202202AH210006)·联合资助


Satellite remote sensing reveals substantial decrease of enclosure aquaculture in the Yangtze-Huaihe River Basin
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1.Nanjing Institute of Geography &2.Limnology, Chinese Academy of Sciences

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    摘要:

    湖泊围网养殖是内陆淡水渔业的主要养殖方式之一,为粮食安全、就业和经济增长做出了重要贡献。然而,随着养殖规模和强度的增加,湖泊生态平衡逐渐被破坏。因此,明确湖泊围网的空间分布及其演变特征对湖泊生态保护具有重大意义。相比于实地调查,卫星遥感技术具有大尺度、可追溯性和经济性等优势,是监测湖泊围网的最佳方式。本研究基于Sentinel-1 SAR数据和U-Net模型构建了湖泊围网自动监测算法。算法在10个典型围网养殖湖泊进行了验证,分类精度均超80%。此外,本研究将该算法应用至江淮流域围网养殖湖泊监测,获取了2016-2023年江淮流域湖泊围网养殖的时空演变特征。结果表明:江淮流域共有48个湖泊(大于10km2)进行养殖活动,2016年至2023年江淮流域湖泊围网养殖面积呈现大幅减少趋势,总面积由2118.72 km2减少至462.94 km2,其中36个(约77%)湖泊已完全拆除围网。研究成果为围网拆除前后湖泊水环境和水生态的动态变化及成效评估提供了基础支撑,也为湖泊生态环境保护修复与可持续发展措施的制定提供了科学依据。

    Abstract:

    Enclosure aquaculture (EA) in lakes is one of the primary types of inland freshwater aquaculture, making significant contributions to food security, employment, and economic growth. However, with the rapid booms in EA intensity, the ecological balance of lakes is gradually being disrupted. Thus, it is crucial to profoundly understand the spatiotemporal dynamics of EA for lake ecosystem preservation and restoration. Compared to field surveys, satellite remote sensing offers advantages such as large-scale coverage, traceability, and cost-effectiveness, making it the optimal choice for monitoring lake EA. This study developed an automatic algorithm for monitoring EA based on Sentinel-1 SAR data and the U-Net model. The algorithm was validated on 10 selected typical lakes, and it achieved a classification accuracy of over 80% in all cases. Additionally, the algorithm was used for monitoring EA lakes in the Yangtze-Huaihe River Basin, providing insights into the spatiotemporal evolution of EA from 2016 to 2023. The results show that a total of 48 lakes (larger than 10 km2) in the Yangtze-Huaihe River Basin engaged in aquaculture activities. From 2016 to 2023, the area of EA in these lakes significantly decreased, with the total area shrinking from 2118.72 km2 to 462.94 km2. Among these lakes, 36 (approximately 77%) have completely removed their enclosure nets. Our findings offer crucial support for evaluating the dynamics of lake water environments and the transformation of aquatic ecosystems pre- and post-enclosure EA removal. Additionally, they offer a scientific basis for formulating measures aimed at lake ecosystem restoration, environmental protection, and sustainable development.

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  • 收稿日期:2024-09-30
  • 最后修改日期:2025-06-19
  • 录用日期:2025-07-09
  • 在线发布日期: 2025-07-09
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