面向舟山群岛的土地利用遥感分类系统构建与应用

Development and Application of Remote Sensing-based Land-use Classification System for the Zhoushan Archipelago

  • 摘要: 现有土地利用遥感分类系统多面向陆地区域,未考虑复杂海洋环境和周期性潮汐影响,导致系统在海岛区域的适用性较差和信息提取精度不高。舟山群岛作为全国最大的岛屿群,是保护海洋环境、拓展蓝色经济空间的重要平台。研究针对舟山群岛地理单元的复杂性,从陆海耦合视角和长时序研究需求出发,充分考虑地理环境特殊性和土地利用方式特点,构建了面向舟山群岛的土地利用遥感分类系统。首先,基于30 m分辨率Landsat遥感影像构建土地利用遥感分类系统;其次,融合多特征参数,并引入随机森林算法开展土地利用信息提取;最后,分析舟山群岛土地利用时空格局演变特征。研究结果表明:(1)面向舟山群岛的土地利用遥感分类系统综合考虑周期性潮汐淹没及水陆交互作用特征,能够较为准确地表征舟山群岛自然资源禀赋与土地利用特征。(2)融合多特征参数的随机森林算法能够准确提取舟山群岛1985—2024年5年间隔的土地利用遥感信息,平均总体精度、Kappa系数分别为93.56%、0.93。(3)1985—2024年,舟山群岛陆地总面积由1 274.42 km2增至1 456.57 km2,年均增加约4.67 km2。城市化导致建设用地急剧扩张,由47.62 km2增至426.50 km2,扩张至1985年的约8.96倍。(4)1985年,盐田与建设用地规模相当,产业转型导致盐田面积下降率高达94.88%,几乎损失殆尽。渔业经济推动了养殖塘面积的大幅增长,从8.08 km2增至35.09 km2,扩张至1985年的约4.34倍。沿海围垦、盐沼植被和光滩受人类活动影响显著,阶段性变化特征明显。海水和光滩是沿海围垦的主要来源,围填海新增的土地资源主要用于建设用地、耕/草地和养殖塘,分别累计增加了119.12、29.04、17.66 km2。综上可知,研究构建的分类系统能够较好地表征舟山群岛土地利用格局的自然属性和人工属性,可为区域土地资源的可持续利用与管理提供支持,并为更加全面、深入的海岛土地利用研究提供科学参考。

     

    Abstract: Current land use classification systems using remote sensing are primarily oriented to terrestrial areas, without accounting for the complex marine environment and periodic tidal influences, leading to poor applicability and low information extraction accuracy in island areas. As the largest island group in China, Zhoushan Archipelago serves as a vital platform for safeguarding oceanic ecosystems and expanding the scope of the blue economy. Focused on the complexity of the geographical units of Zhoushan Archipelago and proceeding from the perspective of land-sea coupling and the needs of long-term research, the remote sensing classification system for Zhoushan Archipelago was constructed while fully considered the particularity of the geographical environment and the characte-ristics of land use patterns. First, a land use remote sensing classification system was constructed based on 30 m resolution Landsat remote sensing images. Second, multiple feature parameters were integrated, and a random forest algorithm was introduced to extract land use information. Finally, the spatiotemporal evolution patterns of land use in the Zhoushan Archipelago were analyzed. The research results showed that: (1) By incorporating the characte-ristics of periodic tidal inundation and land-water interactions, the land-use remote-sensing classification system developed for the Zhoushan Archipelago can more accurately represent the natural resource endowments and land-use patterns of the region. (2) Integrating multi-feature parameters, the random forest algorithm(RFA) demonstrated strong performance in land use information retrieval from remote sensing data of the Zhoushan Archipelago between 1985 and 2024, achieving an average overall accuracy of 93.56% and a Kappa coefficient of 0.93. (3) Du-ring 1985-2024, the cumulative land area of the Zhoushan Archipelago increased from 1 274.42 km2 to 1 456.57 km2, with an annual increment of approximately 4.67 km2. Urbanization triggered dramatic expansion of construction land, increasing from 47.62 km2 to 426.50 km2, expanding to approximately 8.96 times its 1985 level. (4) The area of salt pans was comparable to that of construction land in 1985. However, due to industrial transformation, the area of salt pans declined by up to 94.88%, resulting in near total loss. Driven by the fishery economy, aquaculture ponds areas experienced substantial expansion, from 8.08 km2 to 35.09 km2, expanding to approximately 4.34 times its 1985 level. Coastal reclamation, salt marsh vegetation, and bare intertidal flats have been significantly affected by human activities, exhibiting pronounced stage-specific variations. Coastal seawater and bare intertidal flats were the primary sources for coastal reclamation. The newly reclaimed land was predominantly used for construction land, cropland/grassland, and aquaculture ponds, with cumulative increases of 119.12 km2, 29.04 km2, and 17.66 km2, respectively. In conclusion, the classification system developed in this study can effectively characterize the natural and anthropogenic attributes of the land-use pattern in the Zhoushan Archipelago, thereby supporting the sustainable utilization and management of regional land resources, and providing a scientific refe-rence for more comprehensive and in-depth island land use research.

     

/

返回文章
返回