CN 11-5366/S     ISSN 1673-1530
“风景园林,不只是一本期刊。”
钱丽源, (西班牙)恩瑞克·巴特约·杜朗尼, 周斯翔. 地中海西北海岸线生态系统研究:多维遥感反演土地利用时空演化规律[J]. 风景园林, 2022, 29(11): 124-130. DOI: 10.14085/j.fjyl.2022.11.0124.07
引用本文: 钱丽源, (西班牙)恩瑞克·巴特约·杜朗尼, 周斯翔. 地中海西北海岸线生态系统研究:多维遥感反演土地利用时空演化规律[J]. 风景园林, 2022, 29(11): 124-130. DOI: 10.14085/j.fjyl.2022.11.0124.07
QIAN Liyuan, (ESP) Enric Batlle Durany, ZHOU Sixiang. Research on Ecosystem of the Northwestern Mediterranean Coastline: Multidimensional Remote Sensing Inversion of Spatio-Temporal Land Use Evolution Patterns[J]. Landscape Architecture, 2022, 29(11): 124-130. DOI: 10.14085/j.fjyl.2022.11.0124.07
Citation: QIAN Liyuan, (ESP) Enric Batlle Durany, ZHOU Sixiang. Research on Ecosystem of the Northwestern Mediterranean Coastline: Multidimensional Remote Sensing Inversion of Spatio-Temporal Land Use Evolution Patterns[J]. Landscape Architecture, 2022, 29(11): 124-130. DOI: 10.14085/j.fjyl.2022.11.0124.07

地中海西北海岸线生态系统研究:多维遥感反演土地利用时空演化规律

Research on Ecosystem of the Northwestern Mediterranean Coastline: Multidimensional Remote Sensing Inversion of Spatio-Temporal Land Use Evolution Patterns

  • 摘要: 海岸线生态系统是沿海城市关键的生态安全屏障,如何科学高效地揭示区域海岸线生态系统承载力的变化规律是当前研究所面临的关键性科学问题。以地中海西北海岸线为研究对象,以景观生态学景观格局(斑块、廊道、基质)为理论支撑,建立了60年土地利用数据集,运用遥感技术精准且高效地揭示了多维时间以及地域尺度下的地中海西北海岸线生态系统土地利用演化规律,从技术层面实现了多维度联动解析的突破性创新;同时通过应用景观生态学理论,对海岸线生态系统监控理论体系进行探索。通过对大尺度全球海岸线森林碳储量生态安全现状模型进行评估,揭示了沿海城市基础设施建设规模的缩减对于海岸线生态系统恢复的重大意义;对中小尺度地中海西北海岸线以及代表城市菲格拉斯市和瓦伦西亚市用地性质时空演化模型进行规律推演,得出自然复原力与周边环境具有紧密正相关性。因此必须加强对海岸线生态系统连通性的监测,在不可避免的旅游驱动下,为未来中国海岸线土地管控与建设的优化、沿海城市生态系统的自然复原以及抗灾能力的提升,提供科学、准确、高效的实践理论与技术支撑。

     

    Abstract: Coastline ecosystems are the key ecological security barriers for coastal cities. How to scientifically and efficiently reveal the changing patterns of the carrying capacity of a regional coastline ecosystem is a key scientific problem for the current research. With the northwest Mediterranean coastline as the research object, the 60-year land use data set is established with the theoretical support of landscape ecology landscape patterns (patches, corridors and substrates), and the land use evolution pattern of the Northwest Mediterranean coastline ecosystem at multidimensional time and geographical scales is accurately and efficiently revealed by remote sensing technology. At the same time, the theory of landscape ecology is applied to explore a new theoretical system of shoreline ecosystem monitoring. By assessing the ecological security of forest carbon stocks in the global coastline at a large scale, the significance of the reduction of infrastructure construction in coastal cities for the restoration of the coastline ecosystem is revealed; by extrapolating the spatial and temporal evolution models of the global coastline, the northwestern Mediterranean coastline and the representative cities of Figueras and Valencia in this corridor at a small and medium scale, to conclude that there exists the natural strong positive correlation between resilience and the surrounding environment. This suggests that the necessity of strengthening the monitoring of the connectivity of the coastline ecosystem, to provide scientific, accurate, and efficient theoretical and technical support for the optimization of land control and construction along the Chinese coastline, the natural recovery of the coastal urban ecosystem, and the improvement of disaster resilience in the future, driven by the inevitable tourism.

     

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