The Spatiotemporal Characteristics and Interactions between Urban Expansion and Tidal Flat Dynamics: A Case Study of Three Highly Urbanized Coastal Counties in the Southeastern United States

IF 1.6 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Chao Xu, Weibo Liu
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引用次数: 1

Abstract

Tidal flats are widely recognized as sentinels of coastal environment change, and are also the guardians for beachfront communities. As a result of urban expansion, tidal flats have increasingly received environmental pressures and the surrounding ecosystem has been functionally downgraded. However, the existing studies could not provide an effective method to identify and quantify the interactions between urban areas and tidal flats, which is essential work particularly for the coastal preservations in the United States. Aiming at this environmental crisis, we proposed an approach which quantifies the change patterns from a spatiotemporal perspective. To justify the rationality and feasibility of this approach, this study selected three highly urbanized coastal counties in the southeastern United States as the study area. We analyzed the annual dynamics during 1985~2015, and the generated spatiotemporal regularities were used to identify and quantify the correlations between urban expansion and tidal flat dynamics. This study not only justified that the coastal urban expansion could considerably damage the environment of tidal flats, but also verified an effective approach to investigate the correlations between urban expansion and tidal flat loss on a large spatiotemporal scale.
城市扩张与潮坪动态的时空特征及相互作用——以美国东南部三个高度城市化的沿海县为例
潮滩被广泛认为是海岸环境变化的哨兵,也是海滨社区的守护者。由于城市扩张,潮滩受到的环境压力越来越大,周围生态系统的功能也在下降。然而,现有的研究不能提供一种有效的方法来确定和量化城市地区与潮滩之间的相互作用,这对美国的海岸保护来说是至关重要的工作。针对这一环境危机,我们提出了一种从时空角度量化变化模式的方法。为了证明这种方法的合理性和可行性,本研究选择了美国东南部三个高度城市化的沿海县作为研究区域。通过分析1985~2015年的年际动态,利用生成的时空规律识别和量化城市扩张与潮坪动态之间的相关性。本研究不仅证明了沿海城市扩张会严重破坏潮滩环境,也验证了在大时空尺度上研究城市扩张与潮滩损失相关性的有效方法。
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来源期刊
Earth Interactions
Earth Interactions 地学-地球科学综合
CiteScore
2.70
自引率
5.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: Publishes research on the interactions among the atmosphere, hydrosphere, biosphere, cryosphere, and lithosphere, including, but not limited to, research on human impacts, such as land cover change, irrigation, dams/reservoirs, urbanization, pollution, and landslides. Earth Interactions is a joint publication of the American Meteorological Society, American Geophysical Union, and American Association of Geographers.
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