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Multiscale analysis of the urbanization pattern of the Phoenix metropolitan landscape of USA: Time, space and thematic resolution

机译:美国凤凰城大都市景观城市化格局的多尺度分析:时间,空间和主题分辨率

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Investigating the ecological consequences of urbanization require knowledge of land-cover dynamics. Quantification of land-use/land-cover change in Phoenix, Arizona during the period of 1985-2005 using landscape metrics computed from Landsat-derived maps revealed temporal patterns of landscape composition and configuration. With accelerated urbanization the landscape as a whole became more fragmented ecologically and more complex compositionally and geometrically. However, the majority of individual patches became more compact in shape. Urban land covers, especially xeric residential, increased substantially and the desert decreased by 20%. Spatial and thematic resolution of data was shown to have large effects on the analysis of land-cover pattern. Our results, while agreeing in general with previously reported scaling relations with respect to changing spatial grain and extent, showed that scaling relations are also robust and consistent across thematic resolutions and time periods. Some metrics behaved unpredictably and some exhibited scale-free behavior. Compositional metrics, such as patch density, diversity, evenness, and largest patch index, were well correlated with vegetative cover, its spatial variation, and population density. Many of these correlations exhibited hump-shaped patterns with respect to increasing grain size, indicating a characteristic scale at approximately 500-1000m. By simultaneously manipulating spatial and thematic resolutions, the importance of the Modifiable Area Unit Problem in relating landscape patterns to vegetation and socio-economic variables was also demonstrated. Additionally, highly variable desert vegetation due to precipitation variability poses a challenge for accurately quantifying urbanization pattern in and environments. Choosing appropriate spatial, temporal and thematic resolutions is essential in meeting this challenge.
机译:调查城市化的生态后果需要了解土地覆盖的动态。 1985-2005年期间,亚利桑那州凤凰城的土地利用/土地覆被变化定量分析使用了由Landsat衍生的地图计算得出的景观指标,揭示了景观组成和配置的时空格局。随着城市化进程的加快,整个景观在生态上变得更加分散,在组成和几何上也变得更加复杂。但是,大多数单个贴片的形状变得更加紧凑。城市土地覆盖,特别是干燥的住宅,大幅增加,沙漠减少了20%。数据的空间和主题分辨率对土地覆盖格局的分析有很大影响。我们的结果总体上与先前报道的关于改变空间粒度和范围的缩放比例关系一致,但结果表明,缩放比例关系在整个主题分辨率和时间范围内也是可靠且一致的。一些指标的行为无法预测,而某些指标则表现出无标度的行为。组成指标,例如斑块密度,多样性,均匀性和最大斑块指数,与营养覆盖率,其空间变异和种群密度密切相关。这些相关性中的许多都表现出与晶粒尺寸增加有关的驼峰形图案,表明特征尺度约为500-1000m。通过同时处理空间和主题分辨率,还展示了可修改面积单位问题在将景观格局与植被和社会经济变量相关联方面的重要性。此外,由于降水变化而引起的高度变化的沙漠植被对准确量化城市环境中的城市化格局提出了挑战。选择适当的空间,时间和主题分辨率对于应对这一挑战至关重要。

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