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Landscape Pattern Evolution and Optimization Strategy in Wuhan Urban Development Zone, China

机译:武汉城市开发区景观格局演变与优化策略

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With the rapid development of urbanization process in China, its environmental protection pressure is severely tested. So, analyzing and optimizing the landscape pattern is an important measure to ease the pressure on the ecological environment. This paper takes Wuhan Urban Development Zone as the research object, and studies its landscape pattern evolution and quantitative optimization strategy. First, remote sensing image data from 1990 to 2015 were interpreted by using Erdas software. Next, the landscape pattern index of landscape level, class level, and patch level was studied based on Fragstats. Then five indicators of ecological environment based on National Environmental Protection Standard of China were selected to evaluate the impact of landscape pattern evolution on the ecological environment. Besides, the cost distance analysis of ArcGIS was applied to simulate wildlife migration thus indirectly measuring the improvement of ecological environment quality. The result shows that the area of land for construction increased 491%. But the bare land, sparse grassland, forest, farmland, water decreased 82%, 47%, 36%, 25% and 11% respectively. They were mainly converted into construction land. On landscape level, the change of landscape index all showed a downward trend. Number of patches (NP), Landscape shape index (LSI), Connection index (CONNECT), Shannon's diversity index (SHDI), Aggregation index (AI) separately decreased by 2778, 25.7, 0.042, 0.6, 29.2%, all of which indicated that the NP, the degree of aggregation and the landscape connectivity declined. On class level, the construction land and forest, CPLAND, TCA, AI and LSI ascended, but the Distribution Statistics Core Area (CORE_AM) decreased. As for farmland, water, sparse grassland, bare land, CPLAND, TCA and DIVISION, the Patch Density (PD) and LSI descended, yet the patch fragmentation and CORE_AM increased. On patch level, patch area, Patch perimeter, Shape index of water, farmland and bare land continued to decline. The three indexes of forest patches increased overall, sparse grassland decreased as a whole, and construction land increased. It is obvious that the urbanization greatly influenced the landscape evolution. Ecological diversity and landscape heterogeneity of ecological patches clearly dropped. The Habitat Quality Index continuously declined by 14%. Therefore, optimization strategy based on greenway network planning is raised for discussion. This paper contributes to the study of landscape pattern evolution in planning and design and to the research on spatial layout of urbanization.
机译:随着中国城市化进程的迅速发展,其环保压力受到了严峻考验。因此,分析和优化景观格局是缓解生态环境压力的重要措施。本文以武汉城市开发区为研究对象,研究其景观格局演变及定量优化策略。首先,使用Erdas软件解释了1990年至2015年的遥感图像数据。接下来,基于Fragstats研究了景观水平,等级水平和斑块水平的景观格局指数。然后根据中国国家环境保护标准选择了五种生态环境指标,以评价景观格局演变对生态环境的影响。此外,利用ArcGIS的成本距离分析法模拟了野生动植物的迁徙,从而间接地衡量了生态环境质量的提高。结果表明,建设用地面积增加了491%。但是光秃的土地,稀疏的草地,森林,农田,水分别减少了82%,47%,36%,25%和11%。他们主要被转换为建设用地。在景观水平上,景观指数的变化均呈下降趋势。斑块数(NP),景观形状指数(LSI),连接指数(CONNECT),香农多样性指数(SHDI),聚集指数(AI)分别减少了2778%,25.7、0.042、0.6、29.2%,这些均表明NP,聚集度和景观连通性下降。在班级水平上,建设用地和森林,CPLAND,TCA,AI和LSI有所增加,但分布统计核心区域(CORE_AM)有所减少。至于农田,水,稀疏草地,光秃秃的土地,CPLAND,TCA和DIVISION,斑块密度(PD)和LSI下降,但斑块碎片和CORE_AM增加。在斑块水平上,斑块面积,斑块周长,水,农田和裸地的形状指数持续下降。森林斑块这三个指标总体上增加,稀疏草地总体上减少,建设用地增加。显然,城市化极大地影响了景观的演变。生态斑块的生态多样性和景观异质性明显下降。人居质量指数连续下降了14%。因此,提出了基于绿道网络规划的优化策略进行讨论。本文为规划设计中景观格局演变的研究和城市化空间布局的研究做出了贡献。

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