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Planning of Green Space Ecological Network in Urban Areas: An Example of Nanchang China

机译:城市绿地生态网络规划-以南昌市为例

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摘要

Green space plays an important role in sustainable urban development and ecology by virtue of multiple environmental, recreational, and economic benefits. Constructing an effective and harmonious urban ecological network and maintaining a sustainable living environment in response to rapid urbanization are the key issues required to be resolved by landscape planners. In this paper, Nanchang City, China was selected as a study area. Based on a series of landscape metrics, the landscape pattern analysis of the current (in 2005) and planned (in 2020) green space system were, respectively, conducted by using FRAGSTATS 3.3 software. Considering the actual situation of the Nanchang urban area, a “one river and two banks, north and south twin cities” ecological network was constructed by using network analysis. Moreover, the ecological network was assessed by using corridor structure analysis, and the improvement of an ecological network on the urban landscape was quantitatively assessed through a comparison between the ecological network and green space system planning. The results indicated that: (1) compared to the green space system in 2005, the planned green space system in 2020 of the Nanchang urban area will decline in both districts (Changnan and Changbei districts). Meanwhile, an increase in patch density and a decrease in mean patch size of green space patches at the landscape level implies the fragmentation of the urban green space landscape. In other words, the planned green space system does not necessarily improve the present green space system; (2) the ecological network of two districts has high corridor density, while Changnan’s ecological network has higher connectivity, but Changbei’s ecological network is more viable from an economic point of view, since it has relatively higher cost efficiency; (3) decrease in patch density, Euclidean nearest neighbor distance, and an increase in mean patch size and connectivity implied that the ecological network could improve landscape connectivity greatly, as compared with the planned green space system. That is to say, the planned ecological network would reduce landscape fragmentation, and increase the shape complexity of green space patches and landscape connectivity. As a result, the quality of the urban ecological environment would be improved.
机译:凭借多种环境,娱乐和经济利益,绿色空间在可持续城市发展和生态中扮演着重要角色。为快速的城市化建设有效和和谐的城市生态网络并维持可持续的生活环境是景观规划师需要解决的关键问题。本文选择了中国南昌市作为研究区域。基于一系列景观指标,使用FRAGSTATS 3.3软件分别对当前(2005年)和计划中(2020年)的绿地系统进行景观格局分析。根据南昌市区的实际情况,利用网络分析法构建了“一河两岸,南北双城”生态网络。此外,通过走廊结构分析对生态网络进行评估,并通过将生态网络与绿地系统规划进行比较来定量评估城市景观上的生态网络的改善。结果表明:(1)与2005年的绿地系统相比,南昌市区的2020年规划的绿地系统在两个地区(长南和昌北)都将下降。同时,在景观水平上斑块密度的增加和绿地斑块的平均斑块尺寸的减小意味着城市绿地景观的破碎化。换句话说,规划中的绿地系统并不一定会改善现有的绿地系统。 (2)两区的生态网络走廊密度高,而长南的生态网络具有较高的连通性,但从经济角度考虑,长北的生态网络具有较高的成本效益,因此更可行。 (3)斑块密度,欧几里得最近邻距离的减小以及斑块平均大小和连通性的增加暗示,与计划的绿地系统相比,该生态网络可以极大地改善景观连通性。也就是说,计划中的生态网络将减少景观破碎化,并增加绿地斑块和景观连通性的形状复杂性。结果,将改善城市生态环境的质量。

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