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开发和应用一种新的灰色动态层次分析系统(GDHAS)来评估城市生态安全。

Development and application of a new grey dynamic hierarchy analysis system (GDHAS) for evaluating urban ecological security.

机构信息

College of Environmental Science and Engineering, Nankai University, Tianjin 300071, China.

出版信息

Int J Environ Res Public Health. 2013 May 21;10(5):2084-108. doi: 10.3390/ijerph10052084.

Abstract

Selecting indicators based on the characteristics and development trends of a given study area is essential for building a framework for assessing urban ecological security. However, few studies have focused on how to select the representative indicators systematically, and quantitative research is lacking. We developed an innovative quantitative modeling approach called the grey dynamic hierarchy analytic system (GDHAS) for both the procedures of indicator selection and quantitative assessment of urban ecological security. Next, a systematic methodology based on the GDHAS is developed to assess urban ecological security comprehensively and dynamically. This assessment includes indicator selection, driving force-pressure-state-impact-response (DPSIR) framework building, and quantitative evaluation. We applied this systematic methodology to assess the urban ecological security of Tianjin, which is a typical coastal super megalopolis and the industry base in China. This case study highlights the key features of our approach. First, 39 representative indicators are selected for the evaluation index system from 62 alternative ones available through the GDHAS. Second, the DPSIR framework is established based on the indicators selected, and the quantitative assessment of the eco-security of Tianjin is conducted. The results illustrate the following: urban ecological security of Tianjin in 2008 was in alert level but not very stable; the driving force and pressure subsystems were in good condition, but the eco-security levels of the remainder of the subsystems were relatively low; the pressure subsystem was the key to urban ecological security; and 10 indicators are defined as the key indicators for five subsystems. These results can be used as the basis for urban eco-environmental management.

摘要

基于特定研究区域的特征和发展趋势选择指标,对于构建城市生态安全评估框架至关重要。然而,很少有研究关注如何系统地选择代表性指标,且缺乏定量研究。我们开发了一种创新的定量建模方法,称为灰色动态层次分析系统(GDHAS),用于指标选择和城市生态安全的定量评估。接下来,我们开发了一种基于 GDHAS 的系统方法,用于全面和动态地评估城市生态安全。该评估包括指标选择、驱动力-压力-状态-影响-响应(DPSIR)框架构建和定量评估。我们将这种系统方法应用于评估天津的城市生态安全,天津是中国典型的沿海特大城市和工业基地。该案例研究突出了我们方法的关键特征。首先,通过 GDHAS 从 62 个备选指标中选择 39 个代表性指标作为评估指标体系。其次,根据选定的指标建立 DPSIR 框架,并对天津的生态安全进行定量评估。结果表明:2008 年天津的城市生态安全处于警戒水平但不够稳定;驱动力和压力子系统状况良好,但其余子系统的生态安全水平相对较低;压力子系统是城市生态安全的关键;五个子系统中有 10 个指标被定义为关键指标。这些结果可作为城市生态环境管理的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7424/3709366/625deb4266e3/ijerph-10-02084-g001.jpg

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