基于增强UCCLN (EUCCLN)模型的人类活动对城市生态系统影响监测

N. .. Tehrani, F. Farhanj, M. Janalipour
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引用次数: 0

摘要

为了拥有一个可持续发展的城市,人类对城市生态系统的压力不应超过一定的阈值,这是由城市承载能力概念定义的。本研究的主要目的是利用空间指标监测人类活动对德黑兰市生态系统的影响所造成的环境压力。根据增强的城市承载能力载荷数(EUCCLN)模型,首先从开放获取的数据库中收集最相关的指标,包括卫星产品、空气质量监测站、市政统计年鉴和相关文章。然后,将这些指标分为空气、交通和废物三类。然后,利用层次分析法确定各指标的重要系数。确定了它们的承载力度表,最后计算了荷载数。结果表明:空气、交通和废弃物指标分别有100%、4.55%和40.91%的地区达到极高至临界程度。1区、3区、6区、7区、8区、12区和14区(占22个区的31.82%)的最终人为压力度为极高至临界,其余区为高至极高。因此,德黑兰所有22个区的总体压力已达到或超过其最大阈值程度。
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Monitoring the Impacts of Human Activities on Urban Ecosystems Based on the Enhanced UCCLN (EUCCLN) Model
To have a sustainable city, human pressures on urban ecosystems should not exceed certain thresholds, which are defined by the urban carrying capacity concept. The main goal of this research was to monitor environmental pressures caused by the impacts of human activities on the ecosystem of Tehran city using spatial indicators. According to the enhanced Urban Carrying Capacity Load Number (EUCCLN) model, first, the most related indicators were collected from the open access databases, including satellite products, air quality monitoring stations, municipality statistical yearbook, and a related article. Then, the indicators were classified into air, traffic, and waste groups. Afterwards, the importance coefficients of all indicators were specified using the analytical hierarchy process. Their degree of carrying capacity tables were determined, and finally, load numbers were calculated. The results showed that 100%, 4.55%, and 40.91% of all districts had very high-to-critical degrees in terms of air, traffic, and waste indicators, respectively. The final human-induced pressure degrees were very high-to-critical in Districts 1, 3, 6, 7, 8, 12, and 14 (31.82% out of 22 districts) and high-to-very high in the rest of them. Therefore, the overall pressure in all 22 districts of Tehran had reached or exceeded its maximum threshold degree.
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