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Combination of indexing system method with analytical hierarchy process to assess the environmental risks in gas-transfer pipe lines.

机译:将索引系统方法与层次分析法相结合,以评估输气管道的环境风险。

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摘要

In the present research, combination of Indexing System Method with Analytical Hierarchy Process has been applied to assess the environmental risks of gas transfer pipe lines. By this process, classification and qualification of the numerous types of environmental risks would be accessible. Sum Index and Leak Impact Index indicate risk probability and risk severity, respectively. In this regard, total environmental risk is calculated based on multiplication of total risk probability in risk severity. Analytical hierarchy process is applied to evaluate the factors because of differences existed in the total effective level of these factors. For this purpose, Tasooj-Salmas gas transfer pipe line, 24 inch in size and 42 km in length, was selected to study the environmental risks. Using geographical information system, investigated risks have been classified throughout the pipe line route. Results showed that 46%, 48%, 2% and 4% of the total studied pipe line is exposed to the high risk level (5467-6054), average risk level (6055-6641), low risk level (6642-7228) and very low risk level (>7228), respectively. Vicinity of the southern part of the studied site with National Park of Orumieh Lake is considered as the most vital ecological concern of this study. However, 15 km (18-33 of 220 km) of the total pipe line has been located at 5 km from the considered biosphere reserve. Among the most crucial risk factors of the present project are Third Party Damage Potential, as well as natural potentials (soil displacement).
机译:在本研究中,将索引系统方法与层次分析法相结合已用于评估输气管道的环境风险。通过此过程,将可以对多种类型的环境风险进行分类和鉴定。总和指数和泄漏影响指数分别表示风险概率和风险严重性。在这方面,总环境风险是根据总风险概率与风险严重程度的乘积计算得出的。由于这些因素的总有效水平存在差异,因此应用层次分析法来评估这些因素。为此,选择了Tasooj-Salmas长度为24英寸,长度为42 km的输气管道来研究环境风险。使用地理信息系统,已将调查的风险分类为整个管道路线。结果表明,研究管道总数的46%,48%,2%和4%处于高风险水平(5467-6054),平均风险水平(6055-6641),低风险水平(6642-7228)和极低的风险水平(> 7228)。研究地点南部与Orumieh湖国家公园相邻的地区被认为是这项研究最重要的生态问题。但是,总管道的15公里(220公里的18-33)位于距离所考虑的生物圈保护区5公里处。在本项目中,最关键的风险因素是第三方破坏潜力以及自然潜力(土壤位移)。

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