首页> 外文期刊>American journal of engineering and applied sciences >New Approach in Application of the AHP–Fuzzy TOPSIS Method in Mineral Potential Mapping of the Natural Bitumen (Gilsonite): A Case Study from the Gilan-e-Gharb Block, the Kermanshah, West of Iran
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New Approach in Application of the AHP–Fuzzy TOPSIS Method in Mineral Potential Mapping of the Natural Bitumen (Gilsonite): A Case Study from the Gilan-e-Gharb Block, the Kermanshah, West of Iran

机译:AHP&Ndash应用的新方法;天然沥青(Gilsonite)矿物潜在映射中的模糊Topsis方法:伊朗西部吉兰 - e-Gharb块的案例研究

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The Gilan-e-Gharb block is known as a prospective area for hydrocarbon resources in the form of oil, gas in deep potential and natural bitumen (Gilsonite) on the surface. Natural bitumen is not clearly detectable by geochemical or geophysical methods. Hereupon, identifying high potential areas for further exploration, attempted with the help of AHP-Fuzzy and TOPSIS methods. The comprehensive database of geological and geostructural records, satellite imagery analysis by remote sensing and mine indexes counted as the inputs for this method. First, the lithological unit as the main mineralization hosts determined with respect to the dominant geological structures as a factor of controlling natural bitumen placement (fold, fracture and faults) in the Gilan-e-Gharb block. The Gachsaran, Asmari, Pabdeh and Gurpi Formations identified as the most important lithological units for mineralization. Placement and distribution of natural bitumen mineralization in the form of mine indexes are added to the geology database. Finally, we assigned appropriate weights to applied information layers using Analytical Hierarchy Processing (AHP) based on knowledgeable information and field studies to synthesize exploratory data. Then, we used the FTOPSIS method to define the Positive Ideal Solution (FPIS, A+) that allows maximizing the beneficial characteristics and minimizing the impediment characteristics and the Negative Ideal Solution (FNIS, A-) that minimizes the beneficial characteristics and maximizes the impediment characteristics. This method, as a new approach in the exploration of minerals with a shortage of data, is applicable to other mineral deposits.
机译:Gilan-E-Gharb块被称为油,气体的气体形式的烃资源的前瞻性区域和表面上的天然沥青(Gilsonite)。地球化学或地球物理方法不明确检测天然沥青。在此,识别有关进一步探索的高潜在区域,请在AHP模糊和TOPSIS方法的帮助下尝试。地质和地产结构记录的综合数据库,遥感和矿山指标的卫星图像分析计为此方法的输入。首先,岩性单元作为主要的矿化宿主相对于显性地质结构确定,作为控制吉兰-E-Gharb块中的天然沥青放置(折叠,断裂和断层)的因素。 Gachsaran,Asmari,Pabdeh和Gurpi形成被确定为矿化最重要的岩性单位。在地质数据库中添加了矿索引形式的天然沥青矿化的放置和分布。最后,我们根据知识渊博的信息和现场研究分配了使用分析层次处理(AHP)来应用信息层的适当权重,以合成探索数据。然后,我们使用FTOPSIS方法来定义积极的理想解决方案(FPI,A +),其允许最大化有益特征,并最小化阻抗特性和负面理想溶液(FNI,A-),以最大限度地减少有益特性并最大化障碍特性。这种方法,作为探索数据缺乏数据的矿物质的新方法,适用于其他矿物沉积物。

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