A biocompatible hybrid approach for the selection of gas drainage methods in coal mines based on the Best-Worst Method and Analytic Network Process

IF 0.7 Q4 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Amir Jafarpour, Mehdi Najafi, Ali Dabagh
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引用次数: 0

Abstract

Abstract Methane drainage is one of the main steps in underground coal mining projects. The operation of methane extraction from coal mines/seams is important from the safety, economic, and technical points of view. Selecting the appropriate method for methane drainage is very difficult, and if the method is not chosen correctly, it will lead to environmental problems. The relationship between different influencing factors, parameters, and methods (and how they affect) is significant in choosing the method of gas drainage. In the current study, a hybrid algorithm is presented based on an Analytic Network Process (ANP) and a method based on the mathematical model (BWM). In the presented approach, the weighting of criteria by the BWM method and ranking of alternatives based on effective criteria is performed using the network analysis-based method. “Operating and capital costs” were the most effective criteria, and “in-situ stress” was the least effective factor in the selection process. The results show that the “post ‐ drainage method using cross-measure boreholes” was ranked first with the highest score (0.249). Applying the selected method in the Tabas coal mine (case study) indicates that the proposed algorithm is compatible with real-world conditions and can have various applications in multi-criteria decision-making problems.
基于最佳-最差法和分析网络过程的煤矿瓦斯抽放方法选择的生物兼容混合方法
摘要 煤层气抽放是地下煤矿开采项目的主要步骤之一。从安全、经济和技术角度来看,从煤矿/煤层中抽取甲烷的操作非常重要。选择合适的甲烷抽放方法非常困难,如果方法选择不当,将导致环境问题。不同影响因素、参数和方法之间的关系(以及它们之间的影响方式)对选择瓦斯抽放方法具有重要意义。本研究提出了一种基于分析网络过程(ANP)和基于数学模型(BWM)的混合算法。在所提出的方法中,使用基于网络分析的方法,通过 BWM 方法对标准进行加权,并根据有效标准对备选方案进行排序。在选择过程中,"运营和资本成本 "是最有效的标准,而 "原位应力 "是最无效的因素。结果表明,"使用交叉测量钻孔的后排水法 "以最高得分(0.249)排名第一。将所选方法应用于塔巴斯煤矿(案例研究)表明,所提出的算法与现实条件相兼容,可在多标准决策问题中广泛应用。
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来源期刊
Journal of Sustainable Mining
Journal of Sustainable Mining Earth and Planetary Sciences-Geology
CiteScore
1.50
自引率
10.00%
发文量
20
审稿时长
16 weeks
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