DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEM

Coal seam gas is one of the most significant energy resources in unconventional gas fields. The identification of influencing parameters and methane drainage assessment are, thus, a prime geotechnical focus for all potential methane drainage projects. In methane drainage operations of coal seams, ma...

Full description

Bibliographic Details
Main Authors: Mehdi Najafi, Ramin Rafiee
Format: Article
Language:English
Published: Faculty of Mining, Geology and Petroleum Engineering 2019-01-01
Series:Rudarsko-geološko-naftni Zbornik
Subjects:
Online Access:https://hrcak.srce.hr/file/332030
_version_ 1797207327595560960
author Mehdi Najafi
Ramin Rafiee
author_facet Mehdi Najafi
Ramin Rafiee
author_sort Mehdi Najafi
collection DOAJ
description Coal seam gas is one of the most significant energy resources in unconventional gas fields. The identification of influencing parameters and methane drainage assessment are, thus, a prime geotechnical focus for all potential methane drainage projects. In methane drainage operations of coal seams, many factors, such as natural factors and operational factors affect the drainage efficiency. In this paper, a new coal seam methane drainageability index (CMDI) is introduced for pre-drainage techniques in a working mine. In this approach, seventeen parameters are considered as the main factors affecting the methane drainage form coal seam, and the interaction matrix based on the fuzzy rock engineering system (FRES), which analyzes the interrelationship between the parameters affecting methane drainage activities, are used to study coal seam methane drainageability. Since the value of interaction in the RES method is not unique, the fuzzy system is used to minimize subjectivity of the weights which are computed in the RES method. The Tabas coal mine (Iran) was selected as a case study and the proposed index was used to rank the C1 seam in this mine. It was observed that the methane drainageability index could suitably predict the potential of the methane drainage of coal seam. The newly proposed index can be used as a basis for decision-making when uncertainties about the evaluation of the parameters affect the methane drainage of a coal seam and reduce the risk of methane drainage projects.
first_indexed 2024-04-24T09:21:09Z
format Article
id doaj.art-2daa64b80ae241acac20d4e6e4157645
institution Directory Open Access Journal
issn 0353-4529
1849-0409
language English
last_indexed 2024-04-24T09:21:09Z
publishDate 2019-01-01
publisher Faculty of Mining, Geology and Petroleum Engineering
record_format Article
series Rudarsko-geološko-naftni Zbornik
spelling doaj.art-2daa64b80ae241acac20d4e6e41576452024-04-15T15:49:22ZengFaculty of Mining, Geology and Petroleum EngineeringRudarsko-geološko-naftni Zbornik0353-45291849-04092019-01-01344334410.17794/rgn.2019.4.4DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEMMehdi Najafi0Ramin Rafiee1Department of Mining and Metallurgical Eng., Yazd University, Safayieh, P.O. Box: 89195-741, Yazd, Iran. Email: mehdinajafi@yazd.ac.ir, https://orcid.org/0000-0002-1609-3702Faculty of Mining Eng., Petroleum and Geophysics, Shahrood University of Technology, Iran, RaminRafiee@Shahroodut.ac.irCoal seam gas is one of the most significant energy resources in unconventional gas fields. The identification of influencing parameters and methane drainage assessment are, thus, a prime geotechnical focus for all potential methane drainage projects. In methane drainage operations of coal seams, many factors, such as natural factors and operational factors affect the drainage efficiency. In this paper, a new coal seam methane drainageability index (CMDI) is introduced for pre-drainage techniques in a working mine. In this approach, seventeen parameters are considered as the main factors affecting the methane drainage form coal seam, and the interaction matrix based on the fuzzy rock engineering system (FRES), which analyzes the interrelationship between the parameters affecting methane drainage activities, are used to study coal seam methane drainageability. Since the value of interaction in the RES method is not unique, the fuzzy system is used to minimize subjectivity of the weights which are computed in the RES method. The Tabas coal mine (Iran) was selected as a case study and the proposed index was used to rank the C1 seam in this mine. It was observed that the methane drainageability index could suitably predict the potential of the methane drainage of coal seam. The newly proposed index can be used as a basis for decision-making when uncertainties about the evaluation of the parameters affect the methane drainage of a coal seam and reduce the risk of methane drainage projects.https://hrcak.srce.hr/file/332030methane drainage rock engineering system fuzzy system coal seam unconventional gas Tabas coal mine
spellingShingle Mehdi Najafi
Ramin Rafiee
DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEM
Rudarsko-geološko-naftni Zbornik
methane drainage
 rock engineering system
 fuzzy system
 coal seam
 unconventional gas
 Tabas coal mine
title DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEM
title_full DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEM
title_fullStr DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEM
title_full_unstemmed DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEM
title_short DEVELOPMENT OF A NEW INDEX FOR METHANE DRAINAGEABILITY OF A COAL SEAM USING THE FUZZY ROCK ENGINEERING SYSTEM
title_sort development of a new index for methane drainageability of a coal seam using the fuzzy rock engineering system
topic methane drainage
 rock engineering system
 fuzzy system
 coal seam
 unconventional gas
 Tabas coal mine
url https://hrcak.srce.hr/file/332030
work_keys_str_mv AT mehdinajafi developmentofanewindexformethanedrainageabilityofacoalseamusingthefuzzyrockengineeringsystem
AT raminrafiee developmentofanewindexformethanedrainageabilityofacoalseamusingthefuzzyrockengineeringsystem