4.7 Article

Prediction of Floor Water Inrush: The Application of GIS-Based AHP Vulnerable Index Method to Donghuantuo Coal Mine, China

Journal

ROCK MECHANICS AND ROCK ENGINEERING
Volume 44, Issue 5, Pages 591-600

Publisher

SPRINGER WIEN
DOI: 10.1007/s00603-011-0146-5

Keywords

Floor water inrush; China; Multi-seam coal mine; Risk analysis; Vulnerability index method; AHP; GIS

Funding

  1. China National Natural Science Foundation [40572149, 40772162]
  2. China National Scientific and Technical Support Program [2007BAK24B01, 2006BAB16B04]
  3. 973 Program [2006CB202205]
  4. State Key Laboratory of Coal Resources and Mining Safety

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Floor water inrush represents a geohazard that can pose significant threat to safe operations for instance in coal mines in China and elsewhere. Its occurrence is controlled by many factors, and the processes are often not amenable to mathematical expressions. To evaluate the water inrush risk, the paper proposes the vulnerability index approach by coupling the analytic hierarchy process (AHP) and geographic information system (GIS). The detailed procedures of using this innovative approach are shown in a case study in China (Donghuantuo Coal Mine). The powerful spatial data analysis functions of GIS was used to establish the thematic layer of each of the six factors that control the water inrush, and the contribution weights of each factor was determined with the AHP method. The established AHP evaluation model was used to determine the threshold value for each risk level with a histogram of the water inrush vulnerability index. As a result, the mine area was divided into five regions with different vulnerability levels which served as general guidelines for the mine operations. The prediction results were further corroborated with the actual mining data, and the evaluation result is satisfactory.

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