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Estimation of stresses and properties of coal-rock mass based on inverse problem solution

  • L. A. Nazarova
  • , L. A. Nazarov
  • , M. Vandamme
  • , R. I. Rodin
  • Russian Academy of Sciences
  • Université Paris-Est
  • Institute of Coal of the Siberian Branch of the RAS

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The paper describes a new method of interpreting the "canister test" data for the quantitative estimation of gas-kinetic parameters of coal bed based on the developed model of gas emission from coal sample placed in a sealed container. The model accounts for grain-size composition of the sample, initial gas content S, as well as coefficients of diffusion D and mass transfer β. The inverse coefficient problem is formulated to find S, D and β from the data of pressure measurements in the sealed container. It is shown that the inverse problem is uniquely solvable if the pressure is dropped during the experiment. The method has been tested using the data from an underground coal mine in the Kuznetsk Basin. Based on the poroelastic model of a coal bed and Khristianovich's concept about origination and evolution of the filtration zone F in the neighborhood of a degassing borehole the authors considered the corresponding direct problem on rock mass geomechanical state. It was offered interpretation method for data on pressure measurements in a plugged degassing borehole allows evaluation of the diffusion coefficient, the horizontal component of natural stress field and parameters of F. The related inverse problem of the mixed type is formulated, and the cost function is constructed. The analysis using synthetic input data has shown that the cost function has a number of local minimums arranged on the same straight line, one of the minimums being the inverse problem solution.

Original languageEnglish
Title of host publication13th ISRM International Congress of Rock Mechanics
Editors Hassani, Hadjigeorgiou, Archibald
PublisherInternational Society for Rock Mechanics
Pages1-11
Number of pages11
ISBN (Electronic)9781926872254
Publication statusPublished - 1 Jan 2015
Externally publishedYes
Event13th ISRM International Congress of Rock Mechanics 2015 - Montreal, Canada
Duration: 10 May 201513 May 2015

Publication series

Name13th ISRM International Congress of Rock Mechanics
Volume2015- MAY

Conference

Conference13th ISRM International Congress of Rock Mechanics 2015
Country/TerritoryCanada
CityMontreal
Period10/05/1513/05/15

Keywords

  • Canister test
  • Coal bed
  • Cost function
  • Diffusion and mass transfer coefficients
  • Gas content
  • Geomechanics
  • Inverse problem
  • Natural stress
  • Rock mass

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