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Cavity formation

Laboratory studies on combustion cavity growth in lignite coal blocks in the context of underground coal gasification

  • Carbonization
  • cavity
  • Cavity formation
  • Cavity growth
  • Cavity volume
  • Coal
  • Coal combustion
  • Coal gasification
  • Coal industry
  • combustion
  • Combustion reactions
  • Computational fluid dynamics
  • correlation
  • empirical analysis
  • Empirical correlations
  • Experimental observation
  • Feed flow rate
  • flow velocity
  • Gas generators
  • Gas producers
  • Laboratory scale
  • Laboratory studies
  • lignite
  • Lignite coal
  • Mass transport
  • Operating parameters
  • Operation time
  • Shape and size
  • Temperature field
  • Underground coal gasification
  • Velocity profiles
Publication Type  Journal Article
Year of Publication  2010
Authors  Daggupati, S.; Mandapati, R.N.; Mahajani, S.M.; Ganesh, A.; Mathur, D.K.; Sharma, R.K.; Aghalayam, P.
Journal Title  Energy
Volume  35
Issue  6
Pages  2374 - 2386
Journal Date  2010///
Key Words  Cavity formation; Cavity growth; Cavity volume; Combustion reactions; Empirical correlations; Experimental observation; Feed flow rate; Laboratory scale; Laboratory studies; Lignite coal; Mass transport; Operating parameters; Operation time; Shape and siz
Notes  

Export Date: 5 July 2011Source: Scopus

URL  http://www.scopus.com/inward/record.url?eid=2-s2.0-77953128688&partnerID=40&md5=42aa56c271136d6b7ad6a51525814a6d
DOI  10.1016/j.energy.2010.02.015
Citation Key  3132

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