Mining Publication: Use of CFD Modeling to Study Inert Gas Injection into a Sealed Mine Area
Original creation date: February 2010
Since the promulgation of the MINER Act and the follow-up changes to the regulations governing mine seal construction and maintenance, mine operators must be acutely aware of the atmosphere in sealed mine areas and prepared to deploy control technologies when the conditions are warranted. On Site Gas Systems in Newington, Connecticut was awarded a contract by the National Institute for Occupational Safety and Health (NIOSH) to construct a novel in-mine nitrogen (N2) generation plant using pressure swing adsorption (PSA) technology. PSA technology utilizes carbon molecular sieve material and pressure to adsorb oxygen (O2) molecules while allowing N2 molecules to pass through the sieve material. The prototype PSA unit was tested at the NIOSH Safety Research Coal Mine (SRCM) where a 62,000 ft3 area of the mine was rendered inert during a series of two tests. The resultant data were then used to construct a CFD simulation of both injection tests. In addition, O2 depletion and gas leakage rates were quantified in the model and were compared to actual values. Once the model was calibrated, the sealed mine area was doubled and simulations were made with various injection rates and injection site locations to determine the impact on the time needed to render this area inert. This paper presents an overview of the PSA plant, the details of the gas injection tests and CFD modeling work.
Authors: MA Trevits, L Yuan, MR Thibou, G Hatch
Conference Paper - February 2010
NIOSHTIC2 Number: 20036468
2010 SME Annual Meeting and Exhibit, February 28 - March 3, Phoenix, Arizona, preprint 10-207. Littleton, CO: Society for Mining, Metallurgy, and Exploration, Inc., 2010; :1-8
See Also
- Advances in Grid-Based Numerical Modeling Techniques for Improving Gas Management in Coal Mines
- Degasification System Selection for U.S. Longwall Mines Using an Expert Classification System
- Design of Underground Mine Seals Under Explosive Events
- Effects of Weak Bands on Pillar Stability in Stone Mines: Field Observations and Numerical Model Assessment
- Elastic and Shear Moduli of Coal Measure Rocks Derived from Basic Well Logs Using Fractal Statistics and Radial Basis Functions
- Inertization Technologies
- Pillar Strength and Design Methodology for Stone Mines
- Remote Mine Fire Suppression Technology
- Safe and Economical Inerting of Sealed Mine Areas
- Stochastic Modeling of Gob Gas Venthole Production Performances in Active and Completed Longwall Panels of Coal Mines
- Page last reviewed: 9/21/2012
- Page last updated: 9/21/2012
- Content source: National Institute for Occupational Safety and Health, Mining Program