Numerical Investigation of Air Flow in Goaf While Mapping Its Flow Parameters

Author:

Janus Jakub1ORCID

Affiliation:

1. Strata Mechanics Research Institute of The Polish Sciences Academy, Reymonta 27, 30-059 Kraków, Poland

Abstract

Recent work has presented a numerical model of a longwall ventilated by a U-system, considering the real shape of an adjacent goaf in addition to parameters characterizing the distribution of porosity and permeability. Analogous distributions are used in the two-dimensional model implemented in VentZroby software. A comparison of the results of the three-dimensional flow calculations with the two-dimensional calculations can be used to verify the simpler description and evaluate the impact of simplifications on the simulation results. Air flow calculations were carried out using the selected turbulence model. The obtained results present the possibility of conducting extensive numerical calculations for flow problems in underground mines, considering more precise descriptions and the interpretation of the calculation results carried out using a simpler description.

Funder

statutory funds of the Strata Mechanics Research Institute of the Polish Sciences Academy

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference15 articles.

1. Yi, H., Kim, M., Lee, D., and Park, J. (2022). Applications of Computational Fluid Dynamics for Mine Ventilation in Mineral Development. Energies, 15.

2. Computational Fluid Dynamics (CFD) study to optimize the auxiliary ventilation system in an underground mine;Vives;DYNA,2022

3. Applying the similarity theory to model dust dispersion duringcoal-mine tunneling;Jiang;Process Saf. Environ. Prot.,2021

4. Assessment of the possibilities of using laser scanning for numerical models constructions;Janus;Trans. Strat. Mech. Res. Inst.,2015

5. Three-Dimensional Numerical Simulation of the Mass Exchange Between Longwall Headings and Goafs, in the Presence of Methane Drainage in A U-Type Ventilated Longwall;Skotniczny;Arch. Min. Sci.,2013

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