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March 21, 2026Energies2 citationsOpen Access

Field Tests and Applicability Analysis of an Underground Cooling Installation Powered by Ventilation Air Methane (VAM)

RHRobert HildebrandtMSMarcin SmołkaWPWodzisław Piekarczyk

Key Points

  • The aim is to assess the effectiveness of a cooling system powered by ventilation air methane in underground coal mines.
  • Conducted field tests in an experimental mine to evaluate system performance.
  • Developed a cooling system using a catalytic reactor and absorption chiller.
  • Analyzed climatic conditions to forecast thermal performance.
  • Achieved a coefficient of performance (COP) of 0.3–0.4 based on methane chemical energy.
  • Demonstrated potential for the installation to support existing mine cooling systems.
  • Identified air volume flow as a limiting factor for installation efficiency.

Abstract

Modern underground hard coal mines encounter increasing natural hazards as mining depth increases, including, in particular, significant rises in both methane and thermal hazards. Thermal threats are common in Polish mines, especially in areas where the primary rock temperature exceeds 40 °C. To provide an energy source for cooling systems and reduce methane emissions from ventilation air, a system based on a catalytic reactor combined with an absorption chiller was developed. Field tests conducted at the experimental mine Barbara in Mikołów (Poland) indicate that a COP based on methane chemical energy can reach a level of 0.3–0.4. An application analysis was conducted based on the results of cross-sectional forecasts of climatic conditions (thermal conditions forecasts). The results indicate the potential for using this installation as a supporting component of mine cooling systems. An important factor that may limit the efficiency of the installation is the volume flow of the exhaust air stream. It is estimated that, in countries where, as in Poland, air temperature is the primary criterion for assessing thermal safety, the results of the analysis would be similar.

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Cite This Study

Hildebrandt et al. (2026) studied this question.

synapsesocial.com/papers/69be36e36e48c4981c676309https://doi.org/10.3390/en19061511
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