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  • An experimental facility and methodology of pulverized coal thermokinetic properties determination with the use of mathematical modeling is described in this paper. Thermokinetic properties as a mean for better understanding the nature of combustion process can be determined by an experiment using a Drop Tube Test Facility (DTTF). The test provides conditions occurring in a pulverized coal fired boiler by emulated oxygen concentration, temperature and reaction gas speed. The test presented in the paper was built recently at the Energy Research Center. Experimental data acquired from the tests are used in mathematical modeling using the code Fluent.
  • An experimental facility and methodology of pulverized coal thermokinetic properties determination with the use of mathematical modeling is described in this paper. Thermokinetic properties as a mean for better understanding the nature of combustion process can be determined by an experiment using a Drop Tube Test Facility (DTTF). The test provides conditions occurring in a pulverized coal fired boiler by emulated oxygen concentration, temperature and reaction gas speed. The test presented in the paper was built recently at the Energy Research Center. Experimental data acquired from the tests are used in mathematical modeling using the code Fluent. (en)
Title
  • Experimental measuring and CFD modeling of pulverized coal burnout in drop tube
  • Experimental measuring and CFD modeling of pulverized coal burnout in drop tube (en)
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  • Experimental measuring and CFD modeling of pulverized coal burnout in drop tube
  • Experimental measuring and CFD modeling of pulverized coal burnout in drop tube (en)
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  • RIV/61989100:27650/10:10224820!RIV11-MSM-27650___
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  • P(1M06059), P(ED0036/01/01), S
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  • 258308
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  • RIV/61989100:27650/10:10224820
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  • pulverized coal; combustion; drop tube; modeling (en)
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  • [09B7890F2FFD]
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  • Bojko, Marian
  • Horák, Jiří
  • Paluska, Radim
http://localhost/t...ganizacniJednotka
  • 27650
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