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Mathematical Simulation of the Gas-Particles Reaction Flows in Incineration of Metal-Containing Waste.


DE2004828318

Publication Date 2002
Personal Author Ojovan, M. I.; Klimov, V. L.; Karlina, O. K.
Page Count 12
Abstract A quasi-equilibrium approach for thermodynamic calculation of chemical composition and properties of metal-containing fuel combustion products has been developed and used as a part of the mathematical model of heterogeneous reacting flow which carry burning and/or evaporating particles. By using of this approach, the applicable mathematical model has been devised, which allows defining the change in chemical composition and thermal characteristics of combustion products along the incineration chamber. As an example, the simulation results of the reacting flow of magnesium-sodium nitrate-organic mixture are presented. The simulation results on the gas phase temperature in the flow of combustion products are in good agreement with those obtained experimentally.
Keywords
  • Radioactive waste processing
  • Incineration
  • Chemical composition
  • Combustion
  • Combustion products
  • Metals
  • Design
  • Mathematical models
  • Mixtures
  • Simulation
  • Thermodynamics
  • Waste management
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors SIA Radon, Moscow (Russia).; Department of Energy, Washington, DC.
Supplemental Notes Sponsored by Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200508
Mathematical Simulation of the Gas-Particles Reaction Flows in Incineration of Metal-Containing Waste.
Mathematical Simulation of the Gas-Particles Reaction Flows in Incineration of Metal-Containing Waste.
DE2004828318

  • Radioactive waste processing
  • Incineration
  • Chemical composition
  • Combustion
  • Combustion products
  • Metals
  • Design
  • Mathematical models
  • Mixtures
  • Simulation
  • Thermodynamics
  • Waste management
  • Technical Information Center Oak Ridge Tennessee
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