Influence of filtration heat transfer on parameters and conditions for ignition of coal-water fuel particles

被引:0
作者
S. V. Syrodoy
V. V. Salomatov
机构
[1] National Research Tomsk Polytechnic University,
[2] Kutateladze Institute of Thermophsyics SB RAS,undefined
来源
Thermophysics and Aeromechanics | 2019年 / 26卷
关键词
coal-water fuel; ignition; filtration flow; intrinsic heat and mass transfer; ignition delay time;
D O I
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中图分类号
学科分类号
摘要
The paper describes a theoretical study on the influence of filtration of a mixture of gaseous products of pyrolysis and water vapor on the dynamic of ignition of coal-water fuel particles under conditions of high temperature heating. The developed mathematical model offers simulation of the process of ignition of coal-water fuel droplets under conditions close to the furnace space (characterized by intense radiation-convective heating) in typical boilers. Comparisons of experimental data (found previously) and simulation data on the ignition delay time (tign) demonstrate good compliance. Simulation results show that filtration of water vapor and volatiles is a significant factor (influence up to 40 %) affecting the characteristics and conditions of ignition of coal-water fuel droplets. The higher velocity of the vapor-gas mixture flow through the porous structure of the fuel particle results in a longer ignition delay. The effect of using the “simplified” model of filtration heat transfer on the prognostic estimates of coal-water fuel ignition is analyzed. It is demonstrated that using of rather simple models for filtration heat transfer does not bring any significant errors in calculating the ignition delay time.
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页码:745 / 760
页数:15
相关论文
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  • [1] Longwell JP(1995)Coal: energy for the future Progress in Energy and Combustion Sci. 21 269-360
  • [2] Rubin ES(2004)Composite water-containing fuels from coals and petroleum products Solid Fuel Chemistry 38 40-50
  • [3] Wilson J(2018)The efficiency of heat transfer through the ash deposits on the heat exchange surfaces by burning coal and coal-water fuels J. Energy Institute 91 1091-1101
  • [4] Gorlov EG(2014)Flow behavior of high-temperature flue gas in the heat transfer chamber of a pilot-scale coal-water slurry combustion furnace Particuology 17 114-124
  • [5] Syrodoy SV(2014)Pilot-scale investigation on slurrying, combustion, and slagging characteristics of coal slurry fuel prepared using industrial waste liquid Applied Energy 115 309-319
  • [6] Kuznetsov GV(2011)Combustion of coal-water suspensions Fuel 90 865-877
  • [7] Gutareva NY(1988)The contribution of radiation to the ignition of a confined turbulent coal-water slurry diffusion flame Combustion Sci. and Technology 58 77-95
  • [8] Salomatov VV(2017)Numerical simulation of ignition in pulverized coal combustion with detailed chemical reaction mechanism Fuel 190 136-144
  • [9] Zhang Y(2007)Theoretical study of the combustion of coal-water fuel droplets. Part I: Heating step Gorenie i Plasmokhimiya 5 178-188
  • [10] Bo Y(2007)Theoretical study of the combustion of coal-water fuel droplets. Part II: Evaporation step Gorenie i Plasmokhimiya 5 189-198