連続再生式ディーゼルフィルターにおけるすすの燃焼と堆積の数値解析(熱工学,内燃機関,動力など)

書誌事項

タイトル別名
  • Numerical Simulation on Soot Combustion and Deposition in Continuously Regenerating Diesel Filter(Thermal Engineering)
  • 連続再生式ディーゼルフィルターにおけるすすの燃焼と堆積の数値解析
  • レンゾク サイセイシキ ディーゼルフィルター ニ オケル スス ノ ネンショウ ト タイセキ ノ スウチ カイセキ

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抄録

Since particulate matters (PM) emissions including soot from diesel cars do harm to our health, a diesel particulate filter (DPF) has been used in the after-treatment of exhaust gas. It is reported that DPF filling with PM causes higher back-pressure and more fuel consumption, and continuously regenerating PM trap system is needed. Then, we have focused on the diesel exhaust gas perfect burning system (DEGPBS) developed by COTEC, Ltd., where soot is trapped and burned by the heater. However, the phenomena in the system are not well understood, because it is difficult to conduct the measurement inside the filter. In this study, we simulated soot combustion and deposition by the lattice Boltzmann method to observe the combustion field in the filter. The inner structure of the filter was obtained by a 3D X-ray CT technique. Results show that the heat and mass transport in DEGPBS are well visualized. It is found that temperature of the filter and oxygen concentration are important factors to burn soot in exhaust gas.

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