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Influence of different cover ratios on gas-particle flow characteristics of a centrally-fuel-rich primary air burner: Experiment and simulation

  • Zhichao Chen*
  • , Shanping Shen
  • , Zhengqi Li
  • , Qunyi Zhu
  • *Corresponding author for this work
  • School of Energy Science and Engineering, Harbin Institute of Technology

Research output: Contribution to journalConference articlepeer-review

Abstract

The flow field for different cover ratios within a three-level conical ring concentrator of a centrally-fuel-rich swirl coal combustion burner has been studied both experimentally and numerically. A particle dynamics anemometer measurement system was employed in the study to measure velocity and particle volume flux after the outlet of third-level ring. And the numerical simulations were used to calculate the flow field in the conical ring region. In each cross-section, after the outlet of third-level ring, concentration ratio for each cover ratio is always larger than 2. With conical ring concentrator in the primary air tube, the coal concentration can be concentrated to a suitable range. In the cross-sections 0.5<x/D<4.0, as cover ratio increases, concentration ratio decreases and resistance coefficient increases.

Original languageEnglish
Pages (from-to)1513-1521
Number of pages9
JournalProcedia Environmental Sciences
Volume11
Issue numberPART C
DOIs
StatePublished - 2011
Externally publishedYes
Event2011 2nd International Conference on Challenges in Environmental Science and Computer Engineering, CESCE 2011 - Haikou, China
Duration: 14 Dec 201115 Dec 2011

Keywords

  • Concentrator
  • Gas/particle flow
  • Numerical simulation
  • PDA

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