首页> 外文会议>ASME power conference joint with ICOPE-17 >EXPERIMENTAL INVESTIGATION ON THE INFLUENCE OF AIR VELOCITY ON THE PARTICLE DISPERSION BEHAVIOR OF RICE HUSK IN A FUEL-RICH/LEAN BURNER
【24h】

EXPERIMENTAL INVESTIGATION ON THE INFLUENCE OF AIR VELOCITY ON THE PARTICLE DISPERSION BEHAVIOR OF RICE HUSK IN A FUEL-RICH/LEAN BURNER

机译:空气流速对稀油/稀燃燃烧器中稻壳颗粒弥散行为影响的实验研究

获取原文

摘要

Recently the firing of biomass at existing power plant has drawn much attention because biomass fuels result in less pollutant emission. It is desirable to investigate the flow characteristics of biomass particles in existing combustors in order to determine whether the coal burners also have good adaptability for biomass fuel. The particle dispersion in the burner has a close relationship with pollutant emissions. In this paper, a monitoring system based on a charge-coupled device (abbreviated as CCD) camera was employed to measure the particle distribution of rice husk in a fuel-rich/lean burner. The influence of air velocity was taken into consideration. The particle-rich/lean ratio is 19.49, 16.23, 14.86, and 12.94 (corresponding to the air velocity of 9.5, 11, 12.5, and 14 m/s, respectively) at the exit of the burner model. The results indicates that the air velocity has a negative effect on the separation performance. In order to verify the particle distributions obtained by the digital imaging technique, specially designed filter bags were used to collect rice husk from both the fuel-rich side and fuel-lean side. Then mass and size distributions of the collected particles were analyzed. The results agrees with the trend above and indicates that the block-type concentrator has greater impacts on large particles. More large particles were collected from the fuel-rich side. The dispersion mechanism of rice husk particles revealed in this paper can propose solutions to the actual operation of plants that combust/co-combust the rice husk. (CSPE)
机译:最近,由于生物质燃料减少了污染物的排放,因此在现有发电厂中生物质的燃烧备受关注。希望研究现有燃烧器中生物质颗粒的流动特性,以便确定燃煤器是否也具有对生物质燃料的良好适应性。燃烧器中的颗粒扩散与污染物排放有着密切的关系。本文采用一种基于电荷耦合装置(简称CCD)相机的监控系统来测量富油/稀燃燃烧器中稻壳的颗粒分布。考虑了风速的影响。燃烧器模型出口处的富粒子/贫粒子比率为19.49、16.23、14.86和12.94(分别对应于9.5、11、12.5和14 m / s的空气速度)。结果表明,风速对分离性能有负面影响。为了验证通过数字成像技术获得的颗粒分布,使用了专门设计的滤袋从富燃料侧和贫燃料侧收集稻壳。然后分析收集的颗粒的质量和尺寸分布。结果与上述趋势一致,表明该块式浓缩器对大颗粒的影响更大。从燃料丰富的一侧收集了更多的大颗粒。本文揭示的稻壳颗粒的分散机理可以为燃烧/共燃烧稻壳的植物的实际运行提出解决方案。 (CSPE)

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号