首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation of gas/particle two-phase flow characteristics in a down-fired boiler by PDA measurements
【24h】

Experimental investigation of gas/particle two-phase flow characteristics in a down-fired boiler by PDA measurements

机译:PDA测量通过PDA测量燃烧锅炉气/粒子两相流动特性的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

To confirm the validity and progressiveness of the eccentric-swirl-secondary-air combustion technology (ESSACT) in improving the economic and environmental performance of the down-fired boiler (DFB) with swirl burners, the gas/particle (GP) cold-modelling experiments are conducted by using a particle dynamic analyzer (PDA) measurement system in a 1:10 scale model of 300-MWe DFB applying original Babcock & Wilcox combustion technology (BWCT) and novel ESSACT, respectively. The distributions of average velocity, fluctuation velocity and particle size are compared and analyzed under the two combustion technologies in this study, in addition to the decay of particle volume flux and the jet trajectory of downward GP flows. In comparison with the BWCT, the rotation intensity of the burner secondary air is greatly weakened, and the vertical velocities of downward GP flows decay more slowly under the ESSACT. Although the recirculation regions are both formed below the arches under the two combustion technologies, the horizontal velocities and the horizontal fluctuation velocities of GP flows in the recirculation regions are both larger for the ESSACT, which benefits pulverized coal ignition. The particle size distributions under the two combustion technologies reveal that the mixing between the primary air and burner secondary air is obviously delayed and the burner secondary air effectively ejecting the primary air downward is realized by the ESSACT, which is advantageous to improve pulverized coal burnout and inhibit NOx formation. In addition, the maximum particle volume flux in the lower part of the lower furnace under the ESSACT is obviously higher than that under the BWCT, and the downward depth of GP flows and the space utilization ratio in the lower furnace increase for the original BW DFB retrofitted by the ESSACT.
机译:确认偏心 - 旋流 - 二级空气燃烧技术(本文)的有效性和进展性,提高旋转锅炉(DFB)的经济环境性能,气体/粒子(GP)冷模拟通过使用颗粒动态分析仪(PDA)测量系统在300 MWE DFB的1:10规模模型中应用原始Babcock&Wilcox燃烧技术(BWCT)和小说本文进行了实验。比较了平均速度,波动速度和粒度的分布,并在本研究中的两个燃烧技术下进行了分析,除了颗粒体积通量的衰减和向下GP流的射流轨迹之外。与BWCT相比,燃烧器二次空气的旋转强度大大削弱,并且向下GP的垂直速度在本文下慢慢地衰减。尽管在两个燃烧技术下的拱门下方形成了再循环区域,但是对于本文来说,Rechulation区的水平速度和GP流量的水平波动速度均较大,这使得煤粉点火有益。两种燃烧技术下的粒度分布揭示了主要空气和燃烧器二次空气之间的混合显然是延迟,并且通过本文实现了有效地喷射了初级空气的燃烧器二次空气,这是有利于改善煤粉燃烧的有利抑制NOx形成。此外,在本文下,下部炉子下部的最大粒子量通量明显高于BWCT下的最大粒子量通量,并且GP流量的下深度和较低炉中的空间利用率增加了原始BW DFB由本文改造。

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