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Design and characterization of a two-stage Hencken burner for combustion of solid fuels

机译:燃烧固体燃料燃烧的两级Hencken燃烧器的设计与鉴定

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During pulverized coal (pc) combustion process, the solid fuel can transition from a reducing to oxidizing environment, and this transition is expected to influence a number of processes, including ignition, flame stability, pollutant formation and char burnout. However, laboratory coal studies typically address either oxidizing or reducing environments, and the effects of this transition are not considered. To consider the effects of transition, a new Hencken burner is developed that allows coal particles to experience a reducing environment followed by a transition to an oxidizing environment (i.e. reducing-oxidizing). This paper describes the characterization of this two-stage Hencken burner. In addition, in a unique approach to operation of the Hencken burner, the flame configurations are operated as both normal and inverse flames, and the stoichiometric mixture fraction is varied to obtain stable soot-free flames. Gas temperatures and oxygen concentrations for the Hencken burner are measured under reducing-to-oxidizing and purely oxidizing environments. The result shows that stable flames with well-controlled conditions and uniform temperatures and species concentrations can be achieved in both flame configurations, and that the inverse flame configuration with high Z_(st) is more appropriate for sooty-fuels such as ethylene. The two-stage Hencken burner provides a unique system for evaluating the effect of the reducing-oxidizing transition on coal combustion.
机译:在煤粉(PC)燃烧过程中,固体燃料可以从还原到氧化环境过渡,并且该转变预计会影响许多方法,包括点火,火焰稳定性,污染物形成和炭烧坏。然而,实验室煤的研究通常地解决氧化或还原环境,并且不考虑这种转变的影响。为了考虑过渡的效果,开发了一种新的Hencken燃烧器,使煤颗粒能够经历还原环境,然后过渡到氧化环境(即还原氧化)。本文介绍了这两级Hencken燃烧器的表征。另外,在Hencken燃烧器的操作的独特方法中,火焰构造作为正常和逆火焰操作,并且化学计量混合物分数变化以获得稳定的烟尘火焰。在降低到氧化和纯氧化环境下测量Hencken燃烧器的气温和氧浓度。结果表明,在火焰配置中可以实现具有良好控制的条件和均匀温度和物种浓度的稳定的火焰,并且具有高Z_(ST)的逆火焰构型更适合于诸如乙烯的燃料燃料。两级Hencken燃烧器提供了一种独特的系统,用于评估减少氧化过渡对煤燃烧的影响。

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