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EFFECTS OF BURNER CONFIGURATION ON THE CHARACTERISTICS OF BIOGAS FLAMELESS COMBUSTION

机译:燃烧器构型对生物气无焰燃烧特性的影响

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The purpose of this experimental and numerical investigation is to analyze the effects of burner configuration on the characteristics of biogas flameless combustion. In the four non-premixed studied burners, the inlet jet of the fuel is located at the center of the burner, surrounded by four oxidizer parallel jets in the coaxial burners and four perpendicular jets in the tangential configuration. In the three-dimensional (3D) computational fluid dynamic (CFD) study, a two-step reaction scheme, eddy dissipation concept (EDC), eddy dissipation method (EDM), and the realizable k- epsilon formulation were set for all simulations. The results illustrate that the volume of the flame is wider in a tangential burner and, hence, the temperature uniformity in the tangential flameless burner is more than coaxial configurations. The inside temperature of the furnace and the combustor's wall temperature are higher in the tangential burner; consequently, higher heat loss from walls was recorded in tangential mode. Despite the higher energy loss from walls in the tangential burner, the efficiency of biogas flameless combustion in the tangential is more than the coaxial burners (66% and 64%, respectively). The concentration of CH4 in the exhaust gases was recorded at 48 ppm and 60 ppm in the tangential and coaxial burners, respectively, which confirms that the combustion of biogas is more complete in the tangential flameless burner. The lower concentration of oxygen in the tangential burner conducts the combustion system to generate higher carbon monoxide (CO) based on the two-step combustion concept.
机译:本实验和数值研究的目的是分析燃烧器配置对沼气无焰燃烧特性的影响。在研究的四个非预混合燃烧器中,燃料的入口射流位于燃烧器的中心,被同轴燃烧器中的四个氧化剂平行射流和切向配置中的四个垂直射流所包围。在三维(3D)计算流体动力学(CFD)研究中,为所有模拟设置了两步反应方案,涡流耗散概念(EDC),涡流耗散方法(EDM)和可实现的k-ε公式。结果表明,切向燃烧器中的火焰体积更宽,因此,切向无焰燃烧器中的温度均匀性大于同轴结构。切向燃烧器的炉子内部温度和燃烧室的壁温较高;因此,以切线模式记录了更高的壁热损失。尽管切向燃烧器壁产生的能量损失较高,但切向燃烧器中沼气无焰燃烧的效率要高于同轴燃烧器(分别为66%和64%)。切线和同轴燃烧器中的废气中CH4的浓度分别记录为48 ppm和60 ppm,这证实了切向无焰燃烧器中沼气的燃烧更加完全。切线燃烧器中较低的氧气浓度引导燃烧系统生成基于两步燃烧概念的较高一氧化碳(CO)。

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