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NO_x EMISSIONS IN COMBUSTION OF LEAN PREMIXED MIXTURES INJECTED INTO HOT BURNED GAS

机译:NO_x燃烧精益预混混合物的排放注入热烧伤

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A two-stage combustor concept for gas turbine applications is proposed to achieve ultralow NO_x emissions and complete combustion over a wide range of operation. This combustor consists of a first stage that burns a lean premixed mixture of a fixed equivalence ratio, and a second stage where a lean mixture is injected into the hot burned gas from the first stage. The airflow rates to these two stages and the fuel flow rate to the first-stage are fixed, and only the secondary fuel flow rate is modulated to cover the range of fuel-air ratios required by the gas turbine. The first stage equivalence ratio is selected depending on the combustor inlet air temperature, so that the mixture can be burned to near completion. This concept is superior to single-stage lean premixed combustion because control of the fuel flow rate is much easier and more reliable than control of combustion air, which has variable geometry. The constant mixture flow rate to the first stage over a wide operating range is better for flame stabilization. To asses the potential for low NO_x emission and complete combustion of the above-mentioned concept, NO_x formation in the combustion of a premixed lean mixture injected into burned gas was investigated at atmospheric pressure and inlet air temperatures of 300 and 800°C over a wide range of overall equivalence ratios. The effects of NO_x emissions and combustion efficiency of the second-stage airflow rate relative to the first-stage air flow rate, and equivalence ratios of mixtures relative to the first and second stages were investigated. Furthermore the effects of modes of mixture injections were studied. This was done by conducting the mixture injection from holes concentrated at an axial position and from holes distributed over a finite distance along the combustion chamber.
机译:提出了一种用于燃气轮机应用的两级燃烧器概念,实现超级NO_X排放和在广泛的操作范围内完成燃烧。该燃烧器由第一阶段组成,该第一阶段燃烧固定等效率的精益预混混合物,以及从第一阶段从第一阶段注入热燃烧的气体中的第二阶段。将气流速率和第一级的燃料流量和燃料流速固定,并且仅调制二次燃料流量以覆盖燃气轮机所需的燃料空气比的范围。根据燃烧器入口空气温度选择第一级等效率,使得混合物可以燃烧到接近完成。这种概念优于单级精益预混燃烧,因为对燃料流速的控制比控制具有可变几何形状的燃烧空气的控制更容易且更可靠。在宽的操作范围内恒定混合流量与第一阶段的流速更好地用于火焰稳定。为了赋予上述概念的低NO_X排放和完全燃烧的潜力,在大气压下,在大气压下,在大气压和空气温度下,在大气压和800℃的入口空气温度下进行预混合稀合混合物的燃烧中的NO_X形成整体等效比率范围。研究了NO_X排放和第二阶段气流率相对于第一阶段空气流速的燃烧效率,以及相对于第一和第二阶段的混合物的等效比率。此外,研究了混合注射模式的影响。这是通过通过在轴向位置处的孔和沿燃烧室的有限距离上分布的孔的孔进行从浓缩的孔中喷射来完成。

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