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EXPERIMENTAL AND NUMERICAL INVESTIGATION OF A FLOX COMBUSTOR FIRING LOW CALORIFIC VALUE GASES

机译:燃烧低热值气体的FLOX燃烧器的实验和数值研究

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摘要

A prototype flameless oxidation (FLOX) gas turbine combustor has been investigated experimentally and numerically. The combustor was operated with various Low Calorific Value gases. At the outlet main component and emission measurements (CO and NO) have been performed. The influence of several parameters (i.e., fuel composition, outlet temperature, and nozzle diameter) on the emissions have been investigated. Ultralow emissions (single digit) have been achieved. Moreover, axial temperature profiles in the combustion chamber have been measured with a suction pyrometer. The combustor has been simulated with a commercial CFD code (FLUENT 6.3) to gain insight in the combustion characteristics. Using the Eddy Dissipation Concept model for turbulence-chemistry interaction in combination with the Reynolds Stress model for turbulence and two different chemistry mechanisms, the measured temperature profiles have been reasonably well reproduced. In postprocessing mode different NO formation paths have been studied.
机译:原型无焰氧化(FLOX)燃气轮机燃烧室已通过实验和数值研究。燃烧器在各种低热值气体下运行。在出口处进行了主要成分和排放测量(CO和NO)。已经研究了几个参数(即燃料成分,出口温度和喷嘴直径)对排放的影响。已实现超低排放(一位数)。此外,燃烧室中的轴向温度曲线已经通过吸入式高温计测量。燃烧器已使用商用CFD代码(FLUENT 6.3)进行了模拟,以深入了解燃烧特性。将涡流-化学相互作用的涡流消散概念模型与湍流的雷诺应力模型和两种不同的化学机理结合使用,可以很好地再现测得的温度曲线。在后处理模式中,已经研究了不同的NO形成路径。

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