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Experiments and numerical studies on a Syngas-fired Ultra low NOx combustor

机译:合成气燃烧的超低NOx燃烧器的实验和数值研究

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摘要

Exhaust measurements of temperature and pollutants in a syngas-fired model trapped vortex combustor for stationary power generation applications are reported. The performance was further evaluated for configurations where mixing enhancement was obtained using struts in the mainstream flow. Mainstream premixing of fuel was also studied to investigate its effect on emissions. The exhaust temperature pattern factor was found to be poor for baseline cases, but improved with the introduction of struts. NO emissions were steadily below 3-ppm across various flow conditions, whereas CO emissions tended to increase with increasing Momentum Flux Ratios (MFRs) and mainstream fuel addition. Combustion efficiencies ~96% were observed for all conditions. The performance characteristics were found to be favourable at higher MFRs with low pattern factors and high combustion efficiencies. Numerical simulations employing RANS and LES with Presumed Probability Distribution Function (PPDF) model were also carried out. Mixture fraction profiles in the TVC cavity for non-reacting conditions show that LES simulations are able to capture the mean mixing field better than the RANS-based approach. This is attributed to the prediction of the jet decay rate and is reflected on the mean velocity magnitude fields, which reinforce this observation at different sections in the cavity. Both RANS and LES simulations show close agreement with the experimentally measured OH concentration, however, the RANS approach does not perform satisfactorily in capturing the trend of velocity magnitude. LES simulations clearly capture the trend observed in exhaust measurements which is primarily attributed to the flame stabilization mechanism.
机译:报告了在固定式发电应用中,在合成气燃烧模型捕集涡流燃烧器中对温度和污染物进行的排气测量。对于使用主流中的支柱获得混合增强效果的配置,进一步评估了性能。还研究了主流燃料预混合以研究其对排放的影响。发现在基线情况下,排气温度模式因子较差,但随着引入支撑杆而提高。在各种流量条件下,NO排放量一直稳定在3 ppm以下,而CO排放量往往随着动量通量比(MFR)和主流燃料添加的增加而增加。在所有条件下均观察到约96%的燃烧效率。发现在较高的MFR,低模式因子和高燃烧效率的情况下,性能特征是有利的。还进行了使用RANS和LES以及假定概率分布函数(PPDF)模型的数值模拟。对于非反应条件,TVC腔中的混合比分布图表明,与基于RANS的方法相比,LES模拟能够更好地捕获平均混合场。这归因于射流衰减率的预测,并反映在平均速度强度场上,这加强了在腔体不同部分的观察。 RANS和LES模拟都显示出与实验测量的OH浓度非常一致,但是,RANS方法在捕获速度幅度趋势方面的性能不能令人满意。 LES模拟清楚地捕获了在排气测量中观察到的趋势,这主要归因于火焰稳定机制。

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