首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.1; 20060506-11; Barcelona(ES) >CHEMICAL REACTOR NETWORK APPLICATION TO EMISSIONS PREDICTION FOR INDUSTIAL DLE GAS TURBINE
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CHEMICAL REACTOR NETWORK APPLICATION TO EMISSIONS PREDICTION FOR INDUSTIAL DLE GAS TURBINE

机译:化学反应器网络在工业汽轮机排放预测中的应用

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A chemical reactor network (CRN) is developed and applied to a dry low emissions (DLE) industrial gas turbine combustor with the purpose of predicting exhaust emissions. The development of the CRN model is guided by reacting flow computational fluid dynamics (CFD) using the University of Washington (UW) eight-step global mechanism. The network consists of 31 chemical reactor elements representing the different flow and reaction zones of the combustor. The CRN is exercised for full load operating conditions with variable pilot flows ranging from 35% to 200% of the neutral pilot. The NOx and the CO emissions are predicted using the full GRI 3.0 chemical kinetic mechanism in the CRN. The CRN results closely match the actual engine test rig emissions output. Additional work is ongoing and the results from this ongoing research will be presented in future publications.
机译:开发了化学反应器网络(CRN),并将其应用于干式低排放(DLE)工业燃气轮机燃烧室,目的是预测废气排放。使用华盛顿大学(UW)的八步全局机制,通过对流动计算流体动力学(CFD)进行反应来指导CRN模型的开发。该网络由31个化学反应器元件组成,分别代表燃烧器的不同流量和反应区。 CRN适用于满负荷运行条件,先导流量在中性先导的35%至200%之间变化。使用CRN中完整的GRI 3.0化学动力学机制预测NOx和CO排放量。 CRN结果与实际的发动机试验台排放量非常匹配。正在进行其他工作,正在进行的研究结果将在以后的出版物中介绍。

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