首页> 外文会议>2002 International Joint Power Generation Conference, Jun 24-26, 2002, Scottsdale, Arizona >USE OF CFD MODELING FOR DESIGN OF NOX REDUCTION SYSTEMS IN UTILITY BOILERS
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USE OF CFD MODELING FOR DESIGN OF NOX REDUCTION SYSTEMS IN UTILITY BOILERS

机译:CFD模型在电站锅炉NOx还原系统设计中的应用

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CFD modeling has found increasing use in the design and evaluation of utility boiler retrofits, combustion optimization and NOx reduction technologies. This paper reviews two recent examples of CFD modeling used in the design and evaluation of NOx reduction technologies. The first example involves the staging of furnace combustion through use of overfire air (OFA) to reduce NOx emission in a B&W opposed-wall fired pc furnace. Furnace simulations identified locations of highest flue gas mass flows and highest CO concentrations and were used to identify OFA port placement for maximum NOx reduction with lowest increases in unburned carbon in fly ash and CO emission. Simulations predicted a 34% reduction in NOx emission with OFA. The second example summarizes the design and application of RRI with OFA and SNCR in a 138 MW cyclone-fired boiler. Simulations were used to design an amine-based injection system for the staged lower furnace and to evaluate NOx reduction and ammonia slip of the RRI system. Field-testing confirmed modeling predictions and demonstrated that the RRI system alone could achieve 25-30% NOx reduction beyond OFA levels with less than 1 ppm ammonia slip and that RRI in combination with SNCR could achieve 50-55% NOx reduction with less than 5 ppm slip.
机译:CFD建模已发现在公用事业锅炉改造,燃烧优化和NOx减排技术的设计和评估中越来越多地使用。本文回顾了用于设计和评估NOx减排技术的CFD建模的两个最新实例。第一个示例涉及通过使用过火空气(OFA)来减少B&W对面壁燃烧式PC炉中NOx排放的炉子燃烧阶段。熔炉模拟确定了最高烟道气流量和最高CO浓度的位置,并用于确定OFA端口位置,以最大程度地减少NOx,同时使粉煤灰和CO排放中未燃烧的碳增加最少。模拟预测,使用OFA可使NOx排放降低34%。第二个示例总结了RAF与OFA和SNCR在138 MW旋风锅炉中的设计和应用。模拟用于为分段式下层炉设计基于胺的喷射系统,并评估RRI系统的NOx还原和氨漏失。现场测试证实了建模预测,并证明仅RRI系统可在OFA含量水平以下以低于1 ppm的氨漏失实现25-30%的NOx减少,RRI与SNCR结合可在不到5的情况下实现50-55%的NOx减少ppm滑移。

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