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DRY LOW NO_X EMISSIONS OPERABILITY ENHANCEMENT OF A HEAVY-DUTY GAS TURBINE BY MEANS OF FUEL BURNER DESIGN DEVELOPMENT AND TESTING

机译:通过燃料燃烧器设计开发和测试干燥低NO_X排放可操作性增强重型燃气轮机

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This paper describes the development phases of an annular type combustor for heavy-duty gas turbine applications. High cycle efficiency and low emissions are required over a wide range of load conditions, with the consequence of reducing margin to thermo-acoustic instability onset and lean blow-out. In addition, in lean premixed combustors, the increased fuel air mixing times required to keep emissions low, may lead to undesired ignition or flashback into the fuel burner ducts. All these aspects are matter of this work andfocus is on fuel burner design modifications which allowed dry emissions reduction while maintaining a sufficiently wide safe operation window. A synergic effort has been put in place, involving experimental campaigns and CFD simulations, with the purpose of assessing design changes initially and doing screening. In the meanwhile, numerical practices have taken benefits form the experience growth. Results of past work on similar components has been leveraged too. Test campaign involved different scale facilities, from single burner through full annular combustor up to full scale prototype engine. The progressive reduction of viable option for combustor components design changes, due to high impact of such modifications during the gas turbine late development phases, forced designers to concentrate efforts onto fuel burner optimization, looking for efficient ways to implement modifications and assess their effectiveness of combustion system performances. Emissions trends, blow-out and flashback margin for several burner designs are reported. Numerical analysis results are also shown, which revealed to be well aligned with the experimental outcomes, allowing burner optimized solution to be identified. Finally, characterization with respect to fuel gas composition is shown as well as sensitivity to different operating conditions.
机译:本文介绍了重型燃气涡轮机应用的环形型燃烧器的开发阶段。在广泛的负载条件下需要高循环效率和低排放,结果将裕度降低到热声不稳定发作和瘦吹出。此外,在瘦预混燃烧器中,保持低排放所需的燃料空气混合时间可能导致不希望的点火或闪回燃料燃烧管。所有这些方面都是这项工作的重要组件,它是燃料燃烧器设计修改,它允许干排放量减少,同时保持足够宽的安全操作窗口。已经解决了协同努力,涉及实验活动和CFD模拟,目的是评估设计变更最初并进行筛选。与此同时,数值实践具有益处,形成了经验增长。过去的过去的工作结果也得到了利用。测试活动涉及不同的刻度设施,从单燃烧器通过全环形燃烧器到满量程原型发动机。燃烧器组件设计变化的可行性选择的逐步减少,由于这种修改在燃气轮机后期开发阶段的高影响力,强制设计人员将努力集中在燃料燃烧器优化上,寻找有效的方法来实现修改并评估其燃烧的有效性。系统性能。报告了几种燃烧器设计的排放趋势,吹出和倒装余量。还显示了数值分析结果,显示与实验结果很好,允许识别燃烧器优化的解决方案。最后,示出了关于燃料气体组合物的表征以及对不同操作条件的敏感性。

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