首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.2; 20070514-17; Montreal(CA) >FUEL FLEXIBILITY TEST CAMPAIGN ON A 10 MW CLASS GAS TURBINE EQUIPPED WITH A DRY-LOW-NO_x COMBUSTION SYSTEM
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FUEL FLEXIBILITY TEST CAMPAIGN ON A 10 MW CLASS GAS TURBINE EQUIPPED WITH A DRY-LOW-NO_x COMBUSTION SYSTEM

机译:配备干式低NO_x燃烧系统的10 MW级燃气轮机的燃料灵活性测试活动

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An experimental test campaign, aimed to provide a preliminary assessment of the fuel flexibility of small power gas turbines equipped with Dry Low NO_X (DLN) combustion systems, has been carried over a full-scale GE10 prototypical unit, located at the Nuovo-Pignone manufacturing site, in Florence. Such activity is a follow-up of a previous experimental campaign, performed on the same engine, but equipped with a diffusive combustion system. The engine is a single shaft, simple cycle gas turbine designed for power generation applications, rated for 11 MW electrical power and equipped with a DLN silos type combustor. One of the peculiar features of such combustion system is the presence of a device for primary combustion air staging, in order to control flame temperature. A variable composition gaseous fuel mixture has been obtained by mixing natural gas with CO_2 up to about 30% vol. Inerts concentration. Tests have been carried over without any modification of the default hardware configuration. Tests performed aimed to investigate both ignition limits and combustors' performances, focusing on hot parts' temperatures, pollutant emissions and combustion driven pressure oscillations. Results indicate that ignition is possible up to 20% vol. Inerts concentration in the fuel, keeping the fuel flow during ignition at moderately low levels. Beyond 20% vol. Inerts, ignition is still possible increasing fuel flow and adjusting primary air staging, but more tests are necessary to increase confidence in defining optimal and critical values. Speed ramps and load operation have been successfully tested up to 30% vol. Inerts concentration. As far as speed ramps, the only issue evidenced has been risk of flameout, successfully abated by rescheduling combustion air staging. As far as load operation, the combustion system has proven to be almost insensitive to any inerts concentration tested (up to 30% vol.): the onlyparameter significantly affected by variation in CO_2 concentration has been NO_X emission. As a complementary activity, a simplified zero-dimensional model for predicting NO_X emission has been developed, accounting for fuel dilution with CO_2. The model is based on main turbine cycle and DLN combustion system controlling parameters (i.e., compressor pressure ratio, firing temperature, pilot fuel and primary air staging), and has been tuned achieving good agreement with data collected during the test campaign.
机译:旨在对配备低NO_X(DLN)低燃烧系统的小功率燃气轮机的燃料灵活性进行初步评估的实验测试活动已在位于Nuovo-Pignone制造厂的全尺寸GE10原型装置上进行网站,在佛罗伦萨。此类活动是先前实验活动的后续活动,该实验是在同一台发动机上进行的,但配备了扩散燃烧系统。该发动机是单轴,简单循环燃气轮机,专为发电应用而设计,额定功率为11兆瓦,并配有DLN筒仓式燃烧器。这种燃烧系统的独特特征之一是存在用于初级燃烧空气分级的装置,以便控制火焰温度。通过将天然气与高达20%(体积)的CO_2混合,获得了可变成分的气态燃料混合物。惰性浓度。测试已进行,没有对默认硬件配置进行任何修改。进行的测试旨在调查着火极限和燃烧器的性能,重点是热零件的温度,污染物排放和燃烧驱动的压力振荡。结果表明,高达20%的体积有可能着火。惰性化燃料中的浓度,使点火过程中的燃料流量保持在较低水平。超过20%vol。在惰性气体中,仍可能通过点火来增加燃料流量并调节一次空气的进阶,但是还需要进行更多测试才能提高对定义最佳和临界值的信心。速度斜坡和负载运行已成功测试到30%vol。惰性浓度。就速度上升而言,唯一可以证明的问题是熄火的风险,可以通过重新安排燃烧空气分级来成功消除熄火的风险。就负载运行而言,燃烧系统已证明对测试的任何惰性气体浓度几乎不敏感(最高30%vol。):唯一受CO_2浓度变化影响的参数是NO_X排放。作为一项补充活动,已经开发了一种用于预测NO_X排放的简化零维模型,考虑了用CO_2稀释燃料的问题。该模型基于主涡轮机循环和DLN燃烧系统控制参数(即压缩机压力比,燃烧温度,引燃燃料和一次空气分级)进行了调整,并与测试活动期间收集的数据实现了很好的一致性。

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