首页> 外文会议>2003 ASME(American Society of Mechanical Engineers) Turbo Expo; Jun 16-19, 2003; Atlanta, Georgia >LES PREDICTION OF COMBUSTOR EMISSIONS FROM A PRACTICAL INDUSTRIAL FUEL INJECTOR
【24h】

LES PREDICTION OF COMBUSTOR EMISSIONS FROM A PRACTICAL INDUSTRIAL FUEL INJECTOR

机译:实用工业燃油喷射器的燃烧器排放预测

获取原文
获取原文并翻译 | 示例

摘要

An axial-swirl, lean premixed fuel injector typical of stationary gas turbine combustors has been analyzed using Large Eddy Simulation (LES). The objective of the study was to evaluate the LES modeling approach for predicting emissions of CO and NO_x at practical engine conditions (P=13.6 atm, T_(in) =734 K = 861℉) and over a range of natural gas-air equivalence ratios (0.42 to 0.58). Experimental data from a recent UTRC/DOE-NETL program was used to evaluate the model. The experimental tests found NO_x emissions decreased significantly with a decrease in equivalence ratio while CO emissions decreased initially, but then increased at the leanest conditions. LES calculations were performed using a parallel (domain decomposition), pressure-based, unstructured-grid flow solver within the CFD-ACE+ commercial software. The LES software solves the general transport equations for mass, momentum, energy, and chemical species without assumption at the grid-and time-resolved scales of the flow, and models the turbulent mixing and chemistry below the locally resolved grid/time-scales. The Localized Dynamic subgrid Kinetic energy Model (LDKM) was used to model the unresolved turbulence and a 2-step assumed PDF method, with decoupled NO_x, was used to model the unresolved turbulence-chemistry interactions. Parallel calculations on a cluster of 22 Linux-based PCs were carried out. It was shown that LES was able to accurately predict the CO and NO_x at an equivalence ratio of 0.58, and at leaner equivalence ratios the model was able to give qualitative agreement with the measurements. Some inadequacies in the NO_x chemistry at ultra lean conditions and the near-wall flow boundaries were observed.
机译:使用大型涡模拟(LES)分析了固定式燃气轮机燃烧器典型的轴流,稀混合气喷射器。该研究的目的是评估LES建模方法,以预测在实际发动机工况下(P = 13.6 atm,T_(in)= 734 K = 861℉)和整个天然气-空气当量范围内的CO和NO_x排放量比率(0.42至0.58)。来自最新UTRC / DOE-NETL程序的实验数据用于评估模型。实验测试发现,当量比降低,NO_x排放量显着降低,而CO排放量最初降低,但在最稀薄的条件下增加。使用CFD-ACE +商业软件中的并行(域分解),基于压力的非结构化网格流量求解器进行LES计算。 LES软件无需对网格,时间分辨尺度下的流动进行假设即可求解质量,动量,能量和化学物质的一般输运方程式,并在局部分辨的网格/尺度下模拟湍流混合和化学反应。使用局部动态亚网格动能模型(LDKM)对未解决的湍流进行建模,并采用两步假定的PDF方法,将NO_x解耦,以对未解决的湍流-化学相互作用进行建模。在22台基于Linux的PC群集上进行了并行计算。结果表明,LES能够精确地预测当量比为0.58时的CO和NO_x,而当其当量比值更小时,该模型能够与测量值定性地吻合。在超稀薄条件下和近壁流边界处观察到NO_x化学的一些不足之处。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号