首页> 外文会议>2002 International Joint Power Generation Conference, Jun 24-26, 2002, Scottsdale, Arizona >PARAMETRIC STUDY TO OPTIMIZE AIR/FUEL MIXING FOR LEAN, PREMIX COMBUSTION SYSTEMS
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PARAMETRIC STUDY TO OPTIMIZE AIR/FUEL MIXING FOR LEAN, PREMIX COMBUSTION SYSTEMS

机译:优化稀薄混合气燃烧系统空气/燃料混合的参数研究

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New designs of gas turbine combustors for power generation applications have to meet ever-tightening emission standards (mainly NOx, CO and UHC) while operating at high combustor pressures. This requires a detailed understanding of the physical processes involved. The air-fuel mixture preparation is a critical step in most advanced gas turbine combustion strategies to achieve lower emissions. It has long been established that the level of unmixedness between the fuel and air is strongly tied with NOx levels. The present paper applies the statistical technique of Design Of Experiments (DOE) to a generic mixer set-up that includes an axial swirler, with fuel injected at discrete locations and transverse to the flow. The objective is to identify influential design and operating parameters that will provide rapid and enhanced mixing. The parameters tested include Swirl strength as measured by the Swirl number, Swirl type (Constant angle vs. Free vortex), number and momentum of fuel injection sites and gas temperature. Planar Laser Induced Fluorescence of acetone (PLIF) was used to quantify mixing at various planar locations in the mixing section. Commercial CFD software is used to model the flow field and predict the spatial mixing at selected conditions. Comparisons are made with experimental measurements with the aim to validate the CFD code and also on comparing the model results with the measurements.
机译:用于发电的燃气轮机燃烧室的新设计必须满足日益严格的排放标准(主要是NOx,CO和UHC),同时在高燃烧室压力下运行。这需要对所涉及的物理过程有详细的了解。空气-燃料混合物的准备工作是最先进的燃气轮机燃烧策略中至关重要的一步,以实现更低的排放。长期以来已经确定,燃料和空气之间的不混合程度与NOx含量密切相关。本文将“实验设计”(DOE)的统计技术应用于通用混合器装置,该装置包括轴向旋流器,燃料在不连续的位置并横向于流动方向喷射。目的是确定有影响力的设计和操作参数,以提供快速和增强的混合效果。测试的参数包括通过旋流数测量的旋流强度,旋流类型(恒定角度与自由涡流),燃料喷射点的数量和动量以及气体温度。平面激光诱导的丙酮荧光(PLIF)用于定量混合区域中各个平面位置的混合。商业CFD软件用于在选定条件下对流场建模并预测空间混合。为了验证CFD代码以及将模型结果与测量结果进行比较,对实验测量结果进行了比较。

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