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EXPERIMENTAL ANALYSIS OF A SWIRLED 'STANDARD FLAME': GENERAL CHARACTERIZATION AND TURBULENCE-CHEMISTRY INTERACTION

机译:旋流“标准火焰”的实验分析:一般表征和湍流 - 化学相互作用

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A prototype of an industrial burner for confined swirling natural gas/air diffusion flames is presented as a standard burner within the TECFLAM research cooperation. The main goal of the investigation is the establishment of an extensive data base from well-defined target flames in order to better understand the physical and chemical processes in these flames and to provide a test case for the verification of predictions from numerical simulations. The results presented in this paper were measured by laser Doppler velocimetry and laser Raman scattering and comprise flow velocities, temperature, major species concentrations, and mixture fraction in a flame of 150 kW and swirl number 0.9. The measurements yielded a detailed characterization of the different flame regions: a compact inner recirculation zone with hot combustion products, an outer recirculation zone with rather uniform flow field and chemical equilibrium composition at medium temperatures, and a highly turbulent region formed by the inlet flows where strong effects of turbulent-chemistry interactions were observed.
机译:用于狭窄的旋流天然气/空气扩散火焰的工业燃烧器的原型被呈现为Tecflam研究合作中的标准燃烧器。调查的主要目标是从明确定义的目标火焰建立广泛的数据库,以便更好地了解这些火焰中的物理和化学过程,并提供了从数值模拟中验证预测的测试用例。本文呈现的结果是通过激光多普勒速度测量和激光拉曼散射测量,包括流速,温度,主要物种浓度,并在150kW和旋流0.9的火焰中混合级分。测量结果产生了不同火焰区域的详细表征:具有热燃烧产物的紧凑型内再循环区域,外部再循环区域,具有相当均匀的流场和中间温度的化学平衡组合物,以及由入口形成的高度湍流区域观察到湍流 - 化学相互作用的强烈影响。

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