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Hydroxyl radical-PLIF measurements and accuracy investigation in high pressure gaseous hydrogen/gaseous oxygen combustion.

机译:高压气态氢/气态氧燃烧中羟自由基-PLIF的测量和准确性研究。

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In-flow species concentration measurements in reacting flows at high pressures are needed both to improve the current understanding of the physical processes taking place and to validate predictive tools that are under development, for application to the design and optimization of a range of power plants from diesel to rocket engines. To date, non intrusive measurements have been based on calibrations determined from assumptions that were not sufficiently quantified to provide a clear understanding of the range of uncertainty associated with these measurements.;The purpose of this work is to quantify the uncertainties associated with OH measurement in a oxygen-hydrogen system produced by a shear, coaxial injector typical of those used in rocket engines. Planar OH distributions are obtained providing instantaneous and averaged distribution that are required for both LES and RANS codes currently under development. This study has evaluated the uncertainties associated with OH measurement at 10, 27, 37 and 53 bar respectively. The total rms error for OH-PLIF measurements from eighteen different parameters was quantified and found as 21.9, 22.8, 22.5, and 22.9% at 10, 27, 37 and 53 bar respectively. These results are used by collaborators at Georgia Institute of Technology (LES), Pennsylvania State University (LES), University of Michigan (RANS) and NASA Marshall (RANS).
机译:需要高压下的反应流中的流中物质浓度测量,以增进对当前发生的物理过程的当前了解并验证正在开发的预测工具,以应用于设计和优化一系列电厂的过程中。柴油到火箭发动机。迄今为止,非侵入式测量是基于未充分量化的假设所确定的校准基础上进行的,这些假设无法充分理解与这些测量相关的不确定性范围。;这项工作的目的是量化与OH测量相关的不确定性由剪切式同轴喷射器产生的氧气-氢气系统,通常用于火箭发动机。获得了平面OH分布,可提供当前正在开发的LES和RANS代码所需的瞬时和平均分布。这项研究评估了分别在10、27、37和53 bar下与OH测量相关的不确定性。对来自18个不同参数的OH-PLIF测量的总均方根误差进行了量化,分别在10、27、37和53 bar下分别为21.9%,22.8、22.5和22.9%。佐治亚理工学院(LES),宾夕法尼亚州立大学(LES),密歇根大学(RANS)和NASA马歇尔(RANS)的合作者使用了这些结果。

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