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Optical Measurements in a Combustor Using a 9-Point Swirl-Venturi Fuel Injector

机译:使用9点旋流 - 文丘里燃料喷射器的燃烧器中的光学测量

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This paper highlights the use of two-dimensional data to characterize a multipoint swirl-venturi injector. The injector is based on a NASA-conceived lean direct injection concept. Using a variety of advanced optical diagnostic techniques, we examine the flows resultant from multipoint, lean-direct injectors that have nine injection sites arranged in a 3 × 3 grid. The measurements are made within an optically-accessible, jet-A-fueled, 76-mm by 76-mm flame tube combustor. Combustion species mapping and velocity measurements are obtained using planar laser-induced fluorescence of OH and fuel, planar laser scatter of liquid fuel, chemiluminescence from CH{sup}*, NO{sup}*, and OH{sup}*, and particle image velocimetry of seeded air (non-fueled). These measurements are used to study fuel injection, mixedness, and combustion processes and are part of a database of measurements that will be used for validating computational combustion models.
机译:本文突出了二维数据的使用来表征多点旋流 - 文丘里注射器。喷射器基于NASA构思的精益直接注射概念。使用各种先进的光学诊断技术,我们检查从多点,倾斜的喷射器中产生的流量,该喷射器具有九个喷射部位,排列在3×3网格中。测量是在光学可接近的,喷射的射流,76mm乘76mm火焰管燃烧器中进行的。使用平面激光诱导的OH和燃料,平面激光散射的液体燃料,来自CH {sup} *,no {sup} *,oh {sup} *和粒子图像的平面激光散射的燃烧型荧光燃烧和速度测量。种子空气的速度(非燃料)。这些测量用于研究燃料喷射,混合性和燃烧过程,并且是将用于验证计算燃烧模型的测量数据库的一部分。

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