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Transverse Injection into Subsonic Crossflow with Various Injector Orifice Geometries

机译:用各种喷射器孔口几何形状横向喷射到亚态横流

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Computational and experimental results are presented for a case study of single injectors employed in 90 transverse injection into a non-reacting subsonic flow. Different injector orifice shapes are used (circular, square, diamond-shaped, and rectangular), all with equal cross-sectional area, to observe the effect on injectant penetration and mixing. For the rectangular shape, four aspect ratios were used; these were also place perpendicular (wide) and along (long) the freestream direction. 3-D Reynolds-Averaged Navier-Stokes (RANS) results are obtained for the various injector geometries using the National Combustion Code (NCC) with the K-e turbulence model on an unstructured grid. Whereas the circular, square, and diamond injectors produce similar jet plumes, the wide rectangular slot produces a plume with less vertical penetration than the others. Both experimental and computational data show improved plume penetration with the long rectangular configuration.
机译:提供了计算和实验结果,以便研究了90型横向喷射到非反应亚源流量的单一注射器的情况。使用不同的注射器孔口形状(圆形,方形,菱形和矩形),全部具有相同的横截面积,观察对注射渗透和混合的影响。对于矩形形状,使用了四个纵横比;这些也垂直地(宽)和(长)自发流方向。使用国家燃烧代码(NCC)与非结构化网格上的K-E湍流模型一起获得各种喷射器几何模型获得3-D雷诺瓦德的Navier-Stokes(RANS)。虽然圆形,方形和金刚石喷射器产生类似的喷射羽毛,但宽矩形槽会产生比其他垂直渗透的羽流。实验和计算数据均显示出具有长矩形配置的改进的羽流渗透。

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