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Transverse Injection into Subsonic Crossflow with Various Injector Orifice Geometries

机译:横向注入具有不同注入器孔几何形状的亚音速错流

摘要

Computational and experimental results are presented for a case study of single injectors employed in 90 deg transverse injection into a non-reacting subsonic flow. Different injector orifice shapes are used (including circular, square, diamond-shaped, and wide rectangular slot), all with constant cross-sectional area, to observe the effects of this variation on injector penetration and mixing. Whereas the circle, square, and diamond injector produce similar jet plumes, the wide rectangular slot produces a plume with less vertical penetration than the others. There is also some evidence that the diamond injector produces slightly faster penetration with less mixing of the injected fluid. In addition, a variety of rectangular injectors were analyzed, with varying length/width ratios. Both experimental and computational data show improved plume penetration with increased streamwise orifice length. 3-D Reynolds-Averaged Navier-Stokes (RANS) results are obtained for the various injector geometries using NCC (National Combustion Code) with the kappa-epsilon turbulence model in multi-species modes on an unstructured grid. Grid sensitivity results are also presented which indicate consistent qualitative trends in the injector performance comparisons with increasing grid refinement.
机译:给出了计算和实验结果,用于在90度横向注入非反应性亚音速流中使用的单个喷射器的案例研究。使用不同的喷孔形状(包括圆形,正方形,菱形和宽矩形槽),它们的横截面积都恒定,以观察这种变化对喷油器渗透和混合的影响。圆形,方形和菱形喷油嘴产生类似的喷射羽流,而宽矩形槽产生的羽流垂直渗透率则比其他喷嘴低。也有一些证据表明,金刚石注入器在注入流体混合较少的情况下产生了更快的渗透速度。另外,分析了各种矩形注射器,它们具有不同的长/宽比。实验和计算数据均显示出随着流向孔口长度的增加,羽流渗透性得到了改善。在非结构化网格上,使用NCC(国家燃烧代码)和Kappa-ε湍流模型,在多物种模式下,针对各种喷射器几何形状获得了3-D雷诺平均Navier-Stokes(RANS)结果。还显示了栅格灵敏度结果,该结果表明随着栅格精度的提高,喷油器性能比较中的定性趋势一致。

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