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Mixing characteristics of directly opposed rows of jets injected normal to a crossflow in a rectangular duct

机译:与矩形管中的横流垂直注入的直接相对的喷射流的混合特性

摘要

An experimental investigation of the mixing of nonreacting opposed rows of inline jets injected perpendicular to a uniform crossflow has been conducted in a rectangular duct. Planar Mie-scattering was used to measure the time-average concentration distribution of the jet fluid in planes perpendicular to the duct axis. Orifice configurations with geometric blockages ranging from 0.59 to 0.89 had similar mixing performance when compared at one-half duct height downstream of injection. Blockage was varied by changing the orifice aspect ratio from 1-to-1 to 1-to-1.5 while maintaining orifice spacing-to-duct height (S/H) at 0.425, jet-to-mainstream mass flow ratio (MR) at 2.0, and jet-to-mainstream momentum-flux ratio (J) at 48. The result indicates that the design correlating expression (at MR = 2) for optimum in line mixing of 2.5 approximately equal to (S/H)(square root of J) is independent of the Webb between adjacent orifices and therefore independent of orifice width. Experimental and numerical results for an orifice aspect ratio 1-to-1 case were in good agreement. The results of a comparison of inline 45 degrees slanted slot and round orifice configuration indicate that in order to obtain equivalent mean concentration distributions at the same J it is necessary to use a smaller S/H for the round orifice configuration. Conclusions about the performance of various orifice shapes can only be obtained from comparison of optimized configurations. Inline jets with different momentum-flux ratios on opposite sides were compared at a constant mass flow ratio. The orifice spacing chosen was previously found to be an optimum configuration when opposing values of J were equal and also an optimum for single side injection. Experimental and empirical results were in good agreement.
机译:已经在矩形管道中进行了垂直于均匀错流喷射的非反应相对列喷射流混合的实验研究。平面米氏散射用于测量垂直于管道轴线的平面中射流流体的时间平均浓度分布。当在注射下游的一半导管高度处进行比较时,几何阻塞范围为0.59至0.89的孔口配置具有相似的混合性能。通过将孔的长径比从1比1更改为1-1.5来改变堵塞,同时将孔间距与管道的高度(S / H)保持在0.425,射流与主流的质量流量比(MR)在2.0,射流与主流的动量-通量之比(J)为48。结果表明,最佳管路混合比(S / H)(平方根)为2.5时最佳的设计相关表达式(在MR = 2时) J)的大小与相邻孔之间的韦伯无关,因此与孔宽度无关。孔长宽比1比1的实验和数值结果吻合良好。直列45度倾斜槽和圆形孔口配置的比较结果表明,为了在相同的J下获得等效的平均浓度分布,圆形孔口配置必须使用较小的S / H。关于各种孔口形状的性能的结论只能从优化配置的比较中得出。在恒定质量流量比的情况下,比较了相对两侧具有不同动量-通量比的直列式喷嘴。先前发现,当J的相对值相等时,选择的节流孔间距是最佳配置,并且对于单侧喷射也是最佳的。实验和实验结果吻合良好。

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