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DIRECT NUMERICAL SIMULATION OF MULTIPLE JETS IN CROSS-FLOW

机译:横流多射流的直接数值模拟

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摘要

Direct numerical simulation has been performed to study flow interactions in multiple jets in crossflow. Configurations considered are twin jets side-by-side and t riple jets in tandem. Computations are carried out at the jet to cross-flow velocity ratio of 2.5 and the Reynolds number 225 based on the free-stream quantities and the jet width D. For twin jets, results show that in the vicinity of jet exits, the merging of two counter rotating vo rtex pairs (CRVP) is strongly dependent on the gap of two jets. Downstream in the far-field, a large single CRVP dominates. The simulation is in qualitatively good agreement with the experimental findings by other researchers. For t riple jets, more complicated flow structures are revealed, in which a total of three vortex pairs has been identified, but none of them is dominating. The observations of complex flow structure could assistant relevant industrial applications.
机译:已经进行了直接数值模拟,以研究横流中多股射流中的流动相互作用。所考虑的配置是并列的双喷嘴和三喷嘴喷嘴。基于自由流数量和射流宽度D,以射流与错流的流速比2.5和雷诺数225进行计算。对于双射流,结果表明,在射流出口附近,两个反向旋转的涡对(CRVP)很大程度上取决于两个喷嘴的间隙。在远场的下游,主要是一个大型CRVP。该模拟在质量上与其他研究人员的实验结果相吻合。对于三股射流,揭示了更复杂的流动结构,其中已识别出总共三个涡流对,但没有一个占主导地位。复杂流动结构的观测可以辅助相关的工业应用。

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