论文标题

控制弓休克引起的三维分离,利用孔出血

Control of bow shock induced three-dimensional separation using bleed through holes

论文作者

Chandravamsi, Hemanth, Bhardwaj, Sourabh, Ramachandra, K., Sriram, R.

论文摘要

通过平方突出诱导的壁上的不稳定的三维分离流(大约是宽度和高度的局部边界层厚度的两倍),并使用以2.87美元的价格进行风洞实验来研究其通过被动吸力通过被动吸力进行控制。没有任何控制的基线流量与出血病例进行了比较。从突起面上的中跨度分离长度为$5.57δ$的墙壁上的弓形分离线,是从油流可视化中追溯到的。使用放置在墙上的静压端口进行调查的平均压力分布绘制了平稳,高压和分离流中的低压区域,与三维相互作用不同。测试了十种控制构型,并在不同压力区域中沿中跨度放置的吸气孔进行了测试。从油流可视化中观察到显着的跨度“平均分离长度的平均减少”最高为$0.93δ$。对各种控制配置的观测值进行比较表明,从高压区域中流血可以一般延迟分离并降低气泡尺寸。此外,随着时间分辨的Schlieren可视化已证实,随着高压区域的引入吸力,“中跨分离长度”和“冲击 - 近期区域”的降低。对Schlieren数据进行的傅立叶和正交分解分析已确认存在有或没有控制的情况下,以$ 10^{ - 2} $的订单数量$ 10^{ - 2} $存在低频分离震动振荡。此外,通过从位于高压和低压区域中的两个孔中同时引入吸力,频谱中分离震动的振动幅度降低。

The unsteady three-dimensional separated flow on a wall induced by a square protrusion (approximately twice the local boundary layer thickness in width and height), and its control by means of passive suction through holes, is investigated using wind tunnel experiments at Mach $2.87$. The baseline flow without any control was characterized and compared against the cases with bleed. A bow-shaped separation line on the wall with a mid-span separation length of $5.57δ$ from protrusion face was traced from oil-flow visualization. The averaged pressure distribution surveyed using static pressure ports placed on the wall has mapped plateau, high-pressure, and a low-pressure region in the separated flow, distinctive to three-dimensional interactions. Ten control configurations were tested with suction holes placed along mid-span in the different pressure zones. Significant spanwise `Mean Reduction in Separation Length' of up to $0.93δ$ was observed from oil-flow visualization. A comparison of observations from various control configurations suggested that bleeding the flow from the high-pressure region could in general delay the separation and reduce the bubble size. Further, time-resolved schlieren visualizations have confirmed reduction in both `mid-span separation length' and `shock-intermittent-region' with the introduction of suction in high-pressure region. Fourier and Proper Orthogonal Decomposition analysis done on the schlieren data has confirmed the presence of low-frequency separation-shock oscillations at Strouhal Numbers of order $10^{-2}$, both with and without control. Furthermore, the amplitudes of separation-shock oscillations in the spectrum were reduced with the introduction of suction simultaneously from two holes placed in high and low-pressure regions.

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