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首页> 外文期刊>Aerospace >Shock Wave Diffraction Phenomena around Slotted Splitters †
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Shock Wave Diffraction Phenomena around Slotted Splitters †

机译:开槽式分流器周围的冲击波衍射现象†

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摘要

In the field of aerospace engineering, the study of the characteristics of vortical flows and their unsteady phenomena finds numerous engineering applications related to improvements in the design of tip devices, enhancement of combustor performance, and control of noise generation. A large amount of work has been carried out in the analysis of the shock wave diffraction around conventional geometries such as sharp and rounded corners, but the employment of splitters with lateral variation has hardly attracted the attention of researchers. The investigation of this phenomenon around two-dimensional wedges has allowed the understanding of the basic physical principles of the flow features. On the other hand, important aspects that appear in the third dimension due to the turbulent nature of the vortices are omitted. The lack of studies that use three-dimensional geometries has motivated the current work to experimentally investigate the evolution of the shock wave diffraction around two splitters with spike-shaped structures for Mach numbers of 1.31 and 1.59. Schlieren photography was used to obtain an insight into the sequential diffraction processes that take place in different planes. Interacting among them, these phenomena generate a complicated turbulent cloud with a vortical arrangement.
机译:在航空航天工程领域,对涡流特征及其不稳定现象的研究发现了与改进尖端装置设计,增强燃烧室性能以及控制噪声产生有关的众多工程应用。在围绕常规几何形状(例如尖角和圆角)的冲击波衍射分析中,已经进行了大量工作,但是使用具有横向变化的分离器几乎没有引起研究人员的注意。对围绕二维楔形体的这种现象的研究使人们能够了解流动特征的基本物理原理。另一方面,由于涡流的湍流特性而在第三维中出现的重要方面被省略。缺乏使用三维几何形状的研究促使当前的工作以实验方式研究马赫数为1.31和1.59的两个具有尖峰形结构的分光镜周围的冲击波衍射的演变。使用Schlieren摄影技术可以洞悉在不同平面上发生的顺序衍射过程。这些现象相互影响,产生涡旋排列的复杂湍流云。

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