DMD-based spatiotemporal superresolution measurement of a supersonic jet using dual planar PIV and acoustic data

IF 2.3 3区 工程技术 Q2 ENGINEERING, MECHANICAL Experiments in Fluids Pub Date : 2024-09-09 DOI:10.1007/s00348-024-03872-3
Sayumi Kaneko, Alvaro del Pozo, Hiroki Nishikori, Yuta Ozawa, Taku Nonomura
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Abstract

The present study applies a framework of the spatiotemporal superresolution measurement based on the total-least-squares dynamic mode decomposition, the Kalman filter and the Rauch-Tung-Striebel smoother to an axisymmetric underexpanded supersonic jet of a jet Mach number of 1.35. Dual planar particle image velocimetry was utilized, and paired velocity fields of the flow with a short time interval were obtained at a temporal resolution of 5000 Hz. High-frequency acoustic data of 200,000 Hz were simultaneously obtained. Then, the time-resolved velocity fields of the supersonic jet were reconstructed at a temporal resolution of 200,000 Hz. Also, time coefficients of dynamic modes in high temporal resolution were calculated. The correlation between time coefficients implies that the mixing promotion by screech tone causes the lift-up of the high-velocity fluid from the jet center and accelerates at the downstream side.

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利用双平面 PIV 和声学数据对基于 DMD 的超音速射流进行时空超分辨率测量
本研究将基于总最小二乘动态模式分解、卡尔曼滤波和 Rauch-Tung-Striebel 平滑器的时空超分辨率测量框架应用于马赫数为 1.35 的轴对称欠膨胀超音速射流。利用双平面粒子图像测速仪,以 5000 Hz 的时间分辨率获得了短时间间隔的成对流动速度场。同时还获得了 20 万赫兹的高频声学数据。然后,以 20 万赫兹的时间分辨率重建了超音速射流的时间分辨速度场。此外,还计算了高时间分辨率动态模式的时间系数。时间系数之间的相关性表明,尖啸音的混合促进作用使高速流体从射流中心抬升,并在下游侧加速。
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来源期刊
Experiments in Fluids
Experiments in Fluids 工程技术-工程:机械
CiteScore
5.10
自引率
12.50%
发文量
157
审稿时长
3.8 months
期刊介绍: Experiments in Fluids examines the advancement, extension, and improvement of new techniques of flow measurement. The journal also publishes contributions that employ existing experimental techniques to gain an understanding of the underlying flow physics in the areas of turbulence, aerodynamics, hydrodynamics, convective heat transfer, combustion, turbomachinery, multi-phase flows, and chemical, biological and geological flows. In addition, readers will find papers that report on investigations combining experimental and analytical/numerical approaches.
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