Affiliation:
1. School of Naval Architecture Ocean and Energy Power Engineering, Wuhan University of Technology, Wuhan 430063, China
2. College of Electronic Engineering, Naval University of Engineering, Wuhan 430030, China
Abstract
In this study, ultrasonic sensors were used to measure the vertical vortex at flood discharge outlets in real time, and numerical simulations and model experiments were conducted. When a sound signal passes through a vortex, its propagation characteristics will change, which helps to determine the existence of the vortex. Moreover, its characteristic parameters can be obtained through inversion. In this paper, first, the theories of acoustic measurement methods were introduced and their feasibility was verified through a comparison between Particle Image Velocimetry (PIV) measurement and numerical simulation results. Then, the Computational Fluid Dynamics (CFD) method was used to simulate the vertical vortex at the flood discharge outlets of hydraulic structures and the simulation data were restored to the actual size at scale. Finally, acoustic numerical simulations of actual vortex data were conducted, and ultrasonic sensors were used to measure the velocity of a simplified vertical vortex model under laboratory conditions. The research results indicate that the acoustic measurement method proposed in this article is effective in the measurement of the characteristic parameters of vertical vortex with a core radius of 0.03~0.05 m and a maximum tangential velocity of 0.5 m/s, the measurement error of the maximum tangential velocity is within 10%.
Funder
National Natural Science Foundation of China
Reference41 articles.
1. Study on Hydraulic Characteristics of a Horizontal Eddy-elimination Barries Eliminating Vertical Vortex in Front of Sluice Gate;Yue;Water Resour. Power,2023
2. Research for flow pattern in intake of hydroelectric station;Chen;J. Hydro Dyn. (Ser. A),2005
3. Ultrasound as A Probe of Turbulence;Lund;Phys. D Nonlinear Phenom.,1989
4. Experimental and Numerical Investigation of Free Surface Vortex;Li;J. Hydro Dyn. (Ser. B),2008
5. Experimental studies on characteristics of vortex formed in front of radial gate;Sun;Hydro Sci. Eng.,2017