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Flow Turbulence and Pressure Fluctuations in a Hydraulic Jump

doi: 10.3390/su151914246
Turbulence and pressure fluctuations are key elements in the bed protection design of hydraulic structures. However, their roles in a hydraulic jump are not yet fully understood, and the nature of their relationships are not conclusive. In order to better understand the relationships between pressure fluctuations and flow characteristics of a hydraulic jump downstream of a weir, detailed measurements of flow kinematics using the nonintrusive techniques of particle image velocimetry and bubble image velocimetry and pressure using voltage-type pressure gauges were carried out in this study. The physical modeling of the hydraulic jump was carried out using the simultaneous measurements of pressure and turbulent flow properties. The distributions of flow properties, such as water level and velocity, were assessed in each case. Based on the measurements, the correlations between the pressure fluctuations and the variables were investigated by coupling the statistical values of the variables at the same points. The analysis results show that the water level and turbulence intensity are the main factors influencing the pressure fluctuations in the hydraulic jump. Using these factors, an empirical formula and dimensionless numbers are proposed to show that the pressure fluctuations depend on the bubble flow behavior.
- Universitas Dr. Soetomo Indonesia
- Universitas Dr. Soetomo Indonesia
- Kunsan National University Korea (Republic of)
- Arizona State University United States
- Korea Institute of Civil Engineering and Building Technology Korea (Republic of)
particle images velocimetry, bubble image velocimetry, Environmental effects of industries and plants, hydraulic jump, turbulence, TJ807-830, TD194-195, Renewable energy sources, Environmental sciences, air-water flow, GE1-350
particle images velocimetry, bubble image velocimetry, Environmental effects of industries and plants, hydraulic jump, turbulence, TJ807-830, TD194-195, Renewable energy sources, Environmental sciences, air-water flow, GE1-350
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