Journal of Flow Control, Measurement & Visualization

Journal of Flow Control, Measurement & Visualization

ISSN Print: 2329-3322
ISSN Online: 2329-3330
www.scirp.org/journal/jfcmv
E-mail: jfcmv@scirp.org
"High Speed Observation of Periodic Cavity Behavior in a Convergent-Divergent Nozzle for Cavitating Water Jet"
written by Keiichi Sato, Yuta Taguchi, Shota Hayashi,
published by Journal of Flow Control, Measurement & Visualization, Vol.1 No.3, 2013
has been cited by the following article(s):
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[2] Cavitation patterns in high-pressure homogenization nozzles with cylindrical orifices: Influence of mixing stream in Simultaneous Homogenization and Mixing
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[3] Determination of the shedding frequency of cavitation cloud in a submerged cavitation jet based on high-speed photography images
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[4] Experimental Study on the Unsteady Natural Cloud Cavities: Influence of Cavitation Number on Cavity Evolution and Pressure Pulsations
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[5] Experimental study on unsteady characteristics of the transient cavitation flow
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[6] Experimental Investigation of Cavity Dynamics in Convergent-Divergent Nozzle in Sheet Mode
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[7] Erosion Mechanism of a Cavitating Jet on Groove Roughness
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[8] Influence of thickness of hydrophobic polytetrafluoroethylene (PTFE) coatings on cavitation erosion of hydro-machinery steel SS410
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[9] Erosion Mechanism of a Cavitating Jet on Groove Roughness. Fluids 2021, 6, 6
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[10] Cavitating jet: A review
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[11] Influence of Cavitation and Mixing Conditions on Oil Droplet Size in Simultaneous Homogenization and Mixing (SHM)
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[12] Скважинный излучатель для создания поля упругих колебаний в геологической среде
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[14] Downhole Emitter for Creating a Field of Elastic Vibrations in a Geological Environment
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[15] Erosion Characteristics and the Corresponding Self-Resonating Oscillations of Cavitating Jet on Oblique Surfaces
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[16] Effects of nozzle lip geometry on the cavitation erosion characteristics of self-excited cavitating waterjet
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[17] Design and Development of High-Velocity Submerged Water Jet Cavitation Erosion Test Rig
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[18] Experimental Study on the Unsteady Characteristics and the Impact Performance of a High-Pressure Submerged Cavitation Jet
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[19] Enhancing the Aggressive Intensity of a Cavitating Jet by Introducing Water Flow Holes and a Long Guide Pipe
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[20] 噴流クラウドキャビテーションのリエントラント挙動
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[21] Dynamic characteristics of the cavitation clouds of submerged Helmholtz self-sustained oscillation jets from high-speed photography
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[22] Submerged Waterjet
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[23] One-dimensional/three-dimensional analysis of transient cavitating flow in a venturi tube with special emphasis on cavitation excited pressure fluctuation prediction
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[24] Dynamic behaviour of cavitation clouds: visualization and statistical analysis
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[25] Dynamic characteristics of the cavitation clouds of submerged Helmholtz self-sustained oscillation jets from high-speed photography.
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[26] Pressure fluctuation and surface morphology induced by the high-pressure submerged waterjet confined in a square duct
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[27] Experimental investigation on the cavitation performance in a venturi reactor with special emphasis on the choking flow
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[28] Effect of taper, pressure and temperature on cavitation extent and dynamics in micro-channels
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[29] Thermodynamic effects on Venturi cavitation characteristics
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[30] 110th Anniversary: Comparison of Cavitation Devices Based on Linear and Swirling Flows: Hydrodynamic Characteristics
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[36] Inhibition of cloud cavitation on a flat hydrofoil through the placement of an obstacle
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[39] Modeling hydrodynamic cavitation in venturi: influence of venturi configuration on inception and extent of cavitation
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[40] Experimental observation of the erosion pattern, pits, and shockwave formation in a cavitating jet
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[41] Analysis of Co-Flow Water Cavitation Peening of Al7075-T651 Alloy Using High-Speed Imaging and Surface Pitting Tests
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[42] Numerical simulation of unsteady cavitating jet by a compressible bubbly mixture flow method
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[44] Effect of Ventilation on the Velocity Decay of Cavitating Submerged Water Jet
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[45] 淹没空化射流空泡云动态变化规律研究
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[46] Flow structures and cavitation in submerged waterjet at high jet pressure
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[47] Periodic Behavior of Cavitation Cloud Shedding in Submerged Water Jets Issuing from a Sheathed Pipe Nozzle
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[48] Experimental investigation of cavitating structures in the near wake of a cylinder
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[49] Numerical investigation of periodic cavitation shedding in a Venturi
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[50] Time-resolved observations of pit formation and cloud behavior in cavitating jet
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[51] Numerical analysis of cavitation cloud shedding in a submerged water jet
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[52] Numerical approach to reproduce instabilities of partial cavitation in a Venturi 8° geometry
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[53] Visualization Observation of Cavitation Cloud Shedding in a Submerged Water Jet
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[54] Numerical Simulation of Unsteady Cavitation in a High-speed Water Jet
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[55] Simultaneous shadowgraph imaging and acceleration pulse measurement of cavitating jet
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[56] 柴油喷孔内云空化的试验和大涡模拟
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[57] Numerical approach to reproduce instabilities of partial cavitation in a venturi 8◦ geometry
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[58] Effects of Diffuser Length on Cloud Cavitation in an Axisymmetrical Convergent-Divergent Nozzle
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[59] Modélisation et simulation d'écoulements turbulents cavitants avec un modèle de transport de taux de vide
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[60] High-pressure emulsion formation in cylindrical coaxial orifices: Influence of cavitation induced pattern on oil drop size
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[61] Confirmation on the effectiveness of rectangle-shaped flapper in reducing cavitation in flapper–nozzle pilot valve
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[62] Monitoring Cavitation Regime from Pressure and Optical Sensors: Comparing Methods using Wavelet Decomposition for Signal Processing
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[63] Shadowgraph Imaging of Cavitating Jet
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[64] Numerical analysis of high-speed Lithium jet flow under vacuum conditions
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[65] Re-entrant jet mechanism for periodic cavitation shedding in a cylindrical orifice
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[66] Unsteady Behavior of Cavitating Waterjet in an Axisymmetric Convergent-Divergent Nozzle: High Speed Observation and Image Analysis Based on Frame Difference Method
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