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An experimental investigation into supercavity closure mechanisms
Ashish Karn
, Roger E.A. Arndt
,
Jiarong Hong
Aerospace Engineering and Mechanics
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
196
Scopus citations
Overview
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Keyphrases
Closure Mechanism
100%
Supercavity
100%
Ventilation Rate
75%
Blockage Ratio
50%
Flow Condition
37%
Air Entrainment Rate
37%
Froude number
37%
Twin Vortex
37%
Quad
25%
Vortex
25%
Mode Transition
25%
Blockage Effect
25%
Cavitation number
25%
Re-entrant Jet
25%
Ventilated Supercavity
25%
Flow Regime
12%
Minimum Value
12%
Physical Mechanism
12%
Flow Physics
12%
Water Tunnel
12%
Recirculated Water
12%
Internal Flow
12%
Physical Frameworks
12%
Water Velocity
12%
Cavitator
12%
Ventilated Supercavitation
12%
Specific Flow
12%
Flow Setting
12%
Coefficient Ratio
12%
Closed Wall
12%
Supercavity Formation
12%
High-resolution Photography
12%
Engineering
Experimental Investigation
100%
Supercavities
100%
Vortex
45%
Flow Condition
27%
Flow Rate
27%
Air Entrainment
27%
Froude Number
27%
Flow Velocity
27%
Blockage Effect
18%
Cavitation Number
18%
Entrant Jet
18%
Flow Regime
9%
Numerical Study
9%
Broad Range
9%
Attainment
9%
Measure Pressure
9%
Flow Physic
9%
High Resolution
9%
Internal Flow
9%
Tunnel
9%
Material Science
Vortex
100%