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Подробные сведения о темах исследования «Gap Cavitation in the End Clearance of a Guide Vane of a Hydroturbine: Numerical and Experimental Investigation». Вместе они формируют уникальный семантический отпечаток (fingerprint).
Физика и астрономия
Aeronautics
guide vanes
cavitation flow
vanes
unsteady flow
turbulent flow
General
clearances
angle of attack
two dimensional flow
geometry
fluid flow
boundary layers
simulation
grids
vortices
vapor phases
fluids
profiles
cells
Chemistry and Materials
Physics
low pressure
flow velocity
Reynolds equation
velocity distribution
high speed
Aerospace Sciences
Engineering
trailing edges
pressure reduction
particle image velocimetry
leading edges
computational fluid dynamics
Mathematical and Computer Sciences
Математика
Cavitation
Clearance
Numerical Investigation
Experimental Investigation
Cavity
Attack
High-speed Imaging
Angle
Numerical Simulation
Sea Surface Temperature
Reynolds Equation
Spatial Structure
Velocity Distribution
Unsteady Flow
Finite Volume Method
Computational Fluid Dynamics
Turbulent Flow
Fluid Flow
Immediately
Two Parameters
Boundary Layer
Vortex
Turbulence
Grid
Fluid
Three-dimensional
Cell
Model
Experiment
Технические дисциплины и материаловедение
Cavitation
Hydrofoils
Vapors
Angle of attack
Flow velocity
Reynolds equation
Geometry
Computer simulation
Finite volume method
Unsteady flow
Velocity distribution
Turbulent flow
Flow of fluids
Computational fluid dynamics
Boundary layers
Vortex flow
Turbulence
Imaging techniques
Fluids
Experiments