606 different keyphrases | Search | Percent |
tab_hty | 15 | 1.9 % |
orifice experiment | 9 | 1.1 % |
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orifice cavitation | 8 | 1 % |
restriction orifice | 7 | 0.9 % |
azipod | 6 | 0.7 % |
source code for preconditioning method or artificial compressibilty for solving ns equation | 6 | 0.7 % |
orifice plate cavitation | 5 | 0.6 % |
rarefaction wave | 5 | 0.6 % |
acoustic emission from micro bubbles in ultrasound field | 5 | 0.6 % |
cavitation erosion noise | 4 | 0.5 % |
restriction orifice cavitation | 4 | 0.5 % |
cavitation noise | 4 | 0.5 % |
cavitation fluent | 4 | 0.5 % |
added mass calculation | 4 | 0.5 % |
simulation cavitation inception | 4 | 0.5 % |
cavitation erosion | 4 | 0.5 % |
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cavitation number orifice | 3 | 0.3 % |
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tip vortex cavitation models | 3 | 0.3 % |
supercavitating trajectory | 3 | 0.3 % |
criteria of submerged vortices | 3 | 0.3 % |
experimental study of ventilated cavities on dynamic test model. | 3 | 0.3 % |
supercavity blockage effect | 3 | 0.3 % |
abstract of supercavitation | 3 | 0.3 % |
kaplan turbine cavitation | 3 | 0.3 % |
control of supercavitation flow and stability of supercavitating motion of bodies | 3 | 0.3 % |
cavitation model | 3 | 0.3 % |
cavitation | 3 | 0.3 % |
predicion of unsteady cavity behavior around 2-d hydrofoil in heave or gust | 3 | 0.3 % |
serebryakov v.v. supercavitating | 2 | 0.2 % |
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restriction orifice design | 2 | 0.2 % |
hydrodynamics three-dimensional hydrofoil | 2 | 0.2 % |
water entry and the cavity-running behaviour of missiles | 2 | 0.2 % |
ventilated cavity similarity | 2 | 0.2 % |
cavitation vortex calculation | 2 | 0.2 % |
added mass in surge | 2 | 0.2 % |
cav2001 sessiona3.002 | 2 | 0.2 % |
4th international symposium on cavitation california institute of technology pasadena ca june 20-23 2001 | 2 | 0.2 % |
cavitation erosion franc | 2 | 0.2 % |
joint time-frequency analysis method and application | 2 | 0.2 % |
orifice de restriction | 2 | 0.2 % |
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cavitation tip sheet | 2 | 0.2 % |
spiraling bubbles how acoustic and hydrodynamic forces compete | 2 | 0.2 % |
numerical study of the effect of the leading edge shape on cavitation around inducer blade sections | 2 | 0.2 % |
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the influence of the rudder on the propulsive performance | 2 | 0.2 % |
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developed cavitation flows | 2 | 0.2 % |
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ventilated cavities | 2 | 0.2 % |
reentrant flow head loss | 2 | 0.2 % |
cavitation in orifice | 2 | 0.2 % |
butterfly valve cavitation | 2 | 0.2 % |
spherical solid\\ | 2 | 0.2 % |
bubble dynamics navier stokes | 2 | 0.2 % |
cavitation inception simulation | 2 | 0.2 % |
foil naca0015 cavitation arndt | 2 | 0.2 % |
the method for predicting the rudder design | 2 | 0.2 % |
effects of inducer leading edge on instabilities | 2 | 0.2 % |
vladimir semenenko | 2 | 0.2 % |
sg2 | 2 | 0.2 % |
h. yamaguchi hydrofoil | 2 | 0.2 % |
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vibration fft spectrum for discharge cavitation | 1 | 0.1 % |
restriction orifice erosion | 1 | 0.1 % |
cavitation test | 1 | 0.1 % |
cavitation erosion hydrodynamics scaling laws practical | 1 | 0.1 % |
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a numerical method for predicting the cavitation inception of a submerged vortex in pump sump | 1 | 0.1 % |
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introduction to joint time frequency analysis methods and applications pdf | 1 | 0.1 % |
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numerical simulations in unsteady cavitating flows | 1 | 0.1 % |
roosen untersuchung und modellierung des transienten verhaltens | 1 | 0.1 % |
supersonic vibrators cavitation | 1 | 0.1 % |
cfd vortex pump | 1 | 0.1 % |
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orifice noise calculation | 1 | 0.1 % |
cavitating backflow | 1 | 0.1 % |
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helical inducer | 1 | 0.1 % |
experiment orifice | 1 | 0.1 % |
robert kuklinski | 1 | 0.1 % |
a numerical study of slamming of two-dimensional bodies. 1986. | 1 | 0.1 % |
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noisy orifice plate | 1 | 0.1 % |
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the effects of cavitation | 1 | 0.1 % |
erosion cavitation | 1 | 0.1 % |
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shaft cavitation effect on ship hull | 1 | 0.1 % |
cryogenic liquid nitrogen flow in piping | 1 | 0.1 % |
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cavitation fluent tips | 1 | 0.1 % |
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cavity yakimov | 1 | 0.1 % |
dynamics of bubble oscillation in constrained media and mechanisms of vessel rupture in shock wave lithotripsy conference | 1 | 0.1 % |
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propeller vortex models | 1 | 0.1 % |
cavitation erosion prediction from inferred forces using material resistance data | 1 | 0.1 % |
turbopump filetype pdf | 1 | 0.1 % |
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cavitation experiment | 1 | 0.1 % |
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effect on water quality | 1 | 0.1 % |
high speed camera for two phase flow visualization study | 1 | 0.1 % |
hydroplane prediction motion filetype pdf | 1 | 0.1 % |
cd nozzle with small throat | 1 | 0.1 % |
experimental and asymptotic study of nonspherical bubble collapse | 1 | 0.1 % |
vortex generations in sump of pump | 1 | 0.1 % |
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orifice noise | 1 | 0.1 % |
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ship propellors erosion | 1 | 0.1 % |
pipe orifice noise | 1 | 0.1 % |
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project on demonstrate wingtip vortices from a 3-d model with fluent analysis | 1 | 0.1 % |
ogilvie tuck 1969 filetype pdf | 1 | 0.1 % |
symposium on cavitation | 1 | 0.1 % |
conditions supercavitation | 1 | 0.1 % |
effect of outlet angle in cavitating flows | 1 | 0.1 % |
cavitation noise effects | 1 | 0.1 % |
vortex relation ship to suction nozzle | 1 | 0.1 % |
hitoshi soyama | 1 | 0.1 % |
k.m. kalumuck g.l. chahine j. fluid. eng. 122 2000 465–470. | 1 | 0.1 % |
rudder and propeller cavitaion | 1 | 0.1 % |
caviation orifice | 1 | 0.1 % |
what are the characteristics of water quality | 1 | 0.1 % |
physically realistic models of catastrophic bubble collapses presented at cav2001 fourth international symposium on cavitation . | 1 | 0.1 % |
cavitation generation mechanism of propeller | 1 | 0.1 % |
tropical bubble oscillation | 1 | 0.1 % |
tullis and govindarajan 1973 orifice | 1 | 0.1 % |
pump sump design calculation | 1 | 0.1 % |
naca0009 hydrofoil | 1 | 0.1 % |
cavitation cryogenic preconditioning | 1 | 0.1 % |
cavitation vibating plate in fluid | 1 | 0.1 % |
prediction of unsteady cavity behavior around 2-d hydrofoil in heave or gust | 1 | 0.1 % |
vortex aspiration | 1 | 0.1 % |
supercavitation drag | 1 | 0.1 % |
numerical methods for propeller design and analysis in steady flow greely | 1 | 0.1 % |
noise in propellers | 1 | 0.1 % |
schnerr sauer kavitation | 1 | 0.1 % |
effects of cavitation centrifugal pump | 1 | 0.1 % |
orifice allowable cavitation level | 1 | 0.1 % |
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water cavitation orifice | 1 | 0.1 % |
presence of bubbles nozzle waterjet | 1 | 0.1 % |
supersonic cavitation | 1 | 0.1 % |
water quality characterstics ajmer | 1 | 0.1 % |
calculating vortex in liquid drain submergence | 1 | 0.1 % |
shockwave simulation | 1 | 0.1 % |
bubble distrib | 1 | 0.1 % |
orifice vibration | 1 | 0.1 % |
a cavitation erosion model for ductile materials | 1 | 0.1 % |
otihull calculation | 1 | 0.1 % |
experiments in fluids tip clearance vortex | 1 | 0.1 % |
some observations of tip-vortex | 1 | 0.1 % |
stripling acosta inducer | 1 | 0.1 % |
recording of sound generted by ventilated supercavity by hydrophone in water | 1 | 0.1 % |
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parallel unsteady turbo-pump simulations for liquid rocket engines | 1 | 0.1 % |
heat exchange between a gas bubble and a liquid | 1 | 0.1 % |
fourth international symposium on cavitation | 1 | 0.1 % |
molecular dynamics studies of cavitation | 1 | 0.1 % |
noise calculations for orifice | 1 | 0.1 % |
restriction orifice water line | 1 | 0.1 % |
“acoustic emission from micro bubbles in ultrasound field | 1 | 0.1 % |
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lecture on kaplan turbine | 1 | 0.1 % |
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games | 1 | 0.1 % |
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boundary element method trailing edge | 1 | 0.1 % |
sae technical papers | 1 | 0.1 % |
rotating cavitation это | 1 | 0.1 % |
range of frequncy of bubble collapse in supercavity | 1 | 0.1 % |
cavitation generator | 1 | 0.1 % |
restriction orifice use | 1 | 0.1 % |
calculation of the added mass and damping forces on supercavitating bodies | 1 | 0.1 % |
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results of water quality | 1 | 0.1 % |
types of orifice | 1 | 0.1 % |
3 max cavitation | 1 | 0.1 % |
restriction orifice installation in vertical for vents | 1 | 0.1 % |
pump intake vortices | 1 | 0.1 % |
cavitation tunnel background noise | 1 | 0.1 % |
cavitating jet apparatus for cavitating erosion testing | 1 | 0.1 % |
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discussion on cyclic cavitation in closed water tunnels and the influence from the dynamic response of the tunnel | 1 | 0.1 % |
tip cavitation | 1 | 0.1 % |
filetype pdf or filetype ps ship hsva | 1 | 0.1 % |
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dynamics of bubble oscillation in constrained media and mechanisms of vessel rupture in shock wave lithotripsy | 1 | 0.1 % |
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hattori shuji | 1 | 0.1 % |
flow orifice plate cavitation | 1 | 0.1 % |
characteristics of water quality | 1 | 0.1 % |
axial symmetry boundary element method | 1 | 0.1 % |
supercavitation-problems and perspectives | 1 | 0.1 % |
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propeller tunnel design | 1 | 0.1 % |
a potential based panel method for two-dimensional hydrofoil | 1 | 0.1 % |
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experiment is to determine the characteristics of a centrifugal pump | 1 | 0.1 % |
cavitation in kaplane turbine | 1 | 0.1 % |
c.e. brennen fission of collapsing cavitation bubbles | 1 | 0.1 % |
exchanger vortex cavitation failure picture | 1 | 0.1 % |
vortex problem near the intakes pump | 1 | 0.1 % |
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fission of collapsing cavitation bubbles | 1 | 0.1 % |
an investigation of cavity cycling for ventilated and nature cavities | 1 | 0.1 % |
rudder horn | 1 | 0.1 % |
added mass damping coefficients unsteady | 1 | 0.1 % |
pump test rig for cavitation | 1 | 0.1 % |
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physical investigation of a cavitation vortex collapse | 1 | 0.1 % |
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meters to measurement swirl in pump intakes | 1 | 0.1 % |
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nonlinear analysis of the flow around partially or super-cavitating hydrofoils by a potential based panel method | 1 | 0.1 % |
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experimental study of cavitation in a kaplan model turbine | 1 | 0.1 % |
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