Convective Inertia and Gas Ingestion Effects on Flow Regimes of the Viscoseal Theory and Experiment
Theoretical and experimental study of convective inertia and gas ingestion effects on flow regimes of viscoseal
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Theoretical and experimental study of convective inertia and gas ingestion effects on flow regimes of viscoseal
Viscosity and external constraints studied for effects on wave transmission in blood vessels
Fokker-Planck analysis of effective viscosity of streaming collisionless plasma in weakly turbulent magnetic field
Viscoseal operation in superlaminar flow regime noting pressure patterns, end effect, gas ingestion and sealing capacity
Additional matrix elements necessary for third approximation to viscosity of multicomponent gas mixtures
Dilute gas viscosity coefficient data evaluated for simple gases above room temperature, discussing correctness and experimental discrepancies
Negative eddy conductivities and viscosity generation in presence of buoyancy and shear, noting turbulence decay with time
Reynolds number, viscosity and atom concentration in hypervelocity nozzles measured using stagnation point heat transfer
Solar wind plasma turbulence and dissipation, noting viscosity and power spectra of magnetic field
Ionized H-u mixtures high temperature viscosity and diffusivity calculation method
Viscoseal bearing experimental analysis of bearing characteristics and sealing performance
Surface tension, viscosity, and density of fluorocarbon solvents as function of temperature
Interface stability and relations to gas ingestion in viscoseals
Nondestructive tests for determining braze bond quality of open face honeycomb seal rings, using low viscosity liquids with fluorescent additives
Turbulent viscoseals gas ingestion and fluid inertia analysis using stability of dynamic gas-liquid interface between rotating cylinders
Dilute solution of He 3 in He 4 near absolute zero measured for viscosity, showing temperature effect
Viscosity measurements of dilute solutions of helium 3 in superfluid helium 4
Controlled viscosity glass based protective coatings for superalloys for turbine blade applications