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
Engineering topics
Publications and source records attributed to Ludwig, L. P..
Theoretical and experimental study of convective inertia and gas ingestion effects on flow regimes of viscoseal
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Wear and friction of various polymer laminates in liquid nitrogen and in liquid hydrogen
Pressure patterns, gas ingestion and sealing capacity of viscoseals investigated using oil, water and liquid sodium as sealed fluids
Flow and pressure field analysis of parallel groove geometry for incompressible fluid with convective inertia effects
Helical groove viscosity seal using sodium and water as sealed fluids
Extreme temperature, vacuum, and chemically active fluid effects on bearing and sealing materials and lubricants
Experimental study of pressure, gas ingestion, and capacity of viscoseals, and mathematical model for deriving modified Reynolds number
End effect and pressure patterns in viscoseal with smooth rotor and stationary helically grooved housing