An analysis is presented for defining the outlet contour of a hemispherical-bottomed cylindrical tank that will prevent vapor ingestion when the tank is drained. The analysis was used to design two small-scale tanks that were fabricated and then tested in a low gravity environment. The draining performance of the tanks was compared with that for a tank with a conventional outlet having a constant circular cross-sectional area, under identical conditions. Even when drained at off-design conditions, the contoured tank had less liquid residuals at vapor ingestion than the conventional outlet tank. Effects of outflow rate, gravitational environment, and fluid properties on the outlet contour are discussed. Two potential applications of outlet c...
STAR Category 34."July 1979"--Cover."Lewis Research Center."Includes bibliographical references.Mode...
The propellant tanks used in liquid rockets require pressurization gases in order to maintain tank p...
The filling of tanks with cryogens in the low-gravity environment of space poses many technical chal...
An experimental investigation was performed to determine the characteristics of liquid inflow to ini...
Behavior of propellant liquid-vapor interface outflow from cylindrical space vehicle tanks in weight...
Effect of outlet baffling on liquid residuals for outflow from cylinders in weightlessnes
An approximate analytical technique is presented for estimating the liquid residual in a tank of arb...
Analysis of liquid-vapor interface conditions in conical tanks in weightless environmen
An experimental investigation was conducted in which the behavior of liquid inflow to a cylindrical ...
An experimental investigation was conducted to study liquid-vapor interface behavior and subsequent ...
During the process of withdrawing fluids from tanks, surface distortion and subsequent gas ingestio...
The refilling of propellant tanks while in a low-gravity environment requires that entrapped vapor b...
Analytical and experimental investigation of propellant distribution during outflow of spherical tan...
Investigating liquid-vapor interface for wetting liquid in toroidal tank during weightlessnes
Vapor ingestion phenomena were investigated using scale models of the Centaur liquid hydrogen tank t...
STAR Category 34."July 1979"--Cover."Lewis Research Center."Includes bibliographical references.Mode...
The propellant tanks used in liquid rockets require pressurization gases in order to maintain tank p...
The filling of tanks with cryogens in the low-gravity environment of space poses many technical chal...
An experimental investigation was performed to determine the characteristics of liquid inflow to ini...
Behavior of propellant liquid-vapor interface outflow from cylindrical space vehicle tanks in weight...
Effect of outlet baffling on liquid residuals for outflow from cylinders in weightlessnes
An approximate analytical technique is presented for estimating the liquid residual in a tank of arb...
Analysis of liquid-vapor interface conditions in conical tanks in weightless environmen
An experimental investigation was conducted in which the behavior of liquid inflow to a cylindrical ...
An experimental investigation was conducted to study liquid-vapor interface behavior and subsequent ...
During the process of withdrawing fluids from tanks, surface distortion and subsequent gas ingestio...
The refilling of propellant tanks while in a low-gravity environment requires that entrapped vapor b...
Analytical and experimental investigation of propellant distribution during outflow of spherical tan...
Investigating liquid-vapor interface for wetting liquid in toroidal tank during weightlessnes
Vapor ingestion phenomena were investigated using scale models of the Centaur liquid hydrogen tank t...
STAR Category 34."July 1979"--Cover."Lewis Research Center."Includes bibliographical references.Mode...
The propellant tanks used in liquid rockets require pressurization gases in order to maintain tank p...
The filling of tanks with cryogens in the low-gravity environment of space poses many technical chal...