Vapor ingestion phenomenon in weightlessness
Vapor ingestion phenomenon during draining in weightlessness
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Vapor ingestion phenomenon during draining in weightlessness
Lunar module gas-bubble ingestion
Interface stability and relations to gas ingestion in viscoseals
Short latency antidiuresis following initiation of food ingestion by food deprived rats, noting possible signaling factor
Turbulent viscoseals gas ingestion and fluid inertia analysis using stability of dynamic gas-liquid interface between rotating cylinders
Hot gas ingestion investigation of large scale jet vertical takeoff fighter type aircraft
Vapor ingestion phenomenon in hemispherically bottomed tanks in normal gravity and in weightlessness
Dielectrophoretic baffling to control vapor ingestion in weightlessness
Gas ingestion control, and characteristic length and aspect ratio effects on viscoseals
Food ingestion initiation, investigating role of hypoosmotic solutions from observation of rats under water deprivation
Antidiuresis associated with oral cavity stimulation during food ingestion by rats
Exhaust gas ingestion suppression model tests for VTOL lift engines, measuring inlet thermal environment
Model tests of concepts to reduce hot gas ingestion in VTOL lift engines in low and cross wind conditions - graphs
Pill-sized transmitter measures deep body temperature in studies of circadian rhythm and indicates general health. Ingestible device is a compromise between accuracy, circuit complexity, size and transmission range.
An inlet-coldpipe assembly was placed in a Mach 0.4 stream to ingest the tip vortex of a forward mounted wing. The strongest vortex was produced by a wing angle of attack of 11 degrees. The vortex displayed a tangential velocity of 57 percent of local stream velocity prior to entering the inlet, and a tangential velocity of 25 percent of local velocity at the simulated compressor-face. The total-pressure profiles measured by standard compressor-face rakes were changed by the presence of the vortex only at the highest tested inlet mass-flow ratios.
A telemetry device comprised of a pill-size ingestible transmitter developed to obtain deep body temperature measurements of a human is described. The device has particular utility in the medical field where deep body temperatures provide an indication of general health.
An approximate analytical technique is presented for estimating the liquid residual in a tank of arbitrary geometry due to vapor ingestion at any drain rate and acceleration level. The bulk liquid depth at incipient pull-through is defined in terms of the Weber and Bond numbers and two functions that describe the fluid velocity field and free surface shape appropriate to the tank geometry. Numerical results are obtained for the Centaur LH2 tank using limiting approximations to these functions.
The effects of hypernatremia and hypercalcemia on plasma volume and electrolyte distribution during rest, exercise and recovery in cool and hot environments are investigated. Plasma volume, protein and electrolytes were measured in two groups of five men in the supine position during rest, exercise at 40-47% maximal oxygen consumption and recovery in 26.5 C and 39.4 C environments, after ingestion in the rest period of 16-17 ml/kg hypertonic NaCl, isotonic NaCl or hypertonic calcium gluconate solutions. During the rest period, it is found that the hypertonic Ca drink prevents any rise in plasma volume in both cool and hot environments, while hypertonic Na retarded hypervolemia only in the cool environment and consumption of both isotonic and hypertonic Na in the heat resulted in a hypervolemic response twice as great as that in the cool environment. During exercise and recovery, plasma volume is found to be greatest after drinking hypertonic Na in the heat, while the normal hypervolemic responses during exercise were not influenced by drink composition. Results suggest that hypertonic drinks may be better for maintaining plasma volumes during exercise in the heat.