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- W2318442527 abstract "Three definitive concepts and a discussion of other methods, not detailed, are presented, each of which holds promise for application on space vehicles operating in a zero-g environment. Advantages and disadvantages are listed, emphasizing parameters of weight, physical size, power consumption, and heat generation, as well as adaptability of various tank configurations. Discussions are in descending order of probable acceptance considering these lists. Of considerable interest is the Molimetric system, whose principle of operation is based on injection of a premeasured quantity of inert trace gas into the tank ullage. The density of the gas then provides an accurate measure of gas volume. From this measurement, and knowing tank volume and ambient temperature, fluid volume and mass signals are developed in a small signal conditioner. Trace gas density is read by means of infra-red (or other radiation) absorption exerted by the gas itself. Accuracy in the order of 0.5% should be obtained; total weight is about 3 Ib; power consumption is 2 w. Other methods discussed include a pressurevolume (acoustic) system, which features good accuracy with moderate weight and power, and a tank wall-located capacitance system involving a fair amount of logic circuitry." @default.
- W2318442527 created "2016-06-24" @default.
- W2318442527 creator A5023170320 @default.
- W2318442527 date "1965-07-26" @default.
- W2318442527 modified "2023-09-26" @default.
- W2318442527 title "Methods of gaging fluids under zero-g conditions" @default.
- W2318442527 doi "https://doi.org/10.2514/6.1965-365" @default.
- W2318442527 hasPublicationYear "1965" @default.
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