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- W2018920993 abstract "Abstract A theoretical study of a simple and reliable technique for cooling small components to cryogenic temperatures has been concluded. This study indicated that cooling produced by the sublimation of solids is feasible and particularly well suited for long-term use in the space environment. In an experimental program, a laboratory model of a cryogenic-solid cooling system was developed. This program demonstrates the practicality of this cooling technique. For example, a cooling system employing solid methane at 77°K will provide 0.1 W of cooling for 1 year. This system will weigh approximately 35 lb, employ but one moving part, and require no power. It would be unaffected by lack of gravity and would use the vacuum of space to advantage. Additionally, this system could be operated within the earth's atmosphere by providing a source of low pressure, such as a simple mechanical vacuum pump. Through the use of other solidified gases such as nitrogen, neon, and hydrogen, various temperature ranges could be achieved. A brief review of the study program and the work carried out under the experimental program is described. The results obtained with the laboratory model of the cooling system are compared with the predicted analytical values." @default.
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- W2018920993 date "1964-10-01" @default.
- W2018920993 modified "2023-09-24" @default.
- W2018920993 title "A cryogenic-solid cooling system" @default.
- W2018920993 doi "https://doi.org/10.1016/0020-0891(64)90022-3" @default.
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