Chemical and Petroleum Engineering

, Volume 12, Issue 5, pp 412–415 | Cite as

Determining the characteristics of high-pressure pumps for cryogenic liquids

  • V. I. Lyashkov
Construction and Design of Machines and Equipment
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Keywords

Cryogenic Liquid 
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Literature cited

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    K. S. Butkevich, E. N. Smirnov, A. N. Seryakova, and Yu. F. Malyshkin, “Gasification equipment for the production of nitrogen at up to 1500 kgf/cm2,” Khim. Neft. Mashinostr., No. 9, 9–10 (1971).Google Scholar
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    A. A. Vasserman, Ya. Z. Kazavchinskii, and V. A. Rabinovich, Thermal and Physical Properties of Air and Its Components [in Russian], Nauka, Moscow (1966).Google Scholar
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    V. I. Epifanova and L. S. Aksel'rod (editors), Separation of Air by Deep Cooling [in Russian], Part 2, Mashinostroenie, Moscow (1973).Google Scholar
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    A. A. Vasserman and V. A. Rabinovich, Thermal and Physical Properties of Liquid Air and Its Components [in Russian], Standartov, Moscow (1968).Google Scholar
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    V. I. Lyashkov, “Numerical computer simulation of operation of high-pressure pumps for cryogenic liquids,” Khim. Neft. Mashinostr., No. 10, 14–16 (1972).Google Scholar
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    V. P. Preobrazhenskii, Thermotechnical Measurements and Instruments [in Russian], Gosénergoizdat, Moscow (1953).Google Scholar
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    E. N. Smirnov and V. I. Epifanova, “Calculation of the delivery coefficient for a high-pressure pump with slotted seals for cryogenic liquids,” Khim. Neft. Mashinotr., No. 9, 6–7 (1969).Google Scholar

Copyright information

© Plenum Publishing Corporation 1977

Authors and Affiliations

  • V. I. Lyashkov

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