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Prospects for Energy-Saving Schemes in High-Pressure Cryosystems

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REFERENCES

  1. Ya. L. Brailovskii, “Research on cryosystems for industrial plant,” Vestnik Mezhdunarodnoi Akademii Kholoda, Issue 4, 16–19 (1999).

  2. Ya. L. Brailovskii, “Simulating high-pressure pumped cryosystems,” Kholod.Tekh.Tekhnol., No. 61, 7–11 (1999).

  3. Ya. L. Brailovskii, “Reducing energy consumption in high-pressure pumped cryosystems,” Visnik Derzhavnogo Universitetu, L'viv, No. 2, 65–69 (1999).

  4. Ya. L. Brailovskii, “A study on systems for storing, transporting, and gasifying cryogenic liquids,” Khim.Neft.Mashinostr., No. 7, 21–24 (1999).

  5. Ya. L. Brailovskii and A. L. Tsykalo, “An efficient scheme for gasifying a cryogenic liquid,” Khim.Neft.Mashinostr., No. 10, 20–25 (1994).

  6. Ya. L. Brailovskii, “New vessel-pump cryosystem schemes,” Kholod.Tekh.Tekhnol., No. 67, 52–56 (2000).

  7. Ya. L. Brailovskii, “Efficiency in high-pressure pumped cryosystems,” Kholod.Tekh.Tekhnol., No. 65, 83–86 (2000).

  8. Jean-Elie Tornare, Cryogenic Pump Technology and Devices for NPSH Improvement, Cryomec, Switzerland, p. 10.

  9. Patent No. 4639197 USA, IPC F 04 B 3/00, F 04 B 15/08: Pump for Cryogenic Fluids, published 27.01.87.

  10. Author's Certificate 1511512 USSR, IPC F 17 C 5/02: An Apparatus for Pumping Liquefied Gas [in Russian], BI No. 36 (1989).

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Brailovskii, Y.L. Prospects for Energy-Saving Schemes in High-Pressure Cryosystems. Chemical and Petroleum Engineering 37, 562–566 (2001). https://doi.org/10.1023/A:1014829304705

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