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Reducing the hydraulic drag of hydrogen-generating materials

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References

  1. USSR Application 956373 for an Inventor’s Certificate, 1964.

  2. International Patent Application 84/03265, 1984.

  3. Dorodnykh, V. and Kozhevnikov, M., Large Torpedos, Tekhn. Vooruzhenie, 1986, no. 12, pp. 36, 37.

  4. USSR Inventor’s Certificate 364493, 1970.

  5. Kobets, M.L. and Kobets, G.F., Biopolymers Reducing the Hydrodynamic Drag, Issledovanie po upravleniyu pogranichnym sloem (Research on Boundary-Layer Control), Novosibirsk: SO AN SSSR, 1976, pp. 71–86.

    Google Scholar 

  6. Fedyaevskii, K.K., Surface Friction in the Turbulent Boundary Layer of Compressed Gas, Tr. TsAGI, 1940, issue 516, p. 14.

  7. Varshavskii, I.L., Energoakkumuliruyushchie veshchestva i ikh ispol’zovanie (Energy-Storing Materials and Their Use), Kiev: Naukova Dumka, 1980.

    Google Scholar 

  8. Tereshchuk, V.S., Hydrogen Generation in the Oxidation of Aluminum in Water, Sb. nauch. dokl. IV Mezhdunarodnogo soveshchaniya po problemam energoakkumulirovaniya i ekologii v mashinostroenii, energetike i transporte (Proceedings of the Fourth International Conference on Energy Storage and Ecology in Manufacturing, the Power Industry, and Transportation), Moscow: IMASh RAN, 2004, pp. 158–177.

    Google Scholar 

  9. Sakharenko, V.A., Activation of Al by Metals for Hydrogen Liberation from Water, Extended Abstract of Cand. Sci. Dissertation, Institute of Organic and Inorganic Chemistry, Academy of Sciences of the Ukrainian SSR, Kiev, 1984.

    Google Scholar 

  10. Informatsionnyi listok KazNIINTI. Splav na osnove Al dlya polucheniya vodoroda (Information Sheet of the Kazan Scientific Research Institute of the Oil Industry: Al Alloy for Hydrogen Production), Kazan, 1984, no. 120, ser. 0.3.08.

  11. Kozin, L.F., Gorodysskii, A.V., and Sakharenko, V.A., Increasing the Reactivity of Al in Alloy Formation, Materialy 8 Vsesoyuznogo simpoziuma po goreniyu i vzryvu, Tashkent, Oktyabr, 1986 (Proceedings of the Eighth All-Union Symposium on Combustion and Explosions, Tashkent, October 1986), Chernogolovka, 1986.

  12. Bogdevich, V.G. and Evseev, A.R., Influence of Gas Saturation on Near-Wall Turbulence, Issledovanie po upravleniyu pogranichnym sloem (Research on Boundary-Layer Control), Novosibirsk: SO AN SSSR, 1976, pp. 49–61.

    Google Scholar 

  13. Basin, A.M., Korotkin, A.I., and Kozlov, L.F., Upravlenie pogranichnym sloem sudna (Controlling the Boundary Layer of a Ship), Leningrad: Sudostroenie, 1968.

    Google Scholar 

  14. Pol, R.V., Mekhanika, akustika, i uchenie o teplote (Mechanics, Acoustics, and Readings on Heat), Moscow: Nauka, 1972.

    Google Scholar 

  15. Malyuga, A.G. and Bogdevich, V.G., Surface-Friction Distribution in a Turbulent Boundary Layer in Water, Issledovanie po upravleniyu pogranichnym sloem (Research on Boundary-Layer Control), Novosibirsk: SO AN SSSR, 1976, pp. 62–70.

    Google Scholar 

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Original Russian Text © V.S. Tereshchuk, 2008, published in Vestnik Mashinostroeniya, 2008, No. 2, pp. 20–24.

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Tereshchuk, V.S. Reducing the hydraulic drag of hydrogen-generating materials. Russ. Engin. Res. 28, 117–122 (2008). https://doi.org/10.3103/S1068798X08020044

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