V. M. Polyaev, L. L. Morozova, and É. V. Kharybin, “Intensifying heat transfer in an annular channel,” Izv. Vyssh. Uchebn. Zaved., Mashinostr., No. 2, 86–89 (1976).
M. É. Aérov and O. M. Todes, Hydraulic and Thermal Principles of Operation of Equipment with Stationary and Fluidized Granular Beds [in Russian], Khimiya, Leningrad (1968).
S. V. Belov, Porous Metals in Engineering [in Russian], Mashinostroenie, Moscow (1981).
S. V. Belov, G. P. Pavlikhin, and V. S. Spiridonov, “The properties of filter elements made of porous metals,” Izv. Vyssh. Uchebn. Zaved., Mashinstr., No. 5, 96–101 (1978).
W. Requier and P. Uney, Development and Qualification of the Space Shuttle Orbiter Reaction Control System Propellant Tank, AIAA Paper, No. 1026, p. 12.
J. Eninger, Capillary Flow through Heat Pipe Wick, AIAA Paper, No. 661 (1975), p. 29.
A. V. Kurpatenkov, V. M. Polyaev, and A. L. Sintsov, “The dependence of porosity on deformation for packets of metal grids,” Poroshk. Metall., No. 4, 64–68 (1983).
H. Junge, “Zur Besting der Filterfeinheit von Tressengeweben mit dem Bubble-Point-Test,” Aufbereitings-Technik, No. 5, 209–216 (1978).
J. Tegart and J. Aydellott, “Effect of vibration on retention characteristics of screen acquisition system,” J. Spacecr. Rockets,16, No. 5, 319–325 (1979).
J. Stark, M. Blatt, F. Bennet, et al., Fluid Management Systems, Technology Summaries, NASA CR-134748 (1974).
J. Stark, R. Bradshow, and M. Blatt, “Low-G fluid behavior, technology summaries,” NASA CR-134746 (1974).
J. Tegart and A. Park, “Effect of vibration on retention characteristics of screen acquisition system,” NASA CR-135264 (1977).
G. F. Tikhonov and V. K. Sorokin, “A study of the properties of a porous fibrous material,” Izv. Vyssh. Uchebn. Zaved., Mashinostr., No. 7, 12–14 (1976).
S. V. Belov, G. P. Pavlikhin, and V. S. Spiridonov, “A study of the structural and hydraulic characteristics of porous grid metals,” Poroshk. Metall., No. 7, 53–56 (1978).