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JOURNALS // Zhurnal Vychislitel'noi Matematiki i Matematicheskoi Fiziki

Zh. Vychisl. Mat. Mat. Fiz., 1962, Volume 2, Number 5, Pages 884–901 (Mi zvmmf7915)

The numerical calculation of the laminar boundary layer in a compressible gas
Yu. N. Pavlovsky

This publication is cited in the following articles:
  1. K. G. Garaev, I. R. Mukhametzyanov, “Optimally controlled turbulent boundary layers in supersonic gas flows”, Matem. Mod., 35:7 (2023), 28–40  mathnet  mathnet  crossref
  2. K. G. Garaev, I. R. Mukhametzyanov, “Optimally Controlled Turbulent Boundary Layers in Supersonic Gas Flows”, Math Models Comput Simul, 15:S1 (2023), S18  crossref
  3. Grigorii Grigorevich Bilchenko, Natalya Grigorevna Bilchenko, “Analiz vliyaniya sochetanii lineinykh upravlyayuschikh vozdeistvii na oblast znachenii funktsionalov giperzvukovoi aerodinamiki”, sait, 2021, no. 2, 5  crossref
  4. G G Bilchenko, N G Bilchenko, “On the influence of linear blowing and constant temperature factor on the values of functionals of hypersonic aerodynamics”, J. Phys.: Conf. Ser., 1479:1 (2020), 012019  crossref
  5. G G Bilchenko, N G Bilchenko, “On the influence of linear temperature factor and constant blowing on the values of functionals of hypersonic aerodynamics”, J. Phys.: Conf. Ser., 1479:1 (2020), 012020  crossref
  6. G G Bilchenko, N G Bilchenko, “On the problems of analysis and synthesis of control of boundary layer on permeable surfaces of hypersonic aircraft”, J. Phys.: Conf. Ser., 1158 (2019), 022026  crossref
  7. Grigory Bilchenko, Nataly Bilchenko, AIP Conference Proceedings, 1959, 2018, 060002  crossref
  8. G G Bilchenko, N G Bilchenko, “On two special values of temperature factor in hypersonic flow stagnation point”, J. Phys.: Conf. Ser., 973 (2018), 012027  crossref
  9. Garaev K.G., Kuznetsov V.K., “Ob odnoi invariantnoi variatsionnoi zadache laminarnogo pogranichnogo sloya”, Prikladnaya matematika i mekhanika, 75:4 (2011), 572–580  mathscinet  zmath  elib
  10. I. N. Murzinov, “Laminar boundary layer on a sphere in hypersonic flow of equilibrium dissociating air”, Fluid Dyn, 1:2 (1968), 131  crossref
  11. M. S. Pedan, “Testing of rotational gas meters”, Meas Tech, 9:5 (1966), 668  crossref


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