1. Article › Research › Peer-reviewed
  2. A two-dimensional electron gas sensing motion of a nanomechanical cantilever

    Shevyrin, A. & Pogosov, A., 12 May 2017, In: Mechanical Sciences. 8, 1, p. 111-115 5 p.

    Research output: Contribution to journalArticlepeer-review

  3. Chemical and texture promoters in Cu-Fe-Al oxide nanocomposite catalysts for combustion of solid fuel gasification products

    Bulavchenko, O. A., Pochtar, A. A., Gerasimov, E. Y., Fedorov, A. V., Chesalov, Y. A., Saraev, A. A., Yakovlev, V. A. & Kaichev, V. V., 25 Jan 2020, In: Applied Catalysis A: General. 590, 8 p., 117364.

    Research output: Contribution to journalArticlepeer-review

  4. Combustion of a Plane Hydrogen Microjet at Subsonic and Supersonic Speeds

    Kozlov, V. V., Grek, G. R., Litvinenko, Y. A., Shmakov, A. G. & Vikhorev, V. V., 1 Mar 2019, In: Doklady Physics. 64, 3, p. 134-138 5 p.

    Research output: Contribution to journalArticlepeer-review

  5. Combustion of hydrogen in round and plane microjets in transverse acoustic field at small Reynolds numbers as compared to propane combustion in the same conditions (Part I)

    Kozlov, V. V., Grek, G. R., Korobeinichev, O. P., Litvinenko, Y. A. & Shmakov, A. G., 26 Nov 2016, In: International Journal of Hydrogen Energy. 41, 44, p. 20231-20239 9 p.

    Research output: Contribution to journalArticlepeer-review

  6. Combustion of Round Hydrogen Microjet in Concurrent Flow

    Kozlov, V. V., Litvinenko, M. V., Litvinenko, Y. A., Pavlenko, A. M., Tambovtsev, A. S. & Shmakov, A. G., Apr 2021, In: Journal of Engineering Thermophysics. 30, 2, p. 213-224 12 p.

    Research output: Contribution to journalArticlepeer-review

  7. Comparison of Detailed Chemical Models of Hydrogen Combustion in Numerical Simulations of Detonation

    Borisov, S. P., Kudryavtsev, A. N. & Shershnev, A. A., May 2021, In: Combustion, Explosion and Shock Waves. 57, 3, p. 270-284 15 p.

    Research output: Contribution to journalArticlepeer-review

  8. Controlling the Aerodynamic Drag of a Cylinder with Gas-Permeable Porous Inserts by Regulating Base Pressure

    Mironov, S. G., Valiullin, I. R. & Poplavskaya, T. V., May 2021, In: Technical Physics Letters. 47, 5, p. 396-398 3 p.

    Research output: Contribution to journalArticlepeer-review

  9. Detailed analysis of recent drag models using multiple cases of mono-disperse fluidized beds with Geldart-B and Geldart-D particles

    Stanly, R. & Shoev, G., 12 Oct 2018, In: Chemical Engineering Science. 188, p. 132-149 18 p.

    Research output: Contribution to journalArticlepeer-review

  10. Determining the Helium Permeability of Microspherical Membranes from the Experimental Time Dependence of the Absorption of Helium by Them

    Vereshchagin, A. S., Kazanin, I. V., Zinoviev, V. N., Pak, A. Y., Lebiga, V. A. & Fomin, V. M., 1 Jul 2019, In: Journal of Engineering Physics and Thermophysics. 92, 4, p. 1025-1030 6 p.

    Research output: Contribution to journalArticlepeer-review

  11. Different variants of R13 moment equations applied to the shock-wave structure

    Timokhin, M. Y., Struchtrup, H., Kokhanchik, A. A. & Bondar, Y. A., 1 Mar 2017, In: Physics of Fluids. 29, 3, 11 p., 037105.

    Research output: Contribution to journalArticlepeer-review

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