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@misc{ND_2024_20_3_a0, title = {Valentin {A.} {Tenenev.} {On} the {Occasion} of his 75th {Birthday}}, journal = {Russian journal of nonlinear dynamics}, pages = {339--343}, publisher = {mathdoc}, volume = {20}, number = {3}, year = {2024}, language = {en}, url = {http://geodesic.mathdoc.fr/item/ND_2024_20_3_a0/} }
Valentin A. Tenenev. On the Occasion of his 75th Birthday. Russian journal of nonlinear dynamics, Tome 20 (2024) no. 3, pp. 339-343. http://geodesic.mathdoc.fr/item/ND_2024_20_3_a0/
[1] Raeder, T., Tenenev, V. A., Koroleva, M. R., Mishenkova, O. V., and Voevodina, O. A., “Numerical Modeling of Safety Valve Gas Dynamics”, Intellekt. Sist. Proizv., 15:4 (2017), 4–11 (Russian) | DOI
[2] Raeder, T., Tenenev, V. A., and Mishenkova, O. V., “Identification of Dynamic Model of Safety Valve”, Vestn. IzhGTU, 21:4 (2018), 13–21 (Russian)
[3] Raeder, T., Tenenev, V. A., and Paklina, N. V., “Numerical 3D Simulation of Safety Valve Gas Dynamics”, Vestn. IzhGTU, 21:4 (2018), 174–181 (Russian)
[4] Raeder, T., Tenenev, V. A., and Paklina, N. V., “Study of the Influence of the Initial Clearance Value on the Dynamics of Opening the Safety Valve”, Intellekt. Sist. Proizv., 16:2 (2018), 28–40 (Russian) | DOI
[5] Raeder, T., Tenenev, V., and Koroleva, M., “Numerical Simulation of the Working Process in a Safety Valve with Additional Gas-Dynamic Coupling”, Intellekt. Sist. Proizv., 18:3 (2020), 118–126 (Russian) | DOI
[6] Koroleva, M. R., Mishenkova, O. V., Raeder, T., Tenenev, V. A., and Chernova, A. A., “Numerical Simulation of the Process of Activation of the Safety Valve”, Kompyuternye Issledovaniya i Modelirovanie, 10:4 (2018), 495–509 (Russian)
[7] Raeder, T., Tenenev, V. A., and Chernova, A. A., “Numerical Simulation of Unstable Operating Modes of a Safety Valve”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2020, no. 68, 141–157 (Russian) | MR
[8] Raeder, T., Tenenev, V. A., and Chernova, A. A., “Determination of Flow Characteristics in Technological Processes with Controlled Pressure”, Instruments and Methods of Measurement, 11:3 (2020), 204–211
[9] Raeder, T., Tenenev, V. A., Koroleva, M. R., and Mishchenkova, O. V., “Nonlinear Processes in Safety Systems for Substances with Parameters Close to a Critical State”, Russian J. Nonlinear Dyn., 17:1 (2021), 119–138 | MR | Zbl
[10] Raeder, T., Tenenev, V. A., and Chernova, A. A., “Incorporation of Fluid Compressibility into the Calculation of the Stationary Mode of Operation of a Hydraulic Device at High Fluid Pressures”, Russian J. Nonlinear Dyn., 17:2 (2021), 195–209 | MR | Zbl
[11] Borisov, A. V., Kilin, A. A., Mamaev, I. S., and Tenenev, V. A., “The Dynamics of Vortex Rings: Leapfrogging in an Ideal and Viscous Fluid”, Fluid Dyn. Res., 46:3 (2014), Art. 031415, 16 pp. | DOI | MR
[12] Pis'ma Zh. Tekh. Fiz., 42:17 (2016), 9–19 (Russian) | DOI
[13] Alexandrov, A. B., Ponomarev, S. B., and Tenenev, V. A., “Experience in Developing a Model for Predicting the Dynamics of Blood Pressure in Higher Education Students”, Matem. Modeli i Inform. Tekhnol. v Organiz. Proizv., 2008, no. 4, 158–162 (Russian)
[14] Bochkarev, O. I., Tenenev, V. A., Yakimovich, B. A., and Shaura, D. S., “Determination of the Complex Indicator of Readiness of Enterprises to Fulfill the State Order”, Vestn. Akad. Voen. Nauk, 2015, no. 4, 66–71 (Russian)
[15] Kilin, A. A., Klenov, A. I., and Tenenev, V. A., “Controlling the Movement of the Body Using Internal Masses in a Viscous Liquid”, Kompyuternye Issledovaniya i Modelirovanie, 10:4 (2018), 445–460 (Russian)
[16] Karavaev, Yu. L., Klekovkin, A. V., Mamaev, I. S., Tenenev, V. A., and Vetchanin, E. V., “Simple Physical Model for Control of an Propellerless Aquatic Robot”, J. Mechanisms Robotics, 14:1 (2022), Art. 011007, 11 pp. | DOI | MR
[17] Vetchanin, E. V., Tenenev, V. A., and Shaura, A. S., “Motion Control of a Rigid Body in Viscous Fluid”, Kompyuternye Issledovaniya i Modelirovanie, 5:4 (2013), 659–675 (Russian)
[18] Vetchanin, E. V., Tenenev, V. A., and Kilin, A. A., “Optimal Control of the Motion in an Ideal Fluid of a Screw-Shaped Body with Internal Rotors”, Kompyuternye Issledovaniya i Modelirovanie, 9:5 (2017), 741–759 (Russian)
[19] Shaura, A. S., Tenenev, V. A., and Vetchanin, E. V., “The Problem of Balancing an Inverted Spherical Pendulum on an Omniwheel Platform”, Russian J. Nonlinear Dyn., 17:4 (2021), 507–525 | MR | Zbl
[20] Muratova, G. Z., Tarasova, E. N., and Tenenev, V. A., “Analysis of Sensitivity and Stability of the Method for Solving a Multicriteria Management Problem in Terms of an Enterprise Synergy Optimization Model in an One Product Market”, Vestn. IzhGTU, 2010, no. 1, 142–144 (Russian)
[21] Solomennikova, S. I., Yakimovich, B. A., and Tenenev, V. A., “Fuzzy-Logic Simulation of the Development of a High-Tech Manufacturing Enterprise”, Russ. Engin. Res., 35:5 (2015), 363–368 | DOI
[22] Blagodatsky, G. A., Tenenev, V. A., Shaura, A. S., and Shaura, D. S., “Numerical Implementation of the Algorithm of Inventory Management for Long Term Supply of Components at Presence of “Bottlenecks” of Production Cycle”, Intellekt. Sist. Proizv., 2016, no. 4, 40–44 (Russian) | DOI
[23] Tenenev, V. A. and Yakimovich, B. A., Genetic Algorithms in System Modeling, IzhGTU, Izhevsk, 2010, 308 pp. (Russian)