This publication is cited in the following articles:
A. A. Volkov, S. V. Chuchupal, “Modifying the van der Waals Equation to Describe the Thermodynamic Properties of Liquid Water”, Bull. Russ. Acad. Sci. Phys., 89:1 (2025), 122
R. Kh. Bolotnova, E. F. Gainullina, E. A. Faizullina, “Analytical equation of state for liquid and gaseous nitrogen”, Thermophys. Aeromech., 31:6 (2025), 1251
A. A. Aganin, N. A. Khismatullina, “Water Vapor Compression in the Regime with Dissociation”, Lobachevskii J Math, 46:5 (2025), 1949
M. A. Biryukova, D. V. Petrov, Yu. M. Kovalev, E. B. Smirnov, “Description of shock compression of some molecular crystals”, Combustion, Explosion and Shock Waves, 60:6 (2024), 764–769
R. Kh. Bolotnova, V. A. Korobchinskaya, E. F. Gainullina, “Modeling the Dynamics of a Boiling Liquid Nitrogen Jet under Cryogenic Temperatures”, Lobachevskii J Math, 44:5 (2023), 1579
I. N. Mustafin, “Numerical Simulation of Collapse and Rebound of a Cavitation Bubble in Water”, Lobachevskii J Math, 44:5 (2023), 1771
R. Kh. Bolotnova, E. F. Gainullina, V. A. Korobchinskaya, “Equation of State for Liquid and Gaseous Nitrogen in Cryogenic Temperature Range”, Lobachevskii J Math, 44:5 (2023), 1587
T. F. Khalitova, N. A. Khismatullina, “Numerical Simulation of Outgoing Shock Waves at Cavitation Bubble Collapse”, Lobachevskii J Math, 44:5 (2023), 1692
A. A. Aganin, N. A. Khismatullina, R. I. Nigmatulin, “Pulse impact on cavitation bubble collapse”, High Temperature, 61:3 (2023), 385–391
A. A. Aganin, T. F. Khalitova, “A Model of Joint Collapse of Cavitation Bubbles Located on a Spherical Surface”, Lobachevskii J Math, 44:5 (2023), 1548
Alexander A. Aganin, Nailia A. Khismatullina, “Influence of the phase interface mass transfer characteristics on the cavitation bubble collapse in water”, Ocean Engineering, 283 (2023), 115013
N. A. Khismatullina, I. N. Mustafin, “Numerical Modeling of Propagation of an Outgoing Shock Wave Produced at Cavitation Bubble Collapse”, Lobachevskii J Math, 43:5 (2022), 1139
A. A. Aganin, “High-speed Liquid Impact on a Liquid Surface and a Wetted Wall”, Lobachevskii J Math, 43:8 (2022), 2029
Alexander A. Aganin, Ildar N. Mustafin, “Cavitation bubble collapse and rebound in water: Influence of phase transitions”, International Journal of Multiphase Flow, 157 (2022), 104256
N. A. Inogamov, S. A. Romashevskiy, A. I. Ignatov, V. V. Zhakhovsky, V. A. Khokhlov, E. M. Eganova, E. A. Pershina, S. I. Ashitkov, “Diffraction on a microbubble and the morphology of the silicon surface irradiated through glycerol by a pair of femtosecond laser pulses”, JETP Letters, 113:2 (2021), 75–81
R. Kh. Bolotnova, E. F. Gainullina, “Modelirovanie dinamiki udarnogo impulsa v trube s vnutrennim sloem vodnoi peny”, Vestn. YuUrGU. Ser. Matem. modelirovanie i programmirovanie, 14:1 (2021), 118–125
Aganin A.A. Mustafin I.N., “Outgoing Shock Waves At Collapse of a Cavitation Bubble in Water”, Int. J. Multiph. Flow, 144 (2021), 103792
Maussumbekova S.D., Duysenali A., “Numerical Simulation of Boiling Liquid Outflows Process”, Int. J. Math. Phys.-Kazakhstan, 12:1 (2021), 40–47
N A Inogamov, V V Zhakhovsky, D K Ilnitsky, V A Khokhlov, “Laser shock peening”, J. Phys.: Conf. Ser., 1787:1 (2021), 012024
R Kh Bolotnova, E F Gainullina, “Modeling of weak shock waves propagation in aqueous foam layer”, J. Phys.: Conf. Ser., 2103:1 (2021), 012217
Hassan Beydoun, Andy Cook, Joseph Bauer, Elizabeth V. Stein, ASCEND 2021, 2021
Surov V.S., “a Hyperbolic Model of Boiling Liquid”, J. Appl. Mech. Tech. Phys., 61:7 (2020), 1153–1159
Shurshalov L.V., “on a Modification of the Two-Term Equation of State”, Fluid Dyn., 55:6 (2020), 751–759
Bolotnova R.Kh., Gainullina E.F., “Modeling Dynamics of Shock Impact on Aqueous Foams With Account For Viscoelastic Properties and Syneresis Phenomena”, Fluid Dyn., 55:5 (2020), 604–608
Aganin A.A. Mustafin I.N., “Boundary of Metastable Region Within Equations of State By Nigmatulin-Bolotnova”, Lobachevskii J. Math., 41:7, SI (2020), 1143–1147
Nigmatulin I R. Toporkov D.Yu., “Modification of Equations of State in the Metastable Region For High-Speed Vapor Compression”, Lobachevskii J. Math., 41:7, SI (2020), 1278–1282
Bolotnova R.Kh., Gainullina E.F., “Influence of the Dissipative Properties of Aqueous Foam on the Dynamics of Shock Waves”, J. Appl. Mech. Tech. Phys., 61:4 (2020), 510–516
Anisimov S.I. Inogamov N.A. Khokhlov V.A. Petrov Yu.V. Zhakhovsky V.V., Xxxiv International Conference on Interaction of Intense Energy Fluxes With Matter, Journal of Physics Conference Series, 1556, IOP Publishing Ltd, 2020
Petrov Yu.V. Khokhlov V.A. Zhakhovsky V.V. Inogamov N.A., Xxxiv International Conference on Interaction of Intense Energy Fluxes With Matter, Journal of Physics Conference Series, 1556, IOP Publishing Ltd, 2020
Shurshalov V L., “Numerical Simulation of Shock Compression of Liquid and Vaporous Water For Determining Conditions of Diamond Synthesis From Graphite”, Combust. Explos., 56:1 (2020), 106–115
R. Z. Aminov, A. A. Gudym, “Equations for engineering calculations of the thermodynamic properties of high-temperature dissociated steam”, High Temperature, 57:3 (2019), 348–354
Bolotnova R.Kh., Gainullina E.F., “Influence of Heat Transfer on Decreasing Intensity of a Spherical Explosion in Aqueous Foam”, Fluid Dyn., 54:7 (2019), 970–977
Petrov V Yu., Khokhlov V.A., Zhakhovsky V.V., Inogamov N.A., “Hydrodynamic Phenomena Induced By Laser Ablation of Metal Into Liquid”, Appl. Surf. Sci., 492 (2019), 285–297
Petrov Yu.V., Inogamov N.A., Zhakhovsky V.V., Khokhlov V.A., “Condensation of Laser-Produced Gold Plasma During Expansion and Cooling in a Water Environment”, Contrib. Plasma Phys., 59:6, SI (2019), UNSP e201800180
A. I. Sharapov, A. A. Chernykh, A. V. Peshkova, “Supersonic flow of two-phase gas- droplet flows in nozzles”, «Izvestiya vysshikh uchebnykh zavedenii. PROBLEMY ENERGETIKI», 21:3 (2019), 86
V.S. Surov, “Calculation of quasi-dimensional flows of boiling liquid”, Comp. Contin. Mech., 12:3 (2019), 325
V.S. Surov, “A hyperbolic model of boiling liquid”, Comp. Contin. Mech., 12:2 (2019), 185
Inogamov N.A., Zhakhovskii V.V., Khokhlov V.A., “Dynamics of Gold Ablation Into Water”, J. Exp. Theor. Phys., 127:1 (2018), 79–106
A A Aganin, D Yu Toporkov, “Strong compression of bubbles in water, acetone and benzol”, J. Phys.: Conf. Ser., 1058 (2018), 012068
R. I. Nigmatulin, R. Kh. Bolotnova, “Simplified wide-range equations of state for benzene and tetradecane”, High Temperature, 55:2 (2017), 199–208
Bolotnova R.Kh. Korobchinskaya V.A., “Boiling Water Jet Outflow From a Thin Nozzle: Spatial Modeling”, Thermophys. Aeromechanics, 24:5 (2017), 761–771
Myint Ph.C., Benedict L.X., Belof J.L., “Free Energy Models For Ice Vii and Liquid Water Derived From Pressure, Entropy, and Heat Capacity Relations”, J. Chem. Phys., 147:8 (2017), 084505
R. Kh. Bolotnova, E. F. Gainullina, “Issledovanie dempfiruyuschikh svoistv vodnoi peny pod vozdeistviem sfericheskoi udarnoi volny”, Izvestiya vysshikh uchebnykh zavedenii. Povolzhskii region. Fiziko-matematicheskie nauki, 2017, no. 2, 108–121
R. Z. Aminov, A. A. Gudym, “Equations for calculating the properties of dissociated steam”, Therm. Eng., 64:8 (2017), 597
A. A. Aganin, M. A. Ilgamov, D. Yu. Toporkov, “Zavisimost szhatiya para v kavitatsionnykh puzyrkakh v vode i benzole ot davleniya zhidkosti”, Uchen. zap. Kazan. un-ta. Ser. Fiz.-matem. nauki, 158, no. 2, Izd-vo Kazanskogo un-ta, Kazan, 2016, 231–242
U. O. Agisheva, R. Kh. Bolotnova, E. F. Gainullina, V. A. Korobchinskaya, “Features of vortex formation under the impact of a pressure pulse on a gas region bounded by the foam layer”, Fluid Dyn, 51:6 (2016), 757
R. I. Nigmatulin, A. A. Aganin, D. Yu. Toporkov, M. A. Ilgamov, “Evolution of disturbances of the sphericity of a bubble under strong compression”, Dokl. Phys., 61:3 (2016), 138
R. I. Nigmatulin, A. A. Aganin, M. A. Ilgamov, D. Yu. Toporkov, “Evolyutsiya vozmuschenii sfericheskoi formy kavitatsionnogo puzyrka pri ego vzryvnom kollapse”, Uchen. zap. Kazan. un-ta. Ser. Fiz.-matem. nauki, 156, no. 1, Izd-vo Kazanskogo un-ta, Kazan, 2014, 79–108
Nigmatulin R.I., Aganin A.A., Toporkov D.Yu., Il'gamov M.A., “Formation of Convergent Shock Waves in a Bubble Upon Its Collapse”, Dokl. Phys., 59:9 (2014), 431–435
Cherepanov G.P., Zakirov K.R., “State Equation of Condensed Matter At High Pressure: D-U Diagram Approach”, Phys. Mesomech., 17:3 (2014), 163–177
R.K. Bolotnova, V.A. Buzina, “Spatial modeling of the nonstationary processes of boiling liquid outflows from high pressure vessels”, Comp. Contin. Mech., 7:4 (2014), 343
S. M. Rasulov, S. M. Orakova, “$P$, $\rho$, $T$-properties and phase equilibria in the water-$n$-hexane system with a low content of water”, High Temperature, 51:1 (2013), 60–65
E. E. Son, “Current investigations of thermophysical properties of substances (based on recent publications in the journal High Temperature)”, High Temperature, 51:3 (2013), 351–368
Agisheva U.O., Bolotnova R.Kh., Buzina V.A., Galimzyanov M.N., “Parametric Analysis of the Regimes of Shock-Wave Action on Gas-Liquid Media”, Fluid Dyn., 48:2 (2013), 151–162
Agisheva U.O., “Vozdeistvie udarnykh voln na puzyrkovye i pennye struktury v dvumernykh osesimmetrichnykh ob'emakh”, Vestnik bashkirskogo universiteta, 18:3 (2013), 640–645
R. Kh. Bolotnova, M. N. Galimzyanov, U. O. Agisheva, “Modelirovanie protsessov vzaimodeistviya silnykh udarnykh voln v gazozhidkostnykh smesyakh”, Izvestiya vysshikh uchebnykh zavedenii. Povolzhskii region. Fiziko-matematicheskie nauki, 2011, no. 2, 3–14