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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
D. A. Gubaidullin, Yu. V. Fedorov, R. R. Zaripov, “Взаимодействие акустической волны с многослойной средой, содержащей слой вязкоупругой пузырьковой жидкости”, TVT, 62:4 (2024), 637–640 |
2. |
D. A. Gubaidullin, R. R. Zaripov, “Акустические волны в смеси воздуха с полидисперсными частицами алюминия”, TVT, 62:1 (2024), 147–149 |
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2023 |
3. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, L. R. Shaidullin, S. A. Fadeev, “Осаждение полидисперсного аэрозоля в узкой закрытой трубе при резонансном режиме колебаний”, TVT, 61:6 (2023), 953–956 |
1
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4. |
D. A. Gubaidullin, Yu. V. Fedorov, “Wave dynamics of perfluorocarbon droplets in a viscoelastic liquid”, TVT, 61:3 (2023), 436–442 ; High Temperature, 61:3 (2023), 402–408 |
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5. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, L. R. Shaidullin, S. A. Fadeev, “Gas and aerosol resonance oscillations in an open pipe with an abrupt change in cross section”, TVT, 61:1 (2023), 145–148 ; High Temperature, 61:1 (2023), 134–137 |
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2022 |
6. |
D. A. Gubaidullin, A. A. Kabirov, L. R. Shaidullin, S. A. Fadeev, “Temperature field at nonlinear gas oscillations in a rectangular channel”, TVT, 60:6 (2022), 953–956 ; High Temperature, 60:6 (2022), 884–887 |
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7. |
D. A. Gubaidullin, R. R. Zaripov, “Cylindrical and spherical waves in multifractional vapor–gas–droplet mixtures with polydisperse inclusions”, TVT, 60:4 (2022), 543–547 ; High Temperature, 60:4 (2022), 492–496 |
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8. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, L. R. Shaidullin, “Experimental study of aerosol deposition in a closed tube with a varying cross section”, TVT, 60:1 (2022), 146–148 ; High Temperature, 60:1 (2022), 133–135 |
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2021 |
9. |
D. A. Gubaidullin, Yu. V. Fedorov, “Acoustic waves in a liquid with gas inclusions containing a liquid layer and a viscoelastic shell”, TVT, 59:4 (2021), 533–540 ; High Temperature, 60:1, Suppl. 1 (2022), S44–S51 |
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10. |
D. A. Gubaidullin, R. G. Zaripov, P. P. Osipov, L. A. Tkachenko, L. R. Shaidullin, “Волновая динамика газовзвесей и отдельных частиц при резонансных колебаниях”, TVT, 59:3 (2021), 443–466 |
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11. |
D. A. Gubaidullin, R. R. Zaripov, “Influence of phase transitions on the propagation of acoustic waves in multifractional gas suspensions with polydispersed inclusions”, TVT, 59:1 (2021), 133–139 ; High Temperature, 59:1 (2021), 121–127 |
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2020 |
12. |
D. A. Gubaidullin, Yu. V. Fedorov, “Wave dynamics of shell-covered inclusions in a viscoelastic medium”, Prikl. Mekh. Tekh. Fiz., 61:4 (2020), 22–30 ; J. Appl. Mech. Tech. Phys., 61:4 (2020), 517–524 |
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13. |
D. A. Gubaidullin, R. N. Gafiyatov, “Reflection and transmission of acoustic wave through a multifractional bubble layer”, TVT, 58:1 (2020), 97–100 ; High Temperature, 58:1 (2020), 97–100 |
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2019 |
14. |
D. A. Gubaidullin, D. A. Tukmakov, “Numerical study of the influence of the breakup of dispersed phase on the distribution of a shock wave from pure gas into aerosol”, TVT, 57:6 (2019), 909–913 ; High Temperature, 57:6 (2019), 899–903 |
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15. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, L. R. Shaidullin, “Smoke deposition upon nonlinear oscillations in an open tube near resonance”, TVT, 57:5 (2019), 793–796 ; High Temperature, 57:5 (2019), 768–770 |
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16. |
D. A. Gubaidullin, R. R. Zaripov, “Propagation of spherical and cylindrical waves in multifraction polydisperse gas suspensions”, TVT, 57:4 (2019), 638–640 ; High Temperature, 57:4 (2019), 600–602 |
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17. |
D. A. Gubaidullin, R. R. Zaripov, “Acoustic waves in multifraction gas suspensions with polydisperse inclusions”, TVT, 57:3 (2019), 475–477 ; High Temperature, 57:3 (2019), 444–446 |
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18. |
D. A. Gubaidullin, E. A. Teregulova, D. D. Gubaidullina, “Reflection of acoustic wave incident normaly to the interface between two multifraction gas suspensions”, TVT, 57:3 (2019), 453–458 ; High Temperature, 57:3 (2019), 414–419 |
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19. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, L. R. Shaidullin, “Dynamics of tobacco smoke under resonant oscillations in a closed tube”, TVT, 57:2 (2019), 312–315 ; High Temperature, 57:2 (2019), 283–285 |
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20. |
D. A. Gubaidullin, A. A. Nikiforov, “Acoustic waves in viscoelastic bubbly media”, TVT, 57:1 (2019), 150–153 ; High Temperature, 57:1 (2019), 133–136 |
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2018 |
21. |
D. A. Gubaidullin, E. A. Teregulova, “Acoustic waves in multifraction gas suspensions in the presence of phase transformations”, TVT, 56:5 (2018), 789–797 ; High Temperature, 56:5 (2018), 758–766 |
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22. |
D. A. Gubaidullin, Yu. V. Fedorov, “Effect of phase transitions on the reflection of acoustic waves from the boundary of a vapor-gas-liquid mixture”, TVT, 56:2 (2018), 317–319 ; High Temperature, 56:2 (2018), 306–308 |
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23. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, L. R. Shaidullin, “The dynamics of an aerosol in an open tube under oscillations of various intensities near resonance”, TVT, 56:1 (2018), 145–147 ; High Temperature, 56:1 (2018), 146–148 |
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24. |
D. A. Gubaidullin, B. A. Snigerev, “Numerical simulation of the turbulent upward flow of a gas-liquid bubble mixture in a vertical pipe: Comparison with experimental data”, TVT, 56:1 (2018), 61–70 ; High Temperature, 56:1 (2018), 61–69 |
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25. |
D. A. Gubaidullin, Yu. V. Fedorov, R. R. Zaripov, “Effect of phase transformations on acoustic wave reflection from contaminated fog boundary”, Uchenye Zapiski Kazanskogo Universiteta. Seriya Fiziko-Matematicheskie Nauki, 160:3 (2018), 508–516 |
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2017 |
26. |
D. A. Gubaidullin, “Dynamics and acoustics of polydisperse gas-droplet and bubbling media. theory and experiment”, Proceedings of the Mavlyutov Institute of Mechanics, 12:1 (2017), 67–72 |
27. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, L. R. Shaidullin, “Experimental study of coagulation and sedimentation of gas-particle suspension in closed tube under transfer to the shock-wave regime”, TVT, 55:3 (2017), 484–486 ; High Temperature, 55:3 (2017), 463–465 |
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28. |
D. A. Gubaidullin, A. A. Nikiforov, “Interaction of the acoustic signal with motionless discretely layered medium containing a layer of bubbly liquid”, TVT, 55:1 (2017), 102–107 ; High Temperature, 55:1 (2017), 95–100 |
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2016 |
29. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, “Spherical particle dynamics at oscillations in tubes in the shock wave field”, TVT, 54:6 (2016), 921–927 ; High Temperature, 54:6 (2016), 867–872 |
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2015 |
30. |
D. A. Gubaidullin, E. A. Teregulova, D. D. Gubaidullina, “Acoustic wave propagation in multifraction gas suspensions”, TVT, 53:5 (2015), 752–757 ; High Temperature, 53:5 (2015), 713–718 |
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31. |
D. A. Gubaidullin, A. A. Nikiforov, R. N. Gafiyatov, “Acoustic waves in multifractional bubbly liquids”, TVT, 53:2 (2015), 250–255 ; High Temperature, 53:2 (2015), 240–245 |
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2014 |
32. |
D. A. Gubaidullin, D. A. Tukmakov, “Numerical research of evolution of the shock wave in gas-particles suspension with account uneven distribution of particles”, Matem. Mod., 26:10 (2014), 109–119 ; Math. Models Comput. Simul., 7:3 (2015), 246–253 |
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33. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, “Resonance oscillations of an aerosol in a tube with a diaphragm in the shock free-wave mode”, TVT, 52:6 (2014), 921–926 ; High Temperature, 52:6 (2014), 895–899 |
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2013 |
34. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, “Experimental study of aerosol oscillations in an open tube in the shock-free wave mode”, TVT, 51:6 (2013), 955–957 ; High Temperature, 51:6 (2013), 873–875 |
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35. |
D. A. Gubaidullin, P. P. Osipov, “Computation of two-dimensional flows using multilevel meshes”, Num. Meth. Prog., 14:4 (2013), 451–460 |
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2012 |
36. |
D. A. Gubaidullin, Yu. V. Fedorov, “Spherical and cylindrical waves in vapor-gas mixtures with polydisperse particles and drops”, TVT, 50:5 (2012), 659–664 ; High Temperature, 50:5 (2012), 616–620 |
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37. |
D. A. Gubaidullin, R. G. Zaripov, L. A. Tkachenko, “Experimental study of coagulation and sedimentation of aerosols in a closed tube in the shock-free mode”, TVT, 50:4 (2012), 603–605 ; High Temperature, 50:4 (2012), 564–566 |
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38. |
D. A. Gubaidullin, A. A. Nikiforov, R. N. Gafiyatov, “Acoustic waves in two-fraction bubble liquid with phase transformations”, TVT, 50:2 (2012), 269–273 ; High Temperature, 50:2 (2012), 250–254 |
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2011 |
39. |
D. A. Gubaidullin, A. A. Nikiforov, E. A. Utkina, “Effect of the Phase Transformations on Acoustics of a Mixture of Gas with Vapor, Droplets, and Solid Particles”, TVT, 49:6 (2011), 942–947 ; High Temperature, 49:6 (2011), 911–916 |
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40. |
D. A. Gubaidullin, A. I. Nikiforov, R. Sadovnikov, “On peculiarities of using heterogeneous cluster architecture for
solving continuum mechanics problems”, Num. Meth. Prog., 12:4 (2011), 450–460 |
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2010 |
41. |
D. A. Gubaidullin, A. A. Nikiforov, “Acoustic disturbances in a mixture of liquid with vapor-gas bubbles”, TVT, 48:2 (2010), 188–192 ; High Temperature, 48:2 (2010), 170–175 |
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42. |
D. A. Gubaidullin, A. I. Nikiforov, R. Sadovnikov, “A library of templates of iterative Krylov subspace methods for the
numerical solution of continuum mechanics problems on hybrid computing
systems”, Num. Meth. Prog., 11:4 (2010), 351–359 |
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2007 |
43. |
D. A. Gubaidullin, A. I. Nikiforov, A. V. Tsepaev, “Parallelization algorithms on fine-grid segments in three-phase fluid flow problems”, Num. Meth. Prog., 8:4 (2007), 360–367 |
44. |
D. A. Gubaidullin, R. Sadovnikov, “Application of parallel algorithms for solving the problem of fluid flow to wells with complicated configurations in fractured porous reservoirs”, Num. Meth. Prog., 8:3 (2007), 244–251 |
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2005 |
45. |
D. A. Gubaidullin, P. A. Mazurov, A. V. Tsepaev, “An algorithm for solving the stationary flow equation with fine grid segments in a confined-unconfined aquifer”, Num. Meth. Prog., 6:1 (2005), 217–225 |
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2004 |
46. |
D. A. Gubaidullin, R. G. Zaripov, R. G. Galiullin, È. R. Galiullina, L. A. Tkachenko, “An experimental investigation of the coagulation of aerosol in a tube in the vicinity of subharmonic resonance”, TVT, 42:5 (2004), 788–795 ; High Temperature, 42:5 (2004), 794–802 |
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1998 |
47. |
D. A. Gubaidullin, “The dynamics of small impulsive disturbances in polydisperse mixtures of gas with vapor and liquid droplets”, TVT, 36:6 (1998), 944–949 ; High Temperature, 36:6 (1998), 920–925 |
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1996 |
48. |
R. I. Nigmatulin, D. A. Gubaidullin, “Phase Transformation Influence in Acoustics of Polydispersive Fogs”, Dokl. Akad. Nauk, 347:3 (1996), 330–333 |
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1993 |
49. |
D. A. Gubaidullin, A. I. Ivandaev, “Effect of polydispersion on sound propagation in gas mixtures with vapor and liquid drops”, Prikl. Mekh. Tekh. Fiz., 34:4 (1993), 75–83 ; J. Appl. Mech. Tech. Phys., 34:4 (1993), 517–524 |
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1992 |
50. |
D. A. Gubaidullin, A. I. Ivandaev, “Propagation of acoustic disturbances in polydispersed fogs”, TVT, 30:6 (1992), 1162–1168 ; High Temperature, 30:6 (1992), 963–968 |
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1991 |
51. |
R. I. Nigmatulin, A. I. Ivandaev, D. A. Gubaidullin, “Effect of non-monotone dependence of sound attenuation on the concentration of droplets”, Dokl. Akad. Nauk SSSR, 316:3 (1991), 601–605 |
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52. |
D. A. Gubaidullin, A. I. Ivandaev, “Dynamics of low-amplitude pulse waves in vapor-gas-drop systems”, Prikl. Mekh. Tekh. Fiz., 32:2 (1991), 106–113 ; J. Appl. Mech. Tech. Phys., 32:2 (1991), 240–247 |
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53. |
D. A. Gubaidullin, A. I. Ivandaev, “Characteristic times of phase interaction processes and their effect on dispersion and absorption of sound waves in vapor–gas–drop systems”, TVT, 29:1 (1991), 121–127 ; High Temperature, 29:1 (1991), 114–120 |
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1990 |
54. |
D. A. Gubaidullin, A. I. Ivandaev, “Influence of phase transitions on sound propagation in fogs: Comparison of theory with experiment”, Prikl. Mekh. Tekh. Fiz., 31:6 (1990), 27–34 ; J. Appl. Mech. Tech. Phys., 31:6 (1990), 820–827 |
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1987 |
55. |
D. A. Gubaidullin, A. I. Ivandaev, “Speed and attenuation of sound in gas-vapor-liquid systems. Role of heat and mass exchange”, Prikl. Mekh. Tekh. Fiz., 28:3 (1987), 115–123 ; J. Appl. Mech. Tech. Phys., 28:3 (1987), 423–430 |
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56. |
D. A. Gubaidullin, “On effect of coupled heat and mass transfer on the propagation of sound waves in gas vapor droplet mixture”, Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1987, no. 3, 95–98 |
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1986 |
57. |
D. A. Gubaidullin, A. I. Ivandaev, “Nonsteady discharge of liquified hydrocarbons in the rupture of pipelines”, TVT, 24:2 (1986), 295–300 ; High Temperature, 24:2 (1986), 226–231 |
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Presentations in Math-Net.Ru |
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