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Publications in Math-Net.Ru |
Citations |
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2015 |
1. |
A. A. Fedorets, L. A. Dombrovsky, D. N. Medvedev, “Effect of infrared irradiation on the suppression of the condensation growth of water droplets in a levitating droplet cluster”, Pis'ma v Zh. Èksper. Teoret. Fiz., 102:7 (2015), 507–510 ; JETP Letters, 102:7 (2015), 452–454 |
12
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2012 |
2. |
L. A. Dombrovskii, E. H. Isakaev, V. N. Senchenko, V. F. Chinnov, V. V. Scherbakov, “Efficiency of particle acceleration, heating, and melting in high-enthalpy plasma jets”, TVT, 50:2 (2012), 163–171 ; High Temperature, 50:2 (2012), 145–153 |
4
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2009 |
3. |
L. A. Dombrovskii, L. I. Zaichik, “The effect of clustering of particles on Rayleigh scattering of radiation in a turbulent flow”, TVT, 47:4 (2009), 619–626 ; High Temperature, 47:4 (2009), 589–596 |
2
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4. |
L. I. Zaichik, L. A. Dombrovskii, “Analysis of the effect of turbulence on thermal radiation transfer in a nonscattering medium”, TVT, 47:3 (2009), 388–395 ; High Temperature, 47:3 (2009), 367–374 |
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2005 |
5. |
L. A. Dombrovskii, “Modeling of thermal radiation of polymer coating containing hollow microspheres”, TVT, 43:2 (2005), 256–266 ; High Temperature, 43:2 (2005), 247–258 |
18
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2004 |
6. |
L. A. Dombrovskii, “Nonuniform absorption of thermal radiation in semitransparent spherical particles under conditions of arbitrary illumination of a disperse system”, TVT, 42:6 (2004), 961–971 ; High Temperature, 42:6 (2004), 975–986 |
1
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7. |
L. A. Dombrovskii, “Approximate models of radiation scattering in hollow-microsphere ceramics”, TVT, 42:5 (2004), 772–779 ; High Temperature, 42:5 (2004), 776–784 |
9
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8. |
L. A. Dombrovskii, “The propagation of infrared radiation in a semitransparent liquid containing gas bubbles”, TVT, 42:1 (2004), 143–150 ; High Temperature, 42:1 (2004), 146–153 |
11
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2003 |
9. |
L. A. Dombrovskii, “Heat transfer by radiation through a vapor gap under conditions of film boiling of liquid”, TVT, 41:6 (2003), 920–925 ; High Temperature, 41:6 (2003), 819–824 |
7
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2002 |
10. |
L. A. Dombrovskii, “Spectral Model of Absorption and Scattering of Thermal Radiation by Diesel Fuel Droplets”, TVT, 40:2 (2002), 270–276 ; High Temperature, 40:2 (2002), 242–248 |
30
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11. |
V. M. Alipchenkov, L. A. Dombrovskii, L. I. Zaichik, “The Growth and Stability of Vapor Film on the Surface of a Hot Spherical Particle”, TVT, 40:1 (2002), 109–113 ; High Temperature, 40:1 (2002), 100–104 |
4
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2001 |
12. |
È. B. Vasilevskii, L. A. Dombrovskii, D. S. Mikhatulin, Yu. V. Polezhaev, “Heat transfer in the neighborhood of the stagnation point under conditions of hypersonic heterogeneous slip flow past bodies”, TVT, 39:6 (2001), 925–938 ; High Temperature, 39:6 (2001), 860–873 |
6
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13. |
L. A. Dombrovskii, L. I. Zaichik, “Conditions of thermal explosion in a radiating gas with polydisperse liquid fuel”, TVT, 39:4 (2001), 649–656 ; High Temperature, 39:4 (2001), 604–611 |
9
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14. |
L. A. Dombrovskii, M. B. Ignat'ev, “Inclusion of nonisothermality of particles in the calculations and diagnostics of two-phase jets used for spray deposition of coatings”, TVT, 39:1 (2001), 138–145 ; High Temperature, 39:1 (2001), 134–141 |
3
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2000 |
15. |
L. A. Dombrovskii, L. I. Zaichik, “The dynamics of vapor void under conditions of thermal interaction of a hot spherical particle with ambient water”, TVT, 38:6 (2000), 975–984 ; High Temperature, 38:6 (2000), 938–947 |
9
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16. |
L. A. Dombrovskii, “Approximate calculation of thermal radiation of nonisothermal semitransparent particles”, TVT, 38:4 (2000), 686–688 ; High Temperature, 38:4 (2000), 663–665 |
1
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1999 |
17. |
L. A. Dombrovskii, “Radiation heat transfer from a spherical particle via vapor shell to the surrounding liquid”, TVT, 37:6 (1999), 945–952 ; High Temperature, 37:6 (1999), 912–919 |
1
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18. |
L. A. Dombrovskii, “Radiation of a spherical particle of semitransparent material”, TVT, 37:2 (1999), 284–293 ; High Temperature, 37:2 (1999), 260–269 |
2
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1997 |
19. |
L. A. Dombrovskii, “Evaluation of the error of the $P_1$ approximation in calculations of thermal radiation transfer in optically inhomogeneous media”, TVT, 35:4 (1997), 684–688 ; High Temperature, 35:4 (1997), 676–680 |
7
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20. |
L. A. Dombrovskii, “Radiative properties of metallized-fiber thermal insulation”, TVT, 35:2 (1997), 278–285 ; High Temperature, 35:2 (1997), 275–282 |
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1996 |
21. |
L. A. Dombrovskii, “A theoretical investigation of heat transfer by radiation under conditions of two-phase flow in a supersonic nozzle”, TVT, 34:2 (1996), 261–268 ; High Temperature, 34:2 (1996), 255–262 |
4
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22. |
L. A. Dombrovskii, “Analysis of infrared radiation characteristics of isotropic fiberglass materials
in the semitransparency region”, TVT, 34:1 (1996), 159–162 ; High Temperature, 34:1 (1996), 156–158 |
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1994 |
23. |
L. A. Dombrovskii, “Calculation of infrared radiative properties of carbon fibers and fibrous materials”, TVT, 32:6 (1994), 957–960 ; High Temperature, 32:6 (1994), 895–898 |
24. |
L. A. Dombrovskii, “Quartz-fiber thermal insulation: Calculation of spectral radiation characteristics in the infrared region”, TVT, 32:2 (1994), 209–215 ; High Temperature, 32:2 (1994), 197–203 |
2
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1993 |
25. |
L. A. Dombrovskii, È. P. Yukina, A. V. Kolpakov, V. A. Ivanov, “Procedure for calculating the thermal destruction of plasticized carbon under the effect of intensive infrared radiation”, TVT, 31:4 (1993), 619–625 ; High Temperature, 31:4 (1993), 566–572 |
3
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1991 |
26. |
L. A. Dombrovskii, A. V. Kolpakov, S. T. Surzhikov, “Transport approximation in calculating the directed-radiation transfer in an anisotropically scattering erosional flare”, TVT, 29:6 (1991), 1171–1177 ; High Temperature, 29:6 (1991), 954–959 |
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1990 |
27. |
L. A. Dombrovskii, “Приближенные соотношения для расчета основных радиационных характеристик сферических частиц в области рассеяния Ми”, TVT, 28:6 (1990), 1242–1245 |
28. |
A. V. Kolpakov, L. A. Dombrovskii, S. T. Surzhikov, “Transfer of directed radiation in an absorbing and anisotropically scattering medium”, TVT, 28:5 (1990), 983–987 ; High Temperature, 28:5 (1990), 753–756 |
1
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29. |
L. A. Dombrovskii, È. P. Yukina, V. A. Ivanov, “Calculation of the electric field and current in an MHD-channel with the use of a viriational formulation of a two-dimensional boundary-value problem”, TVT, 28:1 (1990), 136–144 ; High Temperature, 28:1 (1990), 115–121 |
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1986 |
30. |
L. A. Dombrovskii, L. G. Barkova, “Solving the two-dimensional problem of thermal-radiation transfer in an anisotropically scattering medium using the finite-element method”, TVT, 24:4 (1986), 762–769 ; High Temperature, 24:4 (1986), 585–592 |
1
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31. |
L. A. Dombrovskii, “Inertial deposition of particles from gas-disperse flow in the vicinity of a stagnation point”, TVT, 24:3 (1986), 558–563 ; High Temperature, 24:3 (1986), 429–434 |
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1984 |
32. |
L. A. Dombrovskii, È. P. Yukina, “Critical conditions for the inertial precipitation of particles from an aerocolloidal flow in the vicinity of a stagnation point – influence of blowing”, TVT, 22:4 (1984), 728–732 ; High Temperature, 22:4 (1984), 587–591 |
1
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33. |
L. A. Dombrovskii, “Radiation convection heat-transfer on a plate”, TVT, 22:2 (1984), 341–345 ; High Temperature, 22:2 (1984), 281–285 |
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1983 |
34. |
L. A. Dombrovskii, È. P. Yukina, “Critical conditions for inertial particle deposition from a gas-flow near a retardation point”, TVT, 21:3 (1983), 525–532 ; High Temperature, 21:3 (1983), 402–408 |
3
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1982 |
35. |
L. A. Dombrovskii, “Радиационно-конвективный теплообмен в оптически тонком пограничном слое на пластине”, TVT, 20:5 (1982), 990–992 |
36. |
L. A. Dombrovskii, “Possibility of determining the dispersed composition of a $2$-phase flow from small-angle light-scattering”, TVT, 20:3 (1982), 549–557 ; High Temperature, 20:3 (1982), 472–479 |
1
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1981 |
37. |
L. A. Dombrovskii, “Radiation-convection heat-transfer by an optically thick boundary-layer on a plate”, TVT, 19:1 (1981), 128–135 ; High Temperature, 19:1 (1981), 100–106 |
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1980 |
38. |
L. A. Dombrovskii, V. M. Zhiravov, “Method for Interpreting Particle Velocity Measurements in Two-Phase Flows”, TVT, 18:3 (1980), 596–603 |
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1979 |
39. |
L. A. Dombrovskii, “Radiative-convective heat transfer in an optically thin boundary layer near the leading edge of a flat plate. Effect of blowing”, TVT, 17:6 (1979), 1274–1277 ; High Temperature, 17:6 (1979), 1056–1059 |
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1978 |
40. |
L. A. Dombrovskii, “Теплообмен при обтекании плоской пластины нетеплопроводной излучающей средой”, TVT, 16:5 (1978), 1012–1017 |
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1977 |
41. |
L. A. Dombrovskii, “Радиационно-конвективный теплообмен в оптически тонком пограничном слое вблизи передней кромки пластины”, TVT, 15:5 (1977), 1047–1054 |
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1976 |
42. |
L. A. Dombrovskii, “Isothermal polydisperse layer”, TVT, 14:4 (1976), 829–833 ; High Temperature, 14:4 (1976), 733–736 |
3
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1974 |
43. |
L. A. Dombrovskii, “Излучение плоскопараллельного слоя из полых сферических частиц окиси алюминия”, TVT, 12:6 (1974), 1316–1318 |
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1973 |
44. |
L. A. Dombrovskii, N. N. Ivenskikh, “Излучение однородного плоскопараллельного слоя сферических частиц”, TVT, 11:4 (1973), 818–822 |
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