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2-years impact-factor Math-Net.Ru of «Teplofizika vysokikh temperatur» journal, 2013
2-years impact-factor Math-Net.Ru of the journal in 2013 is calculated
as the number of citations in 2013 to the scientific papers published during
2011–2012.
The table below contains the list of citations in 2013 to the papers
published in 2011–2012. We take into account all citing publications
we found from different sources, mostly from references lists available
on Math-Net.Ru. Both original and translation versions are taken into account.
The impact factor Math-Net.Ru may change when new citations to a year
given are found.
| Year |
2-years impact-factor Math-Net.Ru |
Scientific papers |
Citations |
Citated papers |
Journal Self-citations |
| 2013 |
1.414 |
244 |
345 |
171 |
65.2% |
|
|
|
| N |
Citing pulication |
|
Cited paper |
|
| 1. |
Pinaev V.A., Ulanov I.M., “Issledovanie nepreryvnogo spektra tleyuschego razryada nizkogo davleniya”, Zhurnal radioelektroniki, 2013, № 12, 17–17  |
→ |
The Influence of Longitudinal Magnetic Field on Recombination Radiation of Low-Pressure Glow Discharge in Hydrogen and Helium I. M. Ulanov, A. Yu. Litvintzev, V. A. Pinaev TVT, 49:1 (2011), 3–12
|
|
| 2. |
A. B. Petrin, “Zametki o mikroskopicheskoi teorii dielektricheskoi polyarizatsii”, TVT, 51:2 (2013), 170–175  |
→ |
Singularity of the Electric Field at the Wetting Line of a Dielectric Surface A. B. Petrin TVT, 49:1 (2011), 23–27
|
|
| 3. |
V. A. Shuvalov, N. A. Tokmak, S. N. Kulagin, G. S. Kochubei, “Dinamicheskoe vzaimodeistvie «namagnichennogo» konusa s giperzvukovym potokom razrezhennoi plazmy”, TVT, 51:6 (2013), 803–810  |
→ |
Diagnostics of Nonequilibrium Collisional Plasma with a Thermoanemometric Probe V. A. Shuvalov, G. S. Kochubei, D. N. Lazuchenkov TVT, 49:1 (2011), 28–35
|
| 4. |
Shuvalov V.A., Pismennyi N.I., Lazuchenkov D.N., Kochubei G.S., “Zondovaya diagnostika potokov laboratornoi i ionosfernoi razrezhennoi plazmy”, Pribory i tekhnika eksperimenta, 2013, № 4, 98–98  |
→ |
Diagnostics of Nonequilibrium Collisional Plasma with a Thermoanemometric Probe V. A. Shuvalov, G. S. Kochubei, D. N. Lazuchenkov TVT, 49:1 (2011), 28–35
|
|
| 5. |
A. Yu. Varaksin, “Gidrogazodinamika i teplofizika dvukhfaznykh potokov: problemy i dostizheniya (Obzor)”, TVT, 51:3 (2013), 421–455  |
→ |
Experimental Study of the Dynamics and Macrostructure of Laser-Induced High-Pressure Dust Gas-Plasma Flows E. Yu. Loktionov, Yu. Yu. Protasov TVT, 49:1 (2011), 36–44
|
|
| 6. |
E. E. Son, “Sovremennye issledovaniya teplofizicheskikh svoistv veschestv (na osnove poslednikh publikatsii v TVT) (Obzor)”, TVT, 51:3 (2013), 392–411  |
→ |
Some Regularities of the Behavior of the Thermodynamic Properties of Systems with Three-Body Intermolecular Interactions A. V. Klinov, A. V. Maligin, L. R. Minibaeva TVT, 49:1 (2011), 56–63
|
|
| 7. |
E. E. Son, “Sovremennye issledovaniya teplofizicheskikh svoistv veschestv (na osnove poslednikh publikatsii v TVT) (Obzor)”, TVT, 51:3 (2013), 392–411  |
→ |
Density Distribution of a Binary Liquid in a Cylindrical Pore under the Action of External Field A. N. Vasiliev, P. I. Gordijchuk TVT, 49:1 (2011), 64–68
|
|
| 8. |
A. Yu. Varaksin, “Gidrogazodinamika i teplofizika dvukhfaznykh potokov: problemy i dostizheniya (Obzor)”, TVT, 51:3 (2013), 421–455  |
→ |
Pecularities of Flow over a Blunted Body by a Supersonic Polydispersed Jet with a Swirl of Reflected Particles G. V. Molleson, A. L. Stasenko TVT, 49:1 (2011), 73–80
|
|
| 9. |
A. Yu. Varaksin, “Gidrogazodinamika i teplofizika dvukhfaznykh potokov: problemy i dostizheniya (Obzor)”, TVT, 51:3 (2013), 421–455  |
→ |
Calculation of the Characteristics of Conjugate Heat–Mass Exchange under Spatial Flow of a Blunt Body with the Use of a Combined Heat Protection System V. I. Zinchenko, K. N. Efimov, A. S. Yakimov TVT, 49:1 (2011), 81–91
|
| 10. |
V. S. Zarubin, G. N. Kuvyrkin, “Dvustoronnie otsenki termicheskogo soprotivleniya neodnorodnogo tverdogo tela”, TVT, 51:4 (2013), 578–585  |
→ |
Calculation of the Characteristics of Conjugate Heat–Mass Exchange under Spatial Flow of a Blunt Body with the Use of a Combined Heat Protection System V. I. Zinchenko, K. N. Efimov, A. S. Yakimov TVT, 49:1 (2011), 81–91
|
|
| 11. |
D. L. Tsyganov, “Approksimatsiya eksperimentalnoi konstanty skorosti khimicheskoi reaktsii v shirokom temperaturnom diapazone”, TVT, 51:1 (2013), 97–104  |
→ |
Radiative-Convective Heat Transfer of a Spherically Shaped Space Vehicle in Carbon Dioxide S. T. Surzhikov TVT, 49:1 (2011), 92–107
|
| 12. |
Andrienko D.A., Surzhikov S.T., Shang J.S., “Spherical harmonics method applied to the multi-dimensional radiation transfer”, Comput. Phys. Commun., 184:10 (2013), 2287–2298  |
→ |
Radiative-Convective Heat Transfer of a Spherically Shaped Space Vehicle in Carbon Dioxide S. T. Surzhikov TVT, 49:1 (2011), 92–107
|
| 13. |
Surzhikov S.T., “Plotnost radiatsionnykh teplovykh potokov k navetrennoi poverkhnosti marsianskogo kosmicheskogo apparata v testovoi zadache \no 3 rabochei gruppy po izlucheniyu vysokotemperaturnykh smesei gazov eka”, Fiziko-khimicheskaya kinetika v gazovoi dinamike, 16:1 (2013), 9–9  |
→ |
Radiative-Convective Heat Transfer of a Spherically Shaped Space Vehicle in Carbon Dioxide S. T. Surzhikov TVT, 49:1 (2011), 92–107
|
|
| 14. |
A. Yu. Varaksin, “Gidrogazodinamika i teplofizika dvukhfaznykh potokov: problemy i dostizheniya (Obzor)”, TVT, 51:3 (2013), 421–455  |
→ |
On the Integral Characteristics of Single Scattering on Nonspherical Particles I. A. Vasil'eva TVT, 49:1 (2011), 108–115
|
|
| 15. |
M. A. Pakhomov, V. I. Terekhov, “Vliyanie chastoty impulsov na teploobmen v tochke tormozheniya impaktnoi turbulentnoi strui”, TVT, 51:2 (2013), 287–293  |
→ |
Structure of Pulse Dispersed Jet upon Change in Its Frequency Characteristics A. D. Nazarov, A. F. Serov, V. I. Terekhov TVT, 49:1 (2011), 116–121
|
| 16. |
A. Yu. Varaksin, “Gidrogazodinamika i teplofizika dvukhfaznykh potokov: problemy i dostizheniya (Obzor)”, TVT, 51:3 (2013), 421–455  |
→ |
Structure of Pulse Dispersed Jet upon Change in Its Frequency Characteristics A. D. Nazarov, A. F. Serov, V. I. Terekhov TVT, 49:1 (2011), 116–121
|
|
| 17. |
V. M. Zaichenko, I. L. Maikov, V. M. Torchinskii, “Osobennosti filtratsii uglevodorodnykh smesei v poristykh sredakh”, TVT, 51:6 (2013), 855–863  |
→ |
Effect of the Wave Action on the Hydrocarbon Filtration Flow in Gas Condensate Strata in the Presence of Retrograde Condensation L. E. Ukrainsky, V. Zaitchenko, O. R. Ganiev, A. V. Savenkov TVT, 49:1 (2011), 122–125
|
|
| 18. |
E. R. Schukin, N. V. Malai, Z. L. Shulimanova, “Molekulyarnyi teploobmen tverdoi sfericheskoi chastitsy s gazoobraznoi sredoi”, TVT, 51:4 (2013), 552–556  |
→ |
Calculation of Temperature under Heating by an Immobile Laser Beam V. V. Manako, V. A. Putilin, A. V. Kamashev TVT, 49:1 (2011), 126–132
|
|
| 19. |
Lu B., Ruggles A.E., Francis M.W., “Numerical Study of Helium Solubility and Helium Bubble Stability in Mercury”, Ann. Nucl. Energy, 59 (2013), 75–79  |
→ |
Solubility of Gaseous Helium in Liquid Mercury at Temperatures $600$–$1500$ K S. N. Skovorod'ko, A. G. Mozgovoi, E. V. Rezenova TVT, 49:1 (2011), 138–139
|
|
| 20. |
A. Yu. Varaksin, “Gidrogazodinamika i teplofizika dvukhfaznykh potokov: problemy i dostizheniya (Obzor)”, TVT, 51:3 (2013), 421–455  |
→ |
Hydrodynamic Aspects of Boiling Up of a Disperse Phase in a Homogeneous Turbulent Flow of an Emulsion A. K. Rozentsvaig, Ch. S. Strashinskiy TVT, 49:1 (2011), 139–142
|
|
|
|
| Total publications: |
11591 |
| Scientific articles: |
10989 |
| Authors: |
8875 |
| Citations: |
23873 |
| Cited articles: |
3844 |
 |
Impact Factor Web of Science |
|
for 2025:
0.400 |
|
for 2024:
0.700 |
|
for 2023:
1.000 |
|
for 2021:
0.518 |
|
for 2020:
1.094 |
|
for 2019:
1.085 |
|
for 2018:
1.164 |
|
for 2017:
1.064 |
|
for 2016:
1.110 |
|
for 2015:
1.048 |
|
for 2014:
0.952 |
|
for 2013:
1.156 |
|
for 2012:
0.492 |
|
for 2011:
0.432 |
|
for 2010:
0.635 |
|
for 2009:
0.578 |
|
for 2008:
0.469 |
 |
Scopus Metrics |
|
2025 |
CiteScore |
1.700 |
|
2025 |
SNIP |
0.513 |
|
2025 |
SJR |
0.163 |
|
2024 |
CiteScore |
1.400 |
|
2024 |
SNIP |
0.419 |
|
2024 |
SJR |
0.160 |
|
2023 |
CiteScore |
1.500 |
|
2023 |
SNIP |
0.421 |
|
2023 |
SJR |
0.295 |
|
2022 |
SJR |
0.307 |
|
2021 |
SJR |
0.352 |
|
2020 |
SJR |
0.433 |
|
2019 |
SJR |
0.538 |
|
2018 |
CiteScore |
1.360 |
|
2018 |
SJR |
0.461 |
|
2017 |
CiteScore |
1.090 |
|
2017 |
SNIP |
1.434 |
|
2017 |
SJR |
0.455 |
|
2016 |
CiteScore |
1.140 |
|
2016 |
SNIP |
1.409 |
|
2016 |
SJR |
0.484 |
|
2015 |
CiteScore |
0.930 |
|
2015 |
SNIP |
1.317 |
|
2015 |
IPP |
0.904 |
|
2015 |
SJR |
0.401 |
|
2014 |
CiteScore |
0.920 |
|
2014 |
SNIP |
1.246 |
|
2014 |
IPP |
0.872 |
|
2014 |
SJR |
0.277 |
|
2013 |
SNIP |
0.945 |
|
2013 |
IPP |
0.961 |
|
2013 |
SJR |
0.253 |
|
2012 |
SNIP |
0.771 |
|
2012 |
IPP |
0.436 |
|
2012 |
SJR |
0.269 |
|