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JOURNALS // Teplofizika vysokikh temperatur

TVT, 2001, Volume 39, Issue 5, Pages 810–832 (Mi tvt1981)

Heat and mass transfer in anisotropic bodies
V. F. Formalev

This publication is cited in the following articles:
  1. S. A. Kolesnik, “Nonsteady Heat Transfer in Multilayer Anisotropic Composite Plates”, Russ. Engin. Res., 45:4 (2025), 530  crossref
  2. E. L. Kuznetsova, G. I. Kriven', “Thermal State of Composites at Failure”, Russ. Engin. Res., 44:5 (2024), 697  crossref
  3. El-Nabulsi R.A., “Thermal Transport Equations in Porous Media From Product-Like Fractal Measure”, J. Therm. Stresses, 44:7 (2021), 899–918  crossref  isi  scopus
  4. Syrodoy S.V., Salomatov V.V., “Influence of Filtration Heat Transfer on Parameters and Conditions For Ignition of Coal-Water Fuel Particles”, Thermophys. Aeromechanics, 26:5 (2019), 745–760  crossref  isi  scopus
  5. Formalev V.F. Kolesnik S.A. Kuznetsova E.L., “Approximate Analytical Solution of the Problem of Conjugate Heat Transfer Between the Boundary Layer and the Anisotropic Strip”, Period. Tche Quim., 16:32 (2019), 572–582  isi
  6. V.S. Zarubin, V.V. Leonov, V.S. Jr. Zarubin, “Temperature State of the Anisotropic Spherical Layer During Convective Heat Exchange with the Environment”, HoBMSTU.SNS, 2019, no. 4 (85), 40  crossref
  7. Kuznetsov V G., Salomatov V.V., Syrodoy V S., “Ignition of Particles of Wet Woody Biomass Under Convective Diffusion of Water Vapor in the Near-Wall Region”, Combust. Explos., 54:3 (2018), 325–336  crossref  isi  scopus
  8. Rabinskiy L.N. Kuznetsova E.L., “Analytical and Numerical Study of Heat and Mass Transfer in Composite Materials on the Basis of the Solution of a Stefan-Type Problem”, Period. Tche Quim., 15:1 (2018), 339–347  isi
  9. Ekaterina Kuznetsova, Lev Rabinskiy, “Mathematical Modeling of Thermal Association in a Porous Medium with a Capillary Effect in Anisotropic Composite Materials”, KEM, 771 (2018), 136  crossref
  10. S. A. Kolesnik, V. F. Formalev, E. L. Kuznetsova, “The inverse boundary thermal conductivity problem of recovery of heat fluxes to the boundries of anisotropic bodies”, High Temperature, 53:1 (2015), 68–72  mathnet  crossref  crossref  isi  elib  elib
  11. S. A. Kolesnik, “A method for identification of nonlinear components of heat transer tensor for anisotropic materials”, Math. Models Comput. Simul., 6:5 (2014), 480–489  mathnet  crossref
  12. Pavel Vlasov, Igor Volkov, “Half-Space Temperature Field with a Movable Thermally Thin-Coated Boundary Under External Heat Flux”, S&E BMSTU, 14:11 (2014)  crossref
  13. E. L. Kuznetsova, “Modelirovanie teploperenosa v nelineinom anizotropnom prostranstve na osnove analiticheskogo resheniya”, Matem. modelirovanie, 24:1 (2012), 46–54  mathnet  mathscinet
  14. V. F. Formalev, I. A. Selin, E. L. Kuznetsova, “Modelirovanie teplovykh voln v nelineinom anizotropnom prostranstve”, Vestn. Sam. gos. tekhn. un-ta. Ser. Fiz.-mat. nauki, 1(20) (2010), 239–243  mathnet  crossref
  15. E. L. Kuznetsova, “Modelirovanie teplovogo sostoyaniya kompozitsionnykh materialov na osnove universalnogo zakona razlozheniya svyazuyuschikh”, Vestn. Sam. gos. tekhn. un-ta. Ser. Fiz.-mat. nauki, 5(21) (2010), 170–178  mathnet  crossref
  16. Yong Cao, Xiaoming He, Tao Lü, “A splitting extrapolation for solving nonlinear elliptic equations with d-quadratic finite elements”, Journal of Computational Physics, 228:1 (2009), 109  crossref
  17. Jürgen Geiser, Olaf Klein, Peter Philip, “Influence of Anisotropic Thermal Conductivity in the Apparatus Insulation for Sublimation Growth of SiC:  Numerical Investigation of Heat Transfer”, Crystal Growth & Design, 6:9 (2006), 2021  crossref
  18. V. F. Formalev, S. A. Kolesnik, A. A. Chipashvili, “Chislennoe modelirovanie teploperenosa v anizotropnykh telakh s razryvnymi kharakteristikami”, Matem. modelirovanie, 16:5 (2004), 94–102  mathnet


© Steklov Math. Inst. of RAS, 2026