Алгоритм решения обобщенной задачи нестационарной теплопроводности…
ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. Машиностроение. 2017. № 1
127
[3] Samarskiy A.A., Vabishchevich P.N. Chislennye metody resheniya obratnykh zadach ma-
tematicheskoy fiziki [Numerical technique for solving inverse problem of mathematical phy-
sics]. Moscow, LKI Publ., 2009. 480 p.
[4] Grushin A.I. Verification in computer engineering.
Potentsial
, 2007, no. 4 (in Russ.).
Available at:
http://www.ipmce.ru/eng/img/press/potential4-2007.pdf[5] Kartashov E.M. Analiticheskie metody v teploprovodnosti tverdykh tel [Analytical me-
thods in solid body thermal conductivity]. Moscow, Vysshaya shkola Publ., 2001. 550 p.
[6] Carslaw H., Jaeger J. Conduction of нeat in solids. Oxford University Press, 1959. 517 p.
(Russ. ed.: Teploprovodnost' tverdykh tel. Moscow, Nauka Pub., 1964. 488 p.).
[7] Mikhaylov M.D. Nestatsionarnye temperaturnye polya v obolochkakh [Nonstationary
thermal field in shells]. Moscow, Energiya Publ., 1967. 120 p. (in Russ.).
[8] Kudinov V.A., Averin B.A., Stefanyuk E.V., Nazarenko S.A. Analiticheskie metody tep-
loprovodnosti [Analytical methods of thermal conductivity]. Samara, SamGTU Publ., 2004.
209 p.
[9] Kudinov V., Stefanyuk E., Kudinov I. Analiticheskie metody teploprovodnosti [Analytical
methods of thermal conductivity]. Saarbrucken (Germany), LAP Lambert Academic Publi-
shing, 2011. 340 p. (in Russ.).
[10] Eliseev V.N., Borovkova T.V. The generalized analytical approach to calculating a statio-
nary temperature field in objects of simple geometrical shapes.
Vestn. Mosk. Gos. Tekh. Univ.
im. N.E. Baumana, Mashinostr
. [Herald of the Bauman Moscow State Tech. Univ., Mech.
Eng.], 2014, no. 1, pp. 40–57 (in Russ.).
[11] Koshlyakov N.S., Gliner E.B., Smirnov M.M. Uravneniya v chastnykh proizvodnykh ma-
tematicheskoy fiziki [Partial differential equations of mathematical physics]. Moscow, Vys-
shaya shkola Publ., 1979. 710 p.
[12] Kamke E. Differentialgleichungen. Losungsmethoden und Losungen; Gewohnliche Dif-
ferentialgleichungen, Leipzig, Becker, 1943. (Russ. ed.: Spravochnik po obyknovennym diffe-
rentsial'nym uravneniyam. Moscow, Nauka Publ., 1976. 576 p.).
[13] Abramovits M., Stigan I. Spravochnik po spetsial'nym funktsiyam [Special Function
Handbook]. Moscow, Energiya Publ., 1979. 832 p.
[14] Eliseev V.N., Tovstonog V.A., Borovkova T.V., Pavlova Ya.M. Thermostability of casings
of gas-discharge tubular water-cooled radiation sources in nonstationary state.
Vestn. Mosk.
Gos. Tekh. Univ. im. N.E. Baumana, Mashinostr
. [Herald of the Bauman Moscow State Tech.
Univ., Mech. Eng.], 2016, no. 2, pp. 45–59 (in Russ.). DOI: 10.18698/0236-3941-2016-2-45-59
[15] Baranov V.V., Shlykovich A.A. Bath for infrared heating of liquid processing medium in
microelectronics technology.
Zhurnal nauchnykh publikatsiy aspirantov i doktorantov
, 2013,
no. 4 (in Russ.). Available at:
http://www.jurnal.org/articles/2013/electron1.html[16] Belyaev N.M., Ryadno A.A. Metody teorii teploprovodnosti. T. 1 [Thermal conductivity
methods theory. Vol. 1]. Moscow, Vysshaya shkola Publ., 1982. 328 p.
[17] Zarubin V.S. Temperaturnye polya v konstruktsii letatel'nykh apparatov [Thermal fields
in aircraft construction]. Moscow, Mashinostroenie Publ., 1966. 216 p.
[18] Kreyt F., Blek U. Osnovy teploperedachi [Fundamentals of heat flow]. Moscow, Mir Publ.,
1983. 512 p.