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JOURNALS // Sibirskii Matematicheskii Zhurnal // Archive

Sibirsk. Mat. Zh., 2018 Volume 59, Number 3, Pages 544–560 (Mi smj2993)

This article is cited in 23 papers

Construction and study of exact solutions to a nonlinear heat equation

A. L. Kazakova, Sv. S. Orlova, S. S. Orlovb

a Matrosov Institute for System Dynamics and Control Theory of the Russian Academy of Sciences, Irkutsk, Russia
b Irkutsk State University, Irkutsk, Russia

Abstract: We construct and study exact solutions to a nonlinear second order parabolic equation which is usually called the “nonlinear heat equation” or “nonlinear filtration equation” in the Russian literature and the “porous medium equation” in other countries. Under examination is the special class of solutions having the form of a heat wave that propagates through cold (zero) background with finite velocity. The equation degenerates on the boundary of a heat wave (called the heat front) and its order decreases. The construction of these solutions by passing to an overdetermined system and analyzing its solvability reduces to integration of nonlinear ordinary differential equations of the second order with an initial condition such that the equations are not solvable with respect to the higher derivative. Some admissible families of heat fronts and the corresponding exact solutions to the problems in question are obtained. A detailed study of the global properties of solutions is carried out by the methods of the qualitative theory of differential equations and power geometry which are adapted for degenerate equations. The results are interpreted from the point of view of the behavior and properties of heat waves with a logarithmic front.

Keywords: porous medium equation, exact solution, heat wave, existence theorem, qualitative analysis.

UDC: 517.958+517.911

MSC: 35R30

Received: 14.07.2017

DOI: 10.17377/smzh.2018.59.306


 English version:
Siberian Mathematical Journal, 2018, 59:3, 427–441

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© Steklov Math. Inst. of RAS, 2024