AbstractIn this paper, by constructing various kinds of sub- and super-solutions and using the basic properties of M-matrix, we give the necessary and sufficient conditions of global existence for nonnegative solutions to a degenerate parabolic system with completely coupled boundary conditions, which generalize the recent results of, for instance, Cui [Z. Cui, Critical curves of the non-Newtonian polytropic filtration equations coupled with nonlinear boundary conditions, Nonlinear Anal. 68 (2008) 3201–3208], Zhou–Mu [J. Zhou, C. Mu, Algebraic criteria for global existence or blow-up for a boundary coupled system of nonlinear diffusion equations, Appl. Anal. 86 (2007) 1185–1197] etc
AbstractThis paper investigates the global existence and nonexistence of positive solutions of the n...
AbstractIn this paper, we deal with the global existence and nonexistence of solutions to a nonlinea...
AbstractIn this paper the nonlinear degenerate parabolic system ut=vα1(Uxx+au), vt=uα2(vxx+bv) with ...
AbstractIn this paper, by constructing various kinds of sub- and super-solutions and using the basic...
AbstractIn this paper, we study the global existence and the global nonexistence of doubly nonlinear...
AbstractThis paper investigates the global existence and nonexistence of positive solutions of the n...
AbstractIn this paper, we deal with the global existence and nonexistence of solutions to a nonlinea...
AbstractConsider the degenerate parabolic boundary value problemut=Δϕ(u)+f(u) on Ω×(0,∞) in which Ω ...
AbstractThis paper investigates the blow-up and global existence of nonnegative solutions of the sys...
Consider the degenerate parabolic boundary value problemut = Δϕ(u) + f(u) on Ω × (0, ∞) in which Ω i...
We show that the reaction-diffusion system ut = ∆ϕ(u) + f (v), vt = ∆ψ(v) + g(u), with homogeneous N...
Abstract. The paper deals with the degenerate parabolic system with nonlinear boundary ux. By const...
AbstractThe author discusses the degenerate and quasilinear parabolic systemut=uαvβΔu+aupvqandvt=uθv...
AbstractThe initial and boundary value problem for the degenerate parabolic equation vt = Δ(ϑ(v)) + ...
We consider nonnegative solutions of degenerate parabolic equations with a singular absorption term ...
AbstractThis paper investigates the global existence and nonexistence of positive solutions of the n...
AbstractIn this paper, we deal with the global existence and nonexistence of solutions to a nonlinea...
AbstractIn this paper the nonlinear degenerate parabolic system ut=vα1(Uxx+au), vt=uα2(vxx+bv) with ...
AbstractIn this paper, by constructing various kinds of sub- and super-solutions and using the basic...
AbstractIn this paper, we study the global existence and the global nonexistence of doubly nonlinear...
AbstractThis paper investigates the global existence and nonexistence of positive solutions of the n...
AbstractIn this paper, we deal with the global existence and nonexistence of solutions to a nonlinea...
AbstractConsider the degenerate parabolic boundary value problemut=Δϕ(u)+f(u) on Ω×(0,∞) in which Ω ...
AbstractThis paper investigates the blow-up and global existence of nonnegative solutions of the sys...
Consider the degenerate parabolic boundary value problemut = Δϕ(u) + f(u) on Ω × (0, ∞) in which Ω i...
We show that the reaction-diffusion system ut = ∆ϕ(u) + f (v), vt = ∆ψ(v) + g(u), with homogeneous N...
Abstract. The paper deals with the degenerate parabolic system with nonlinear boundary ux. By const...
AbstractThe author discusses the degenerate and quasilinear parabolic systemut=uαvβΔu+aupvqandvt=uθv...
AbstractThe initial and boundary value problem for the degenerate parabolic equation vt = Δ(ϑ(v)) + ...
We consider nonnegative solutions of degenerate parabolic equations with a singular absorption term ...
AbstractThis paper investigates the global existence and nonexistence of positive solutions of the n...
AbstractIn this paper, we deal with the global existence and nonexistence of solutions to a nonlinea...
AbstractIn this paper the nonlinear degenerate parabolic system ut=vα1(Uxx+au), vt=uα2(vxx+bv) with ...