General decay for a system of viscoelastic wave equation with past history, distributed delay and Balakrishnan-Taylor damping terms

Author:

Choucha Abdelbaki12,Boulaaras Salah3,Ouchenane Djamel4,Alkhalaf Salem5,Jan Rashid6

Affiliation:

1. Department of Mathematics, Faculty of Exact Sciences, University of El Oued, Algeria

2. Department of Material Sciences, Faculty of Sciences, Amar Teleji Laghouat University, Algeria

3. Department of Mathematics, College of Sciences and Arts, ArRas, Qassim University, Saudi Arabia

4. Department of Mathematics, Faculty of Sciences, Amar Teleji Laghouat University, Algeria

5. Department of Computer Sciences, College of Sciences and Arts, ArRas, Qassim University, Saudi Arabia

6. Department of Mathematics, University of Swabi, Swabi 23561, Pakistan

Abstract

<abstract><p>The subject of this research is a coupled system of nonlinear viscoelastic wave equations with distributed delay components, infinite memory and Balakrishnan-Taylor damping. Assume the kernels $ g_{i} :{\bf R}_{+}\rightarrow {\bf R}_{+} $ holds true the below</p> <p><disp-formula> <label/> <tex-math id="FE1"> \begin{document}$ g_{i}'(t)\leq-\zeta_{i}(t)G_{i}(g_{i}(t)), \quad \forall t\in {\bf R}_{+}, \quad {\rm{for}} \quad i = 1, 2, $\end{document} </tex-math></disp-formula></p> <p>in which $ \zeta_{i} $ and $ G_{i} $ are functions. We demonstrate the stability of the system under this highly generic assumptions on the behaviour of $ g_i $ at infinity and by dropping the boundedness assumptions in the historical data.</p></abstract>

Publisher

American Institute of Mathematical Sciences (AIMS)

Subject

General Mathematics

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