Fractional modelling for BBM-Burger equation by using new homotopy analysis transform method

Joint Authors

Kumar, Sunil
Kumar, Devendra

Source

Arab Journal of Basic and Applied Sciences

Issue

Vol. 16, Issue 0 (31 Oct. 2014), pp.16-20, 5 p.

Publisher

University of Bahrain College of Science

Publication Date

2014-10-31

Country of Publication

Bahrain

No. of Pages

5

Main Subjects

Mathematics

Topics

Abstract EN

The purpose of this study is to introduce a new analytical method namely, fractional homotopy analysis transform method (FHATM) for series solution of the time fractional BBMBurger equation.

The homotopy analysis transform method is an innovative adjustment in Laplace transform algorithm (LTA) for nonlinear fractional partial differential equation in fluid dynamics and makes the calculation much simpler.

The proposed scheme finds the solutions of nonlinear problems without any discretization, restrictive assumptions and avoids the rounding off errors.

The numerical solutions obtained by the proposed method indicate that the approach is easy to implement and computationally very attractive.

American Psychological Association (APA)

Kumar, Sunil& Kumar, Devendra. 2014. Fractional modelling for BBM-Burger equation by using new homotopy analysis transform method. Arab Journal of Basic and Applied Sciences،Vol. 16, no. 0, pp.16-20.
https://search.emarefa.net/detail/BIM-409973

Modern Language Association (MLA)

Kumar, Sunil& Kumar, Devendra. Fractional modelling for BBM-Burger equation by using new homotopy analysis transform method. Arab Journal of Basic and Applied Sciences Vol. 16 (Oct. 2014), pp.16-20.
https://search.emarefa.net/detail/BIM-409973

American Medical Association (AMA)

Kumar, Sunil& Kumar, Devendra. Fractional modelling for BBM-Burger equation by using new homotopy analysis transform method. Arab Journal of Basic and Applied Sciences. 2014. Vol. 16, no. 0, pp.16-20.
https://search.emarefa.net/detail/BIM-409973

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 19-20

Record ID

BIM-409973