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Finite Difference Method for Time-Space Fractional Advection-Diffusion Equations With Riesz Derivative

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Date

2018

Journal Title

Journal ISSN

Volume Title

Publisher

Mdpi

Open Access Color

GOLD

Green Open Access

Yes

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0

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5

Publicly Funded

No
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Top 10%
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Abstract

In this article, a numerical scheme is formulated and analysed to solve the time-space fractional advection-diffusion equation, where the Riesz derivative and the Caputo derivative are considered in spatial and temporal directions, respectively. The Riesz space derivative is approximated by the second-order fractional weighted and shifted Grunwald-Letnikov formula. Based on the equivalence between the fractional differential equation and the integral equation, we have transformed the fractional differential equation into an equivalent integral equation. Then, the integral is approximated by the trapezoidal formula. Further, the stability and convergence analysis are discussed rigorously. The resulting scheme is formally proved with the second order accuracy both in space and time. Numerical experiments are also presented to verify the theoretical analysis.

Description

Arshad, Sadia/0000-0001-9085-5915

Keywords

Fractional Advection Dispersion Equation, Riesz Derivative, Caputo Derivative, Trapezoidal Formula, Science, Physics, QC1-999, trapezoidal formula, Q, riesz derivative, caputo derivative, Astrophysics, Article, QB460-466, fractional advection dispersion equation, fractional advection dispersion equation; riesz derivative; caputo derivative; trapezoidal formula

Fields of Science

01 natural sciences, 0101 mathematics

Citation

Arshad, Sadia...et al. (2018). Finite Difference Method for Time-Space Fractional Advection-Diffusion Equations with Riesz Derivative, Entropy, 20(5).

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
28

Source

Entropy

Volume

20

Issue

5

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End Page

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CrossRef : 30

Scopus : 31

PubMed : 4

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Mendeley Readers : 6

SCOPUS™ Citations

32

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Web of Science™ Citations

27

checked on Feb 23, 2026

Page Views

5

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