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The Rayleigh–Stokes Problem for a Heated Generalized Second-Grade Fluid with Fractional Derivative: An Implicit Scheme via Riemann–Liouville Integral

Author

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  • Abdul Hamid Ganie
  • Abdulkafi Mohammed Saeed
  • Sadia Saeed
  • Umair Ali
  • Muhammad Irfan

Abstract

The goal of this study is to use the fast algorithm to solve the Rayleigh–Stokes problem for heated generalized second-grade fluid (RSP-HGSGF) with Riemann–Liouville time fractional derivative using the fast algorithm. The modified implicit scheme, which is formulated by the Riemann–Liouville integral formula and applied to the fractional RSP-HGSGF, is proposed. Numerical experiments will be carried out to demonstrate that the scheme is simple to implement, and the results will reveal the best way to implement the suggested technique. The proposed scheme’s stability and convergence will be examined using the Fourier series. The method is stable, and the approximation solution approaches the exact solution. A numerical demonstration will be provided to demonstrate the applicability and viability of the suggested strategy.

Suggested Citation

  • Abdul Hamid Ganie & Abdulkafi Mohammed Saeed & Sadia Saeed & Umair Ali & Muhammad Irfan, 2022. "The Rayleigh–Stokes Problem for a Heated Generalized Second-Grade Fluid with Fractional Derivative: An Implicit Scheme via Riemann–Liouville Integral," Mathematical Problems in Engineering, Hindawi, vol. 2022, pages 1-13, May.
  • Handle: RePEc:hin:jnlmpe:6948461
    DOI: 10.1155/2022/6948461
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