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Fractal–Fractional Operators Applied to Water Pollution Model: Well Posedness, Stability, and Simulation

Author

Listed:
  • Pasquini Fotsing Soh
  • Mathew Kinyanjui
  • David Malonza
  • Roy Kiogora

Abstract

Water contamination is a crucial area of study that has drawn significant attention from researchers and environmentalists due to its profound impact on humans, animals, and plants. It is equally harmful as air and soil contamination and is closely linked to both. Due to the global importance of this issue, accurately analyzing mathematical models is one of the priorities for researchers. In this regard, this paper presents a mathematical model for both soluble and insoluble water pollutants, formulated as a system of nonlinear fractional ordinary differential equations using a compartmental approach. The fractal–fractional (FF) derivative operator with power, exponential, and generalized Mittag–Leffler kernels is employed to solve the proposed system. The existence and uniqueness of the FF order model are proven using Schaefer’s fixed‐point theorem and the Banach contraction principle. Additionally, we demonstrate global stability based on the Ulam–Hyers approach. Finally, simulations have been carried out using the Adams–Bashforth techniques to derive a fractional‐order scheme that will help to validate the theoretical findings and provide insights into how to prevent and control this type of environmental problem.

Suggested Citation

  • Pasquini Fotsing Soh & Mathew Kinyanjui & David Malonza & Roy Kiogora, 2025. "Fractal–Fractional Operators Applied to Water Pollution Model: Well Posedness, Stability, and Simulation," Journal of Applied Mathematics, John Wiley & Sons, vol. 2025(1).
  • Handle: RePEc:wly:jnljam:v:2025:y:2025:i:1:n:5628648
    DOI: 10.1155/jama/5628648
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    References listed on IDEAS

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    1. Amitrajeet Batabyal & Hamid Beladi, 2024. "Decentralized vs. Centralized Water Pollution Cleanup in the Ganges in a Model with Three Cities," Networks and Spatial Economics, Springer, vol. 24(2), pages 383-394, June.
    2. Kanwal, Tanzeela & Hussain, Azhar & Avcı, İbrahim & Etemad, Sina & Rezapour, Shahram & Torres, Delfim F.M., 2024. "Dynamics of a model of polluted lakes via fractal–fractional operators with two different numerical algorithms," Chaos, Solitons & Fractals, Elsevier, vol. 181(C).
    3. Atangana, Abdon, 2017. "Fractal-fractional differentiation and integration: Connecting fractal calculus and fractional calculus to predict complex system," Chaos, Solitons & Fractals, Elsevier, vol. 102(C), pages 396-406.
    4. Rosa, Silvério & Torres, Delfim F.M., 2018. "Optimal control of a fractional order epidemic model with application to human respiratory syncytial virus infection," Chaos, Solitons & Fractals, Elsevier, vol. 117(C), pages 142-149.
    5. Kamran & Ujala Gul & Fahad M. Alotaibi & Kamal Shah & Thabet Abdeljawad & Yusuf Gurefe, 2023. "Computational Approach for Differential Equations with Local and Nonlocal Fractional-Order Differential Operators," Journal of Mathematics, Hindawi, vol. 2023, pages 1-27, May.
    6. Neil M. Ferguson & Derek A. T. Cummings & Christophe Fraser & James C. Cajka & Philip C. Cooley & Donald S. Burke, 2006. "Strategies for mitigating an influenza pandemic," Nature, Nature, vol. 442(7101), pages 448-452, July.
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