SCALING BEHAVIOR OF STOCHASTIC FLUID FLOW IN POROUS MEDIA: LANGEVIN DYNAMICS
-
Published:2023
Issue:3
Volume:14
Page:63-72
-
ISSN:2151-4798
-
Container-title:Special Topics & Reviews in Porous Media: An International Journal
-
language:en
-
Short-container-title:Special Topics Rev Porous Media
Author:
Hariti Yassine,Hader Ahmed,Amallah Layla,Chamkha Ali J.,El hana Ahmed,Tanasehte Mohammed,Boughaleb Yahia
Abstract
Transport phenomena of fluids in porous media occur in a variety of mediums with different properties. These phenomena are governed by a behavior of scaling law as a function of the different universal components. Hence, we study numerically the fluid transport phenomena in a porous medium under the effect of a static pressing force. Our numerical investigation is developed using the Langevin dynamics based on the competition between the stochastic and the dissipation processes. We study both average flow distance and average flow velocity. The results show that the time evolution of these two magnitudes exhibits exponential profiles with two different regimes, and they evince a decreasing behavior versus fluid viscosity, but an increasing behavior with both static pressure and medium porosity. Scaling law of the mean flow velocity is checked for different control parameters: static pressure, friction coefficient, and medium porosity. We have concluded that the exponent values β ≈ 0.5 ± 0.01 and α ≈ 1 ± 0.01 are independent of these control parameters, which proves their universal character and their consistency with other experimental outcomes.
Subject
General Engineering,General Materials Science
Reference52 articles.
1. Amallah, L., Hader, A., Bakir, R., Achik, I., Sbiaai, H., Tarras, I., and Boughaleb, Y., Correlations and Diffusions Process in Self-Propelled Particles Dynamic: Langevin Equation Treatment, Sensor Lett., pp. 688-692, 2018. 2. Amallah, L., Hader, A., Bakir, R., Tarras, I., and Boughaleb, Y., Langevin Dynamic Simulation of Self-Propelled Particles in Two-Dimensional Systems, IOP Conf. Ser.: Mater. Sci. Eng., vol. 948, 2020. 3. Amallah, L., Hader, A., Tanasehte, M., Hariti, Y., and Boughaleb, Y., Dynamical Properties and Scaling Behavior of Self-Propelled Particles: Langevin Dynamics, Multidisc. Model. Mater. Struct., vol. 17, no. 2, pp. 418-425, 2021. 4. Amallah, L., Hader, A., Tanasehte, M., Hariti, Y., Sbiaai, H., and Boughaleb, Y., Kinetic and Scaling Behavior of Collective Motion in Biomaterials, Mater. Today: Proc., vol. 30, pp. 918-922, 2020. 5. Bakir, R., Tarras, I., Amallah, L., Sbiaai, H., Hader, A., Mazroui, M., and Boughaleb, Y., Effects of Agent's Orientation in 2D Flocking Models, Chin. J. Phys., vol. 55, pp. 692-697, 2017.
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|