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Nonlinear physics and mechanics
A Sphere Held Fixed in a Poiseuille Flow
near a Rough Wall
K. Lamzouda, R. Assoudiba, F. Bouisfia, M. Chaouia a OPTIMEE Laboratory, Department of Physics, Faculty of Sciences, Moulay Ismail University,
B.P. 11201 Zitoune, Meknes, Morocco
b LGEMS Laboratory, National School of Applied Sciences, Ibn Zohr University,
B.P. 1136 Agadir, Morocco
Аннотация:
We present here an analytical calculation of the hydrodynamic interactions between a smooth
spherical particle held fixed in a Poiseuille flow and a rough wall. By the assumption of a low
Reynolds number, the flow around a fixed spherical particle is described by the Stokes equations.
The surface of the rigid wall has periodic corrugations, with small amplitude compared with the
sphere radius. The asymptotic development coupled with the Lorentz reciprocal theorem are
used to find the analytical solution of the couple, lift and drag forces exerted on the particle,
generated by the second-order flow due to the wall roughness. These hydrodynamic effects are
evaluated in terms of amplitude and period of roughness and also in terms of the distance between
sphere and wall.
Ключевые слова:
lift force, drag force, rough wall, Stokes equations, Poiseuille flow, asymptotic
development, Lorentz reciprocal theorem.
Поступила в редакцию: 17.02.2021 Принята в печать: 17.08.2021
Образец цитирования:
K. Lamzoud, R. Assoudi, F. Bouisfi, M. Chaoui, “A Sphere Held Fixed in a Poiseuille Flow
near a Rough Wall”, Rus. J. Nonlin. Dyn., 17:3 (2021), 289–306
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/nd757 https://www.mathnet.ru/rus/nd/v17/i3/p289
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