The problem of determining the force acting on a particle in a fluid where the motion of the fluid and the particle is given has been considered in some detail in the literature. In this work, we propose an example of a new class of problems where, the fluid is quiescent and the effect of an external periodic force on the motion of the particle is determined at low non-zero Reynolds numbers. We present an analysis of the dynamics of dilute suspensions of periodically forced prolate spheroids in a quiescent Newtonian fluid at low Reynolds numbers including the effects of both convective and unsteady inertia. The inclusion of both forms of inertia leads to a nonlinear integro — differential equation which is solved numerically for the velocit...
We report an analysis, using the tools of nonlinear dynamics and chaos theory, of the fluctuations i...
International audienceThe role of solid-solid contacts on the transition between reversible and irre...
We consider a suspension of non-interacting flat elastic particles in a Newtonian fluid. We model a ...
The problem of determining the force acting on a particle in a fluid where the motion of the\ud flui...
We study the effects of both convective and unsteady inertia on the dynamics and rheology of a dilut...
We study the effects of both convective and unsteady inertia on the dynamics and rheology of a dilut...
In this paper we present the results of a numerical simulation of the dynamics of a periodically for...
The presence and the microscopic origin of normal stress differences in dense suspensions under simp...
The effect of rotational Brownian motion on the rheology of a dilute suspension of dipolar spheroids...
A set of constitutive equations, valid for arbitrary linear bulk flows, is derived for a dilute susp...
We review results obtained over a period of about a decade on a class of technologically and fundame...
<p>We calculate the stress response, or rheology, of a micro-mechanical model suspension of rigid, B...
The rheology during the start-up and cessation of simple shear flow has been investigated for near h...
We make use of the formulation developed by Lovalenti and Brady 1 for the hydrodynamic force acting ...
A new simulation method is presented for low-Reynolds-number flow problems involving elongated parti...
We report an analysis, using the tools of nonlinear dynamics and chaos theory, of the fluctuations i...
International audienceThe role of solid-solid contacts on the transition between reversible and irre...
We consider a suspension of non-interacting flat elastic particles in a Newtonian fluid. We model a ...
The problem of determining the force acting on a particle in a fluid where the motion of the\ud flui...
We study the effects of both convective and unsteady inertia on the dynamics and rheology of a dilut...
We study the effects of both convective and unsteady inertia on the dynamics and rheology of a dilut...
In this paper we present the results of a numerical simulation of the dynamics of a periodically for...
The presence and the microscopic origin of normal stress differences in dense suspensions under simp...
The effect of rotational Brownian motion on the rheology of a dilute suspension of dipolar spheroids...
A set of constitutive equations, valid for arbitrary linear bulk flows, is derived for a dilute susp...
We review results obtained over a period of about a decade on a class of technologically and fundame...
<p>We calculate the stress response, or rheology, of a micro-mechanical model suspension of rigid, B...
The rheology during the start-up and cessation of simple shear flow has been investigated for near h...
We make use of the formulation developed by Lovalenti and Brady 1 for the hydrodynamic force acting ...
A new simulation method is presented for low-Reynolds-number flow problems involving elongated parti...
We report an analysis, using the tools of nonlinear dynamics and chaos theory, of the fluctuations i...
International audienceThe role of solid-solid contacts on the transition between reversible and irre...
We consider a suspension of non-interacting flat elastic particles in a Newtonian fluid. We model a ...