19 pages, 9 figuresInternational audienceThe fragmentation of small, brittle, flexible, inextensible fibers is investigated in a fully-developed, homogeneous, isotropic turbulent flow. Such small fibers spend most of their time fully stretched and their dynamics follows that of stiff rods. They can then break through tensile failure, i.e. when the tension is higher than a given threshold. Fibers bend when experiencing a strong compression. During these rare and intermittent buckling events, they can break under flexural failure, i.e. when the curvature exceeds a threshold. Fine-scale massive simulations of both the fluid flow and the fiber dynamics are performed to provide statistics on these two fragmentation processes. This gives ingredie...
A particle-level simulation technique has been developed for modelling the flow of fibres in turbule...
A simulation methodology is presented that allows detailed studies of the breakup mechanism of fluid...
We examine drop breakup in a class of stochastic flow fields as a model for the flow through fixed f...
International audienceSmall flexible fibers in a turbulent flow are found to be most of the time as ...
This thesis analyses the dynamics of small complex objects immersed in a turbulent environment. Turb...
International audienceWe numerically investigated the transport, deformation and buckling events of ...
We study the dynamics of a flexible fiber freely moving in a three-dimensional fully developed turbu...
An exact theory is developed to describe the evolution of fibre fragmentation in a single-filament c...
In this paper, we investigate the dynamics of flexible fibers in turbulent channel flow. Fibers are ...
In this paper, we examine from a statistical point of view the deformation of flexible fibers in tur...
Les fibres flexibles en écoulement turbulent se retrouvent dans divers contextes allant de la pollut...
The present work investigates the mechanical behaviour of finite-size, elastic and inertial fibres f...
The present work investigates the mechanical behaviour of finite-size, elastic and inertial fibres f...
A particle-level simulation technique has been developed for modelling the flow of fibres in turbule...
A simulation methodology is presented that allows detailed studies of the breakup mechanism of fluid...
We examine drop breakup in a class of stochastic flow fields as a model for the flow through fixed f...
International audienceSmall flexible fibers in a turbulent flow are found to be most of the time as ...
This thesis analyses the dynamics of small complex objects immersed in a turbulent environment. Turb...
International audienceWe numerically investigated the transport, deformation and buckling events of ...
We study the dynamics of a flexible fiber freely moving in a three-dimensional fully developed turbu...
An exact theory is developed to describe the evolution of fibre fragmentation in a single-filament c...
In this paper, we investigate the dynamics of flexible fibers in turbulent channel flow. Fibers are ...
In this paper, we examine from a statistical point of view the deformation of flexible fibers in tur...
Les fibres flexibles en écoulement turbulent se retrouvent dans divers contextes allant de la pollut...
The present work investigates the mechanical behaviour of finite-size, elastic and inertial fibres f...
The present work investigates the mechanical behaviour of finite-size, elastic and inertial fibres f...
A particle-level simulation technique has been developed for modelling the flow of fibres in turbule...
A simulation methodology is presented that allows detailed studies of the breakup mechanism of fluid...
We examine drop breakup in a class of stochastic flow fields as a model for the flow through fixed f...