This work deals with the motion of a long slender elastic fiber in a turbulent flow. Neglecting the fiber effect on the turbulence, a centered differentiable Gaussian field is derived for the randomly fluctuating component of the flow velocity. The construction of the initial double-velocity correlation tensor is hereby based on the k-epsilon model and Kolmogorov's universal equilibrium theory. Its dynamic is described by Taylor's hypothesis of frozen turbulence. Using an empirical drag coefficient, the developed fluctuation field leads to a correlated stochastic force that can numerically be treated as white noise with flow dependent amplitude
In some processes for spinning synthetic fibers the filaments are exposed to highly turbulent air fl...
We test the fluctuation theorem from measurements in turbulent flows. We study the time fluctuations...
In melt-blowing very thin liquid fiber jets are spun due to high-velocity air streams. In literature...
The paper at hand deals with the modeling of turbulence effects on the dynamics of a long slender el...
Part I: General Modeling Framework The paper at hand deals with the modeling of turbulence effects o...
In [N. Marheineke and R. Wegener, SIAM J. Appl. Math., 66 (2006), pp. 1703-1726], an aerodynamic for...
The understanding of the motion of long slender elastic fibers in turbulent flows is of great intere...
In some processes for spinning synthetic fibers the filaments are exposed to highly turbulent flows ...
We study the dynamics of a flexible fiber freely moving in a three-dimensional fully developed turbu...
Considering the dynamics of long slender elastic fibers in turbulent flows, there exists a stochasti...
The energy equation for turbulent flow of fiber suspensions was derived in terms of second order cor...
The dynamics of individual flexible fibers in a turbulent flow fieldhave been analyzed, varying thei...
We analyze a spatially discretized model for the dynamics of a thin, long, elastic, inextensible fib...
International audienceTurbulence is a ubiquitous phenomenon in natural and industrial flows. Since t...
Fibre orientation and concentration distributions in a turbulent suspension are typically modeled by...
In some processes for spinning synthetic fibers the filaments are exposed to highly turbulent air fl...
We test the fluctuation theorem from measurements in turbulent flows. We study the time fluctuations...
In melt-blowing very thin liquid fiber jets are spun due to high-velocity air streams. In literature...
The paper at hand deals with the modeling of turbulence effects on the dynamics of a long slender el...
Part I: General Modeling Framework The paper at hand deals with the modeling of turbulence effects o...
In [N. Marheineke and R. Wegener, SIAM J. Appl. Math., 66 (2006), pp. 1703-1726], an aerodynamic for...
The understanding of the motion of long slender elastic fibers in turbulent flows is of great intere...
In some processes for spinning synthetic fibers the filaments are exposed to highly turbulent flows ...
We study the dynamics of a flexible fiber freely moving in a three-dimensional fully developed turbu...
Considering the dynamics of long slender elastic fibers in turbulent flows, there exists a stochasti...
The energy equation for turbulent flow of fiber suspensions was derived in terms of second order cor...
The dynamics of individual flexible fibers in a turbulent flow fieldhave been analyzed, varying thei...
We analyze a spatially discretized model for the dynamics of a thin, long, elastic, inextensible fib...
International audienceTurbulence is a ubiquitous phenomenon in natural and industrial flows. Since t...
Fibre orientation and concentration distributions in a turbulent suspension are typically modeled by...
In some processes for spinning synthetic fibers the filaments are exposed to highly turbulent air fl...
We test the fluctuation theorem from measurements in turbulent flows. We study the time fluctuations...
In melt-blowing very thin liquid fiber jets are spun due to high-velocity air streams. In literature...