Fiber Dynamics in Turbulent Flows: General Modeling Framework
Nicole Marheineke, Raimund Wegener
Source abstract
The paper at hand deals with the modeling of turbulence effects on the dynamics of a long slender elastic fiber. Independent of the choice of the drag model, a general aerodynamic force concept is derived on the basis of the velocity field for the randomly fluctuating component of the flow. Its construction as a centered differentiable Gaussian field complies thereby with the requirements of the stochastic k-epsilon turbulence model and Kolmogorov's universal equilibrium theory on local isotropy.
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