Effects of helicity on dissipation in homogeneous box turbulence
From MaRDI portal
Publication:4559150
DOI10.1017/jfm.2018.709zbMath1415.76259arXiv1808.09946OpenAlexW3102042025WikidataQ129180838 ScholiaQ129180838MaRDI QIDQ4559150
Publication date: 3 December 2018
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1808.09946
Related Items
New exact Betchov-like relation for the helicity flux in homogeneous turbulence, Dual channels of helicity cascade in turbulent flows, Spatio-temporal fluctuations of interscale and interspace energy transfer dynamics in homogeneous turbulence, Scale-similar structures of homogeneous isotropic non-mirror-symmetric turbulence based on the Lagrangian closure theory, Scaling of the turbulent energy dissipation correlation function
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- On the global regularity of a helical-decimated version of the 3D Navier-Stokes equations
- The Beltrami spectrum for incompressible fluid flows
- Proximinality in generalized direct sums
- Unification of variational principles for turbulent shear flows: The background method of Doering-Constantin and the mean-fluctuation formulation of Howard-Busse
- Dependence of decaying homogeneous isotropic turbulence on inflow conditions
- Dissipation, enstrophy and pressure statistics in turbulence simulations at high Reynolds numbers
- Variations on Kolmogorov flow: turbulent energy dissipation and mean flow profiles
- Spectral imbalance and the normalized dissipation rate of turbulence
- Energy dissipation rate and energy spectrum in high resolution direct numerical simulations of turbulence in a periodic box
- The joint cascade of energy and helicity in three-dimensional turbulence
- On the normalized turbulent energy dissipation rate
- Rotating helical turbulence. I. Global evolution and spectral behavior
- Rotating helical turbulence. II. Intermittency, scale invariance, and structures
- Taylor’s (1935) dissipation surrogate reinterpreted
- Chaotic streamlines in the ABC flows
- The Optimum Theory of Turbulence
- Some comments on turbulence
- The nature of triad interactions in homogeneous turbulence
- Bounds on Flow Quantities
- The background flow method. Part 1. Constructive approach to bounds on energy dissipation
- On the universality of the Kolmogorov constant
- Energy dissipation in body-forced plane shear flow
- Statistical analysis of the effects of helicity in inhomogeneous turbulence
- Examination of hypotheses in the Kolmogorov refined turbulence theory through high-resolution simulations. Part 1. Velocity field
- Magnetostatic equilibria and analogous Euler flows of arbitrarily complex topology. Part 1. Fundamentals
- Energy dissipation in body-forced turbulence
- Local 4/5-law and energy dissipation anomaly in turbulence
- Applied Analysis of the Navier-Stokes Equations
- Split energy–helicity cascades in three-dimensional homogeneous and isotropic turbulence
- Helical turbulence and absolute equilibrium
- The dissipation rate coefficient of turbulence is not universal and depends on the internal stagnation point structure
- Helically decomposed turbulence
- The degree of knottedness of tangled vortex lines
- Scalar dissipation rate and dissipative anomaly in isotropic turbulence
- Velocity field statistics in homogeneous steady turbulence obtained using a high-resolution direct numerical simulation
- An update on the energy dissipation rate in isotropic turbulence
- Bounds on dissipation for Navier-Stokes flow with Kolmogorov forcing