We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent flows. By introducing a novel way to make numerical investigations of Navier-Stokes equations, we show that all 3D flows in nature possess a subset of nonlinear evolution leading to a reverse energy transfer: from small to large scales. Up to now, such an inverse cascade was only observed in flows under strong rotation and in quasi-two-dimensional geometries under strong confinement. We show here that energy flux is always reversed when mirror symmetry is broken, leading to a distribution of helicity in the system with a well-defined sign at all wave numbers. Our findings broaden the range of flows where the inverse energy cascade may be detect...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Inviscid invariants of flow equations are crucial in determining the direction of the turbulent ener...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Inviscid invariants of flow equations are crucial in determining the direction of the turbulent ener...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We study the statistical properties of homogeneous and isotropic three-dimensional (3D) turbulent fl...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
We investigate the transfer properties of energy and helicity fluctuations in fully developed homoge...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Rotating turbulence is an example of a three-dimensional system in which an inverse cascade of energ...
Inviscid invariants of flow equations are crucial in determining the direction of the turbulent ener...