An in-depth numerical study of exact laws for compressible Hall magnetohydrodynamic turbulence
arXiv:2201.10819 · doi:10.3847/1538-4357/ac517a
Abstract
Various exact laws governing compressible magnetohydrodynamic (MHD) and Hall-MHD (CHMHD) turbulence have been derived in recent years. Other than their fundamental theoretical interest, these laws are generally used to estimate the energy dissipation rate from spacecraft observations in order to address diverse problems related, e.g., to heating of the solar wind (SW) and magnetospheric plasmas. Here we use various direct numerical simulation (DNS) data of free-decay isothermal CHMHD turbulence obtained with the GHOST code (Geophysical High-Order Suite for Turbulence) to analyze two of the recently derived exact laws. The simulations reflect different intensities of the initial Mach number and the background magnetic field. The analysis demonstrates the equivalence of the two laws in the inertial range and relates the strength of the Hall effect to the amplitude of the cascade rate at sub-ion scales. When taken in their general form (i.e., not limited to the inertial range) some subtleties regarding the validity of the stationarity assumption or the absence of the forcing in the simulations are discussed. We show that the free-decay nature of the turbulence induces a shift from a large scale forcing towards the presence of a scale-dependent reservoir of energy fueling the cascade or dissipation. The reduced form of the exact laws (valid in the inertial range) ultimately holds even if the stationarity assumption is not fully verified.
14 pages, 10 figures
References in corpus (15)
- The Statistics of Supersonic Isothermal Turbulence
- Observation of inertial energy cascade in interplanetary space plasma
- On the von Karman-Howarth equations for Hall MHD flows
- Energy Cascade Rate In Compressible Fast And Slow Solar Wind Turbulence
- Turbulence-driven ion beams in the magnetospheric Kelvin-Helmholtz instability
- Energy cascade rate measured in a collisionless space plasma with MMS data and compressible Hall magnetohydrodynamic turbulence theory
- Scaling of compressible magnetohydrodynamic turbulence in the fast solar wind
- Anisotropy of third-order structure functions in MHD turbulence
- Exact law for homogeneous compressible Hall magnetohydrodynamics turbulence
- Alternative derivation of exact law for compressible and isothermal magnetohydrodynamics turbulence
- An alternative formulation for exact scaling relations in hydrodynamic and magnetohydrodynamic turbulence
- Compressible turbulence in the interstellar medium: New insights from a high-resolution supersonic turbulence simulation
- Exact relations for energy transfer in self-gravitating isothermal turbulence
- General exact law of compressible isentropic magnetohydrodynamic flows: theory and spacecraft observations in the solar wind
- A note on acoustic turbulence