Thermal conductivity of strongly coupled Yukawa fluids
arXiv:2110.05293 · doi:10.1063/5.0056763
Abstract
A vibrational model of heat conduction in liquids with soft pairwise interactions is applied to estimate the thermal conductivity coefficient of strongly coupled Yukawa fluids. A reasonable agreement with the available data from numerical simulations is observed. The results can be useful in the context of strongly coupled plasma and complex (dusty) plasma fluids, when Yukawa (or screened Coulomb) interaction potential is applicable.
6 pages, 2 figures
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Cited by in corpus (11)
- Elementary vibrational model for transport properties of dense fluids
- Minima of shear viscosity and thermal conductivity coefficients of classical fluids
- Freezing density scaling of fluid transport properties: Application to liquefied noble gases
- Bridgman formula for the thermal conductivity of atomic and molecular liquids
- Excess entropy of strongly coupled Yukawa fluids
- Vibrational model of heat transfer in strongly coupled Yukawa fluids (dusty plasma liquids)
- Elementary vibrational model for thermal conductivity of Lennard-Jones fluids: Applicability domain and accuracy level
- Generalized Rosenfeld-Tarazona scaling and high-density specific heat of simple liquids
- Vibrational model of entropy in dense two-dimensional fluids
- Modified Bridgman formula for the thermal conductivity of complex (dusty) plasma fluids
- Variational approach to Yukawa fluids. II. Instantaneous elastic moduli and sound velocities