Pages that link to "Item:Q5417295"
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The following pages link to Multi-species turbulent mixing under supercritical-pressure conditions: modelling, direct numerical simulation and analysis revealing species spinodal decomposition (Q5417295):
Displaying 8 items.
- Small-scale dissipation in binary-species, thermodynamically supercritical, transitional mixing layers (Q435663) (← links)
- Comparison of energy-, pressure- and enthalpy-based approaches for modeling supercritical flows (Q667421) (← links)
- A robust and accurate numerical method for transcritical turbulent flows at supercritical pressure with an arbitrary equation of state (Q2374701) (← links)
- The influence of the chemical composition representation according to the number of species during mixing in high-pressure turbulent flows (Q4625873) (← links)
- Heated transcritical and unheated non-transcritical turbulent boundary layers at supercritical pressures (Q4628804) (← links)
- A priori analysis of subgrid scale pressure and heat flux in high pressure mixing and reacting shear layers (Q5071961) (← links)
- Investigation of species-mass diffusion in binary-species boundary layers at high pressure using direct numerical simulations (Q5155943) (← links)
- \textit{In situ} adaptive tabulation of vapor-liquid equilibrium solutions for multi-component high-pressure transcritical flows with phase change (Q6119295) (← links)