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20242026
most citedFormulation of entropy-conservative discretizations for compressible flows of thermally perfect gases

1 citations · 1 across the 3 of their papers we have counts for

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7 papers

physics.flu-dyn2026

Pressure-equilibrium-preserving and fully conservative discretization of compressible flow equations for real and thermally perfect gases

Gennaro Coppola, Alessandro Aiello, Carlo De Michele

Numerical simulations of compressible real-fluid flows are notoriously plagued by spurious pressure oscillations arising in regions of abrupt flow variations. As a possible remedy,…

physics.flu-dyn20261 cited

Formulation of entropy-conservative discretizations for compressible flows of thermally perfect gases

Alessandro Aiello, Carlo De Michele, Gennaro Coppola

This study proposes a novel spatial discretization procedure for the compressible Euler equations that guarantees entropy conservation at a discrete level for thermally perfect gas…

physics.flu-dyn2026

Impact of Structure-Preserving Discretizations on Compressible Wall-Bounded Turbulence of Thermally Perfect Gases

Alessandro Aiello, Andrea Palumbo, Carlo De Michele +1

Direct numerical simulations of compressible turbulent channel flow at supersonic and hypersonic Mach numbers are performed using a thermally perfect gas model for CO. The obje…

physics.flu-dyn2025

Finite-difference compatible entropy-conserving schemes for the compressible Euler equations

Carlo De Michele, Ayaboe K. Edoh, Gennaro Coppola

This paper introduces a family of entropy-conserving finite-difference discretizations for the compressible flow equations. In addition to conserving the primary quantities of mass…

physics.flu-dyn2025

Entropy conservative discretization of compressible Euler equations with an arbitrary equation of state

Alessandro Aiello, Carlo De Michele, Gennaro Coppola

This study proposes a novel spatial discretization procedure for the compressible Euler equations which guarantees entropy conservation at a discrete level when an arbitrary equati…

physics.flu-dyn2024

On the performances of standard and kinetic energy preserving time-integration methods for incompressible-flow simulations

Marco Artiano, Carlo De Michele, Francesco Capuano +1

The effects of kinetic-energy preservation errors due to Runge-Kutta (RK) temporal integrators have been analyzed for the case of large-eddy simulations of incompressible turbulent…