most citedHigh-fidelity simulation of an ultrasonic standing-wave thermoacoustic engine with bulk viscosity effects

8 citations · 31 across the 10 of their papers we have counts for

collaborators

10 papers

physics.flu-dyn20171 cited

Pseudophase-Change Effects in Turbulent Channel Flow under Transcritical Temperature Conditions

Kukjin Kim, Jean-Pierre Hickey, Carlo Scalo

We have performed direct numerical simulations (DNS) of compressible turbulent channel flow at supercritical pressure with top and bottom isothermal walls kept respectively at a su…

physics.flu-dyn2017

Numerical Investigation of Second Mode Attenuation over Carbon/Carbon Surfaces on a Sharp Slender Cone

Victor C. B. Sousa, Danish Patel, Jean-Baptiste Chapelier +2

We have carried out axisymmetric numerical simulations of a spatially developing hypersonic boundary layer over a sharp 7-half-angle cone at inspired by…

physics.flu-dyn2017

Coherent-vorticity Preserving Large-Eddy Simulation of trefoil knotted vortices

Zongxin Yu, Jean-Baptiste Chapelier, Carlo Scalo

We have performed Coherent-vorticity Preserving Large-Eddy simulations of a trefoil knot-shaped vortex, inspired by the experiments of Kleckner and Irvine. The flow parameter space…

physics.comp-ph20175 cited

Surface Impedance Determination via Numerical Resolution of the Inverse Helmholtz Problem

Danish Patel, Prateek Gupta, Carlo Scalo

Assigning boundary conditions, such as acoustic impedance, to the frequency domain thermoviscous wave equations (TWE), derived from the linearized Navier-Stokes equations (LNSE) po…

physics.comp-ph20171 cited

Acoustic Impedance Calculation via Numerical Solution of the Inverse Helmholtz Problem

Danish Patel, Prateek Gupta, Carlo Scalo

Assigning homogeneous boundary conditions, such as acoustic impedance, to the thermoviscous wave equations (TWE) derived by transforming the linearized Navier-Stokes equations (LNS…

physics.flu-dyn20178 cited

Bulk viscosity model for near-equilibrium acoustic wave attenuation

Jeffrey Lin, Carlo Scalo, Lambertus Hesselink

Acoustic wave attenuation due to vibrational and rotational molecular relaxation, under simplifying assumptions of near-thermodynamic equilibrium and absence of molecular dissociat…