The influence of high-enthalpy effects on hypersonic turbulent boundary layers is investigated by means of direct numerical simulations (DNS). A quasiadiabatic flat-plate air flow at free-stream Mach number equal to 10 is simulated up to fully developed turbulent conditions using a five-species, chemically reacting model. A companion DNS based on a frozen-chemistry assumption is also carried out, in order to isolate the effect of finite-rate chemical reactions and assess their influence on turbulent quantities. In order to reduce uncertainties associated with turbulence generation at the inlet of the computational domain, both simulations are initiated in the laminar flow region and the flow is let to evolve up to the fully turbulent regim...
Significant progress was made in the third year of an interdisciplinary experimental, numerical and ...
Work on understanding the mechanisms of mixing and reaction in high speed turbulent reacting flows w...
A Mach-10 hypersonic boundary layer of air overriding a cold, isothermal, non-catalytic flat wall, a...
International audienceThe influence of high-enthalpy effects on hypersonic turbulent boundary layers...
International audienceThe influence of high-enthalpy effects on hypersonic turbulent boundary layers...
Les effets de haute température survenant lors des vols hypersoniques ont un impact sur les performa...
A hypersonic, spatially evolving turbulent boundary layer at Mach 12.48 with a cooled wall is analys...
High-temperature effects arising in hypersonic flights have a major impact on aerodynamic performanc...
High-temperature effects arising in hypersonic flights have a major impact on aerodynamic performanc...
High-temperature effects arising in hypersonic flights have a major impact on aerodynamic performanc...
A hypersonic turbulent boundary layer over a flat plate is numerically investigated. The large Mach ...
Direct numerical simulations of turbulent reacting flows were performed to study the interaction bet...
Understanding non-equilibrium effects of hypersonic turbulent boundary layers is essential in order ...
Significant progress was made in the third year of an interdisciplinary experimental, numerical and ...
Significant progress was made in the third year of an interdisciplinary experimental, numerical and ...
Significant progress was made in the third year of an interdisciplinary experimental, numerical and ...
Work on understanding the mechanisms of mixing and reaction in high speed turbulent reacting flows w...
A Mach-10 hypersonic boundary layer of air overriding a cold, isothermal, non-catalytic flat wall, a...
International audienceThe influence of high-enthalpy effects on hypersonic turbulent boundary layers...
International audienceThe influence of high-enthalpy effects on hypersonic turbulent boundary layers...
Les effets de haute température survenant lors des vols hypersoniques ont un impact sur les performa...
A hypersonic, spatially evolving turbulent boundary layer at Mach 12.48 with a cooled wall is analys...
High-temperature effects arising in hypersonic flights have a major impact on aerodynamic performanc...
High-temperature effects arising in hypersonic flights have a major impact on aerodynamic performanc...
High-temperature effects arising in hypersonic flights have a major impact on aerodynamic performanc...
A hypersonic turbulent boundary layer over a flat plate is numerically investigated. The large Mach ...
Direct numerical simulations of turbulent reacting flows were performed to study the interaction bet...
Understanding non-equilibrium effects of hypersonic turbulent boundary layers is essential in order ...
Significant progress was made in the third year of an interdisciplinary experimental, numerical and ...
Significant progress was made in the third year of an interdisciplinary experimental, numerical and ...
Significant progress was made in the third year of an interdisciplinary experimental, numerical and ...
Work on understanding the mechanisms of mixing and reaction in high speed turbulent reacting flows w...
A Mach-10 hypersonic boundary layer of air overriding a cold, isothermal, non-catalytic flat wall, a...