Introduction to Temporally Evolving - Direct Numerical Simulation
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Temporally Evolving
Direct Numerical Simulation
10.1007/S11433-018-9318-4
Direct numerical simulations of temporally evolving supersonic turbulent channel flows of thermally perfect gas are conducted at Mach number 3.
Direct numerical simulations of temporally evolving supersonic turbulent channel flows of thermally perfect gas are conducted at Mach number 3.
Temporally Evolving
Direct Numerical Simulation
10.1016/j.compfluid.2019.104314
A direct numerical simulation (DNS) initialized with an implicit large eddy simulation (ILES) is performed for temporally evolving planar jets and turbulent boundary layers.
A direct numerical simulation (DNS) initialized with an implicit large eddy simulation (ILES) is performed for temporally evolving planar jets and turbulent boundary layers.
Temporally Evolving
Direct Numerical Simulation
10.1016/J.PROCI.2018.06.014
In the present work, nonpremixed temporally evolving planar spray jet flames are simulated using both direct numerical simulation (DNS) and the composition transported probability density function (TPDF) method.
In the present work, nonpremixed temporally evolving planar spray jet flames are simulated using both direct numerical simulation (DNS) and the composition transported probability density function (TPDF) method.
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Temporally Evolving
Direct Numerical Simulation
10.1017/JFM.2019.591
The study is based on direct-numerical simulation (DNS) and large-eddy simulation (LES), comparing different subgrid-scale (SGS) models for incompressible, uniform-density, temporally evolving forced shear-layer flows.
The study is based on direct-numerical simulation (DNS) and large-eddy simulation (LES), comparing different subgrid-scale (SGS) models for incompressible, uniform-density, temporally evolving forced shear-layer flows.
Temporally Evolving
Direct Numerical Simulation
10.1088/1402-4896/AB0AAD
The structure of vorticity field in compressible mixing layers is studied using direct numerical simulations of temporally evolving mixing layers.
The structure of vorticity field in compressible mixing layers is studied using direct numerical simulations of temporally evolving mixing layers.
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Temporally Evolving
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