The ability to compute rarefied, ionized hypersonic flows is becoming more important as missions such as Earth reentry, landing high mass payloads on Mars, and the exploration of the outer planets and their satellites are being considered. Recently introduced molecular-level chemistry models that predict equilibrium and nonequilibrium reaction rates using only kinetic theory and fundamental molecular properties are extended in the current work to include electronic energy level transitions and reactions involving charged particles. These extensions are shown to agree favorably with reported transition and reaction rates from the literature for nearequilibrium conditions. Also, the extensions are applied to the second flight of the ...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
This report summarizes the work completed during FY2009 for the LDRD project 09-1332 'Molecule-Based...
The ability to compute rarefied, ionized hypersonic flows is becoming more important as missions suc...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77265/1/AIAA-2009-267-646.pd
Recently introduced molecular-level chemistry models that predict equilibrium and nonequilibrium rea...
When a vehicle enters the Earth's atmosphere at the very large velocities associated with Lunar and ...
When a vehicle enters the Earth's atmosphere at the very large velocities associated with Lunar and ...
High-speed flows with Mach numbers well above the hypersonic regime pose significant modelling com-ple...
An open source implementation of chemistry modelling for the direct simulation Monte Carlo (DSMC) m...
High-speed flows with Mach numbers well above the hypersonic regime pose significant modelling com-ple...
During vehicle reentry into the Earth’s atmosphere from space, the flow field energy is sufficient t...
This work focuses on the development and sensitivity analyses of a direct simulation Monte Carlo (DS...
This work focuses on the development and sensitivity analyses of a direct simulation Monte Carlo (DS...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
This report summarizes the work completed during FY2009 for the LDRD project 09-1332 'Molecule-Based...
The ability to compute rarefied, ionized hypersonic flows is becoming more important as missions suc...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77265/1/AIAA-2009-267-646.pd
Recently introduced molecular-level chemistry models that predict equilibrium and nonequilibrium rea...
When a vehicle enters the Earth's atmosphere at the very large velocities associated with Lunar and ...
When a vehicle enters the Earth's atmosphere at the very large velocities associated with Lunar and ...
High-speed flows with Mach numbers well above the hypersonic regime pose significant modelling com-ple...
An open source implementation of chemistry modelling for the direct simulation Monte Carlo (DSMC) m...
High-speed flows with Mach numbers well above the hypersonic regime pose significant modelling com-ple...
During vehicle reentry into the Earth’s atmosphere from space, the flow field energy is sufficient t...
This work focuses on the development and sensitivity analyses of a direct simulation Monte Carlo (DS...
This work focuses on the development and sensitivity analyses of a direct simulation Monte Carlo (DS...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
Several important engineering gas flow problems fall within the transition Knudsen number regime, e...
This report summarizes the work completed during FY2009 for the LDRD project 09-1332 'Molecule-Based...