University of Minnesota Ph.D. dissertation. July 2016. Major: Aerospace Engineering and Mechanics. Advisor: Thomas Schwartzentruber. 1 computer file (PDF); xiii, 124 pages.An oxidation model for carbon surfaces is developed to predict ablation rates for carbon heat shields used in hypersonic vehicles. Unlike existing empirical models, the approach used here was to probe gas-surface interactions individually and then based on an understanding of the relevant fundamental processes, build a predictive model that would be accurate over a wide range of pressures and temperatures, and even microstructures. Initially, molecular dynamics was used to understand the oxidation processes on the surface. The molecular dynamics simulations were compare...
Hyperthermal atomic oxygen (AO) bombardment to thermal protection system surface has been identified...
We studied carbon/hydrogen/oxygen chemical kinetics at time scales and thermal conditions relevant t...
Charring ablators remain the premium choice for space exploration missions that involve atmospheric ...
The high-temperature shock layer generated by a hypersonic vehicle results in the dissociation of fr...
Two sets of finite-rate gas-surface interaction model between air and the carbon surface are studied...
This work is focused on the development of physically consistent models for the mesoscopic and macro...
University of Minnesota Ph.D. dissertation. July 2013. Major: Aerospace Engineering and Mechanics. A...
Vehicles entering planetary atmospheres at high speed require an ablative heat shield in order to wi...
A finite–rate–catalytic wall boundary condition incorporated into hypersonic flow simulations is inv...
University of Minnesota Ph.D. dissertation. November 2018. Major: Aerospace Engineering and Mechanic...
Accurate characterization of the aerothermal heating on vehicles traveling at hypersonic velocities ...
We study the gas-surface interaction of dissociated air in a high enthalpy flow. A framework that pr...
Thermal protection is required for vehicles entering planetary atmospheres to protect against the se...
The kinetics of low-temperature oxidation of a synthetic carbon black material, i.e. Printex- U, by ...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/140434/1/6.2014-2124.pd
Hyperthermal atomic oxygen (AO) bombardment to thermal protection system surface has been identified...
We studied carbon/hydrogen/oxygen chemical kinetics at time scales and thermal conditions relevant t...
Charring ablators remain the premium choice for space exploration missions that involve atmospheric ...
The high-temperature shock layer generated by a hypersonic vehicle results in the dissociation of fr...
Two sets of finite-rate gas-surface interaction model between air and the carbon surface are studied...
This work is focused on the development of physically consistent models for the mesoscopic and macro...
University of Minnesota Ph.D. dissertation. July 2013. Major: Aerospace Engineering and Mechanics. A...
Vehicles entering planetary atmospheres at high speed require an ablative heat shield in order to wi...
A finite–rate–catalytic wall boundary condition incorporated into hypersonic flow simulations is inv...
University of Minnesota Ph.D. dissertation. November 2018. Major: Aerospace Engineering and Mechanic...
Accurate characterization of the aerothermal heating on vehicles traveling at hypersonic velocities ...
We study the gas-surface interaction of dissociated air in a high enthalpy flow. A framework that pr...
Thermal protection is required for vehicles entering planetary atmospheres to protect against the se...
The kinetics of low-temperature oxidation of a synthetic carbon black material, i.e. Printex- U, by ...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/140434/1/6.2014-2124.pd
Hyperthermal atomic oxygen (AO) bombardment to thermal protection system surface has been identified...
We studied carbon/hydrogen/oxygen chemical kinetics at time scales and thermal conditions relevant t...
Charring ablators remain the premium choice for space exploration missions that involve atmospheric ...