Hypersonic testing in impulse facilities replicates various flow characteristics accurately; however, because of the short test times, some phenomena cannot be fully simulated. Previous testing has been conducted with preheated walls up to 800 K; however, this falls well short of the typical temperatures characteristic of ablators in hypervelocity reentry ( -2000-3000 K). The concept presented here is to use resistive heating on a carbon-carbon model to preheat the model immediately before conducting a test. This method has enabled testing at wall temperatures in excess of 2000 K in the X2 expansion tube at the University of Queensland. The model used was a short half-cylinder with a diameter-to-length ratio of 4.5 and was tested in a 8.6 k...
Experimental investigations of local aerothermodynamic phenomena of reentry vehicles in arc-heated f...
This paper details the development, validation, and use of a thermal model created to predict the su...
An electrical preheating technique applied to a carbon-based model in an impulse facility has previo...
The design of hypersonic flight systems requires extensive ground testing to understand the flow cha...
Thermal protection is required for vehicles entering planetary atmospheres to protect against the se...
Reflected shock tunnels can reproduce realistic pressures, speeds, and temperatures of atmospheric h...
This thesis introduces a new experimental technique developed for prescribing flight representative,...
The thermal protection system of a reentry vehicle must endure extreme heating loads, leading to hig...
The Remote Hypervelocity Test Laboratory (RHTL) at White Sands Test Facility (WSTF) was asked to hea...
The project presented aims to develop the capability for thermal atmospheric re-entry phenomena to b...
Hypervelocity aerothermodynamic processes which occur during atmospheric re-entry scenarios, are ver...
New methods for hot wall testing in expansion tunnels allow more accurate simulation of re-entry flo...
Thermal protection systems (TPS) are of extreme importance for the survival of space vehicles especi...
Measurements of mass ablation rates in hypersonic flows are used to calibrate computational models. ...
Future space missions, such as return from Mars, will require entry speeds of the order of 15 km/s. ...
Experimental investigations of local aerothermodynamic phenomena of reentry vehicles in arc-heated f...
This paper details the development, validation, and use of a thermal model created to predict the su...
An electrical preheating technique applied to a carbon-based model in an impulse facility has previo...
The design of hypersonic flight systems requires extensive ground testing to understand the flow cha...
Thermal protection is required for vehicles entering planetary atmospheres to protect against the se...
Reflected shock tunnels can reproduce realistic pressures, speeds, and temperatures of atmospheric h...
This thesis introduces a new experimental technique developed for prescribing flight representative,...
The thermal protection system of a reentry vehicle must endure extreme heating loads, leading to hig...
The Remote Hypervelocity Test Laboratory (RHTL) at White Sands Test Facility (WSTF) was asked to hea...
The project presented aims to develop the capability for thermal atmospheric re-entry phenomena to b...
Hypervelocity aerothermodynamic processes which occur during atmospheric re-entry scenarios, are ver...
New methods for hot wall testing in expansion tunnels allow more accurate simulation of re-entry flo...
Thermal protection systems (TPS) are of extreme importance for the survival of space vehicles especi...
Measurements of mass ablation rates in hypersonic flows are used to calibrate computational models. ...
Future space missions, such as return from Mars, will require entry speeds of the order of 15 km/s. ...
Experimental investigations of local aerothermodynamic phenomena of reentry vehicles in arc-heated f...
This paper details the development, validation, and use of a thermal model created to predict the su...
An electrical preheating technique applied to a carbon-based model in an impulse facility has previo...