Technical information focused upon emerging wall interference assessment/correction (WIAC) techniques applicable to transonic wind tunnels with conventional and passively or partially adapted walls is given. The possibility of improving the assessment and correction of data taken in conventional transonic wind tunnels by utilizing simultaneously obtained flow field data (generally taken near the walls) appears to offer a larger, nearer-term payoff than the fully adaptive wall concept. Development of WIAC procedures continues, and aspects related to validating the concept need to be addressed. Thus, the scope of wall interference topics discussed was somewhat limited
A Wall Signature method originally developed by Hackett has been selected to be adapted for the Ames...
Discussed are two methods for assessing two-dimensional wall interference in the adaptive-wall test ...
The first tests conducted in the adaptive-wall test section of the Ames Research Center's 2- by 2-Fo...
Wind tunnel wall interference assessment and correction (WIAC) concepts, applications, and typical r...
From the time that wind tunnel wall interference was recognized to be significant, researchers have ...
A method for analyzing wall interference is described which avoids the assumption of linear superpos...
Development of complex air vehicle configurations is placing increasing demands on wind tunnel testi...
A wall signature method has been selected to be adapted for the Ames 12-ft Wind Tunnel WIAC system. ...
A wind-tunnel interference assessment method applicable to test sections with discrete finite-length...
The first documented wind tunnel employing a flexible walled test section for the purpose of elimina...
Modern experimental techniques to improve free air simulations in transonic wind tunnels by use of a...
A three dimensional transonic Wind-tunnel Interference Assessment and Correction (WIAC) procedure de...
Adaptive wall wind tunnel research is summarized. Small scale two and three dimensional wind tunnel ...
Three dimensional adaptive-wall experiments were performed in the Ames Research Center (ARC) 25- by ...
A Wall Signature method originally developed by Hackett has been selected to be adapted for the Ames...
A Wall Signature method originally developed by Hackett has been selected to be adapted for the Ames...
Discussed are two methods for assessing two-dimensional wall interference in the adaptive-wall test ...
The first tests conducted in the adaptive-wall test section of the Ames Research Center's 2- by 2-Fo...
Wind tunnel wall interference assessment and correction (WIAC) concepts, applications, and typical r...
From the time that wind tunnel wall interference was recognized to be significant, researchers have ...
A method for analyzing wall interference is described which avoids the assumption of linear superpos...
Development of complex air vehicle configurations is placing increasing demands on wind tunnel testi...
A wall signature method has been selected to be adapted for the Ames 12-ft Wind Tunnel WIAC system. ...
A wind-tunnel interference assessment method applicable to test sections with discrete finite-length...
The first documented wind tunnel employing a flexible walled test section for the purpose of elimina...
Modern experimental techniques to improve free air simulations in transonic wind tunnels by use of a...
A three dimensional transonic Wind-tunnel Interference Assessment and Correction (WIAC) procedure de...
Adaptive wall wind tunnel research is summarized. Small scale two and three dimensional wind tunnel ...
Three dimensional adaptive-wall experiments were performed in the Ames Research Center (ARC) 25- by ...
A Wall Signature method originally developed by Hackett has been selected to be adapted for the Ames...
A Wall Signature method originally developed by Hackett has been selected to be adapted for the Ames...
Discussed are two methods for assessing two-dimensional wall interference in the adaptive-wall test ...
The first tests conducted in the adaptive-wall test section of the Ames Research Center's 2- by 2-Fo...