The Temperature Sensitive Paint (TSP) method has the potential to measure boundary-layer transition on complex 3-D wind tunnel models like nacelles. TSP can visualize the surface boundary-layer conditions as temperature distribution based on different heat transfer coefficients in the laminar and turbulent flow. By heating up the model surface, temperature difference between laminar and turbulent boundary-layer regimes are enhanced and appear as bright/ dark differences in the captured TSP images. Three different model-heating methods have been investigated in this study: change of flow temperature, electrical heating, and infrared heating using Laser light. In this paper, the applicability of the different heating methods has been investig...
Boundary layer transition measurements on two wind tunnel models by means of Temperature-Sensitive P...
For aerodynamic profile tests on aircraft or wind mill models, transition detection is generally of ...
Transition detection on high-lift devices of a 3D half model using the TSP technique was performed i...
The identification of laminar-turbulent boundary layer transition on wind tunnel models provides ess...
A method for detecting the laminar-turbulent boundary layer transition. Surface temperature distrib...
New facilities and test techniques afford research aerodynamicists many opportunities to investigate...
The identification of laminar-turbulent boundary layer transition on models in cryogenic wind tunnel...
A brief overview of two measurements investigating the laminar to turbulent transition with the Temp...
Application of Temperature Senstive Paint (TSP) technology for investigation of boundary layer trans...
A new temperature-sensitive paint (TSP) was developed to capture images with high signal-to-noise ra...
Temperature-Sensitive Paint (TSP) allows detection of laminar-to-turbulent boundary layer transition...
A Temperature-Sensitive Paint (TSP) has been developed to detect laminar-turbulent boundary layer tr...
A Temperature-Sensitive Paint (TSP) with higher temperature sensitivity for the capturing of better ...
The method of temperature-sensitive paint (TSP) adapted to industry-scale, cryogenic wind tunnels (i...
For transition detection measurement in wind tunnels by means of Temperature-Sensitive Paint (TSP) o...
Boundary layer transition measurements on two wind tunnel models by means of Temperature-Sensitive P...
For aerodynamic profile tests on aircraft or wind mill models, transition detection is generally of ...
Transition detection on high-lift devices of a 3D half model using the TSP technique was performed i...
The identification of laminar-turbulent boundary layer transition on wind tunnel models provides ess...
A method for detecting the laminar-turbulent boundary layer transition. Surface temperature distrib...
New facilities and test techniques afford research aerodynamicists many opportunities to investigate...
The identification of laminar-turbulent boundary layer transition on models in cryogenic wind tunnel...
A brief overview of two measurements investigating the laminar to turbulent transition with the Temp...
Application of Temperature Senstive Paint (TSP) technology for investigation of boundary layer trans...
A new temperature-sensitive paint (TSP) was developed to capture images with high signal-to-noise ra...
Temperature-Sensitive Paint (TSP) allows detection of laminar-to-turbulent boundary layer transition...
A Temperature-Sensitive Paint (TSP) has been developed to detect laminar-turbulent boundary layer tr...
A Temperature-Sensitive Paint (TSP) with higher temperature sensitivity for the capturing of better ...
The method of temperature-sensitive paint (TSP) adapted to industry-scale, cryogenic wind tunnels (i...
For transition detection measurement in wind tunnels by means of Temperature-Sensitive Paint (TSP) o...
Boundary layer transition measurements on two wind tunnel models by means of Temperature-Sensitive P...
For aerodynamic profile tests on aircraft or wind mill models, transition detection is generally of ...
Transition detection on high-lift devices of a 3D half model using the TSP technique was performed i...