This paper reports on the design and testing of a heat transfer gauge suitable for the spectrum of radiation encountered during entry to the atmosphere of Titan. Experiments were performed on a 70° sphere-cone in the X3 expansion tube at average freestream velocity, pitot pressure, static pressure, and density of 5:83 km=s, 76 kPa, 1.15 kPa, and 2:43 × 10 -3 kg=m 3, respectively. The radiation gauges used thin-film-sensing elements mounted behind a borosilicate window on the windward surface and were therefore shielded from the convective heat transfer. The assembled gauges are uniformly sensitive for radiation in the wavelength range from 0.347 to 2 mand give an integrated measurement of the total radiant flux in this band. Externally moun...
Emission spectroscopy measurements on a plasma representative of Titan atmosphere composition were o...
International audienceWe introduce a new 1D coupled Radiative/Convective-Photochemical-Microphysical...
The composition and thermal structure of Titan's upper atmosphere are studied between 600 and 2000 k...
Preliminary experiments representative of a Titan aerocapture peak heating conditions were conducted...
Development of heat transfer gauges for the measurement of radiant energy is currently being underta...
Radiative and total heat transfer at the flow stagnation point of a 1:40.8 binary scaled model of th...
The X2 facility at the University of Queensland was modified to allow experimentation at low pressur...
The X2 facility at the University of Queensland was modified to allow experimentation at low pressur...
This paper details the experimental work conducted at the University of Queensland to measure the no...
For reentry operations into atmospheres such as Titan, accurate, reliable radiation data is essentia...
International audienceThe recent measurements of the vertical distribution and optical properties of...
An update to a collisional-radiative model developed by Magin1 for Huygens Titan atmospheric entry i...
Radiative heat flux predictions for the Huygens probe entry into Titan's atmosphere are presented in...
This dissertation explores the coupling between radiative and three-dimensional dynamical processes ...
Thermal conductivity measurements, presented in this paper (Fig. 3), were made during the descent of...
Emission spectroscopy measurements on a plasma representative of Titan atmosphere composition were o...
International audienceWe introduce a new 1D coupled Radiative/Convective-Photochemical-Microphysical...
The composition and thermal structure of Titan's upper atmosphere are studied between 600 and 2000 k...
Preliminary experiments representative of a Titan aerocapture peak heating conditions were conducted...
Development of heat transfer gauges for the measurement of radiant energy is currently being underta...
Radiative and total heat transfer at the flow stagnation point of a 1:40.8 binary scaled model of th...
The X2 facility at the University of Queensland was modified to allow experimentation at low pressur...
The X2 facility at the University of Queensland was modified to allow experimentation at low pressur...
This paper details the experimental work conducted at the University of Queensland to measure the no...
For reentry operations into atmospheres such as Titan, accurate, reliable radiation data is essentia...
International audienceThe recent measurements of the vertical distribution and optical properties of...
An update to a collisional-radiative model developed by Magin1 for Huygens Titan atmospheric entry i...
Radiative heat flux predictions for the Huygens probe entry into Titan's atmosphere are presented in...
This dissertation explores the coupling between radiative and three-dimensional dynamical processes ...
Thermal conductivity measurements, presented in this paper (Fig. 3), were made during the descent of...
Emission spectroscopy measurements on a plasma representative of Titan atmosphere composition were o...
International audienceWe introduce a new 1D coupled Radiative/Convective-Photochemical-Microphysical...
The composition and thermal structure of Titan's upper atmosphere are studied between 600 and 2000 k...