Computed Tomography of Chemiluminescence (CTC) was used to reconstruct the instantaneous three-dimensional (3D) chemiluminescence field of a high-power industrial flame, which was made optically accessible, for the first time. The reconstruction used 24 projections that were measured simultaneously, in one plane and equiangularly spaced within a total fan angle of 172.5°. The 3D results were examined by plotting both vertical and horizontal slices, revealing highly wrinkled structures with good clarity. The results presented are one of a series of experimental demonstrations of CTC applications to turbulent gaseous flames. The work reveals the potential to use any kind of luminescence measurement, such as emission from heated particles in c...
To observe unsteady high speed turbulent flames in 3D (three dimensional), application of non-scanni...
Non-scanning 3D computerized tomography (3D-CT) technique with a newly-designed forty-lens camera is...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
Computed tomography of chemiluminescence (CTC) is a promising technique for combustion diagnostics, ...
Time resolved 3D measurements of turbulent flames are required to further understanding of combusti...
To develop a more advanced 3D computed tomography of the chemiluminescence method, the first quantit...
Computed Tomography of OH* Chemiluminescence of a single flame confined by an annular combustion cha...
This paper presents the design, implementation, and evaluation of a 3-D imaging system for the recon...
The tomographic reconstruction of OH* chemiluminescence was performed on two interacting turbulent p...
To reduce greenhouse gas emissions from fossil fuel fired power plants a range of new combustion tec...
A laboratory-scale gas turbine model combustor fueled with methane is studied experimentally with th...
Heat release rate of the swirl flames is an important parameter for the gas turbine state. I...
To reduce greenhouse gas emissions from fossil fuel fired power plants, a range of new combustion te...
A system for three-dimensional computed tomography of chemiluminescence was developed to measure fla...
This paper presents computing algorithms for the tomographic reconstruction of the luminosity distri...
To observe unsteady high speed turbulent flames in 3D (three dimensional), application of non-scanni...
Non-scanning 3D computerized tomography (3D-CT) technique with a newly-designed forty-lens camera is...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
Computed tomography of chemiluminescence (CTC) is a promising technique for combustion diagnostics, ...
Time resolved 3D measurements of turbulent flames are required to further understanding of combusti...
To develop a more advanced 3D computed tomography of the chemiluminescence method, the first quantit...
Computed Tomography of OH* Chemiluminescence of a single flame confined by an annular combustion cha...
This paper presents the design, implementation, and evaluation of a 3-D imaging system for the recon...
The tomographic reconstruction of OH* chemiluminescence was performed on two interacting turbulent p...
To reduce greenhouse gas emissions from fossil fuel fired power plants a range of new combustion tec...
A laboratory-scale gas turbine model combustor fueled with methane is studied experimentally with th...
Heat release rate of the swirl flames is an important parameter for the gas turbine state. I...
To reduce greenhouse gas emissions from fossil fuel fired power plants, a range of new combustion te...
A system for three-dimensional computed tomography of chemiluminescence was developed to measure fla...
This paper presents computing algorithms for the tomographic reconstruction of the luminosity distri...
To observe unsteady high speed turbulent flames in 3D (three dimensional), application of non-scanni...
Non-scanning 3D computerized tomography (3D-CT) technique with a newly-designed forty-lens camera is...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...