This paper presents the design and implementation of an imaging fiber based tomographic system for the three-dimensional (3-D) visualization and characterization of combustion flames. Eight imaging fiber bundles coupled with two RGB CCD cameras are used to acquire flame images simultaneously from eight different directions around the burner. The fiber bundle consists of 30k picture elements and has an objective lens with a 92° angle of view, offering a wide field of view. A series of system calibrations was conducted to ensure system accuracy. Computer simulations were also undertaken to evaluate different tomographic algorithms for 3-D reconstruction of flame cross-sections based on eight image projections obtained from the imaging system....
To reduce greenhouse gas emissions from fossil fuel fired power plants a range of new combustion tec...
This paper presents the three-dimensional temperature measurement of an oxy-gas burner flame based o...
This paper focuses on the application of a multicamera imaging system for three-dimensional (3-D) vi...
This paper presents the design and implementation of an imaging fiber based tomographic system for t...
This paper presents the measurement of 3-D (three-dimensional) flame geometric parameters based on o...
This paper presents the design, implementation, and evaluation of an optical fiber imaging based to...
This paper presents the design, implementation, and evaluation of a 3-D imaging system for the recon...
This paper presents the 3-D (three-dimensional) reconstruction of soot volume fraction of diffusion ...
This paper presents the reconstruction of 3-D (three-dimensional) flame temperature and emissivity d...
This paper presents the technique which combines optical tomographic and two-color parametric techni...
With modern day interest to continue the reduction of harmful emissions and improve the efficiency o...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
To reduce greenhouse gas emissions from fossil fuel fired power plants, a range of new combustion te...
This paper presents computing algorithms for the tomographic reconstruction of the luminosity distri...
To reduce greenhouse gas emissions from fossil fuel fired power plants a range of new combustion tec...
This paper presents the three-dimensional temperature measurement of an oxy-gas burner flame based o...
This paper focuses on the application of a multicamera imaging system for three-dimensional (3-D) vi...
This paper presents the design and implementation of an imaging fiber based tomographic system for t...
This paper presents the measurement of 3-D (three-dimensional) flame geometric parameters based on o...
This paper presents the design, implementation, and evaluation of an optical fiber imaging based to...
This paper presents the design, implementation, and evaluation of a 3-D imaging system for the recon...
This paper presents the 3-D (three-dimensional) reconstruction of soot volume fraction of diffusion ...
This paper presents the reconstruction of 3-D (three-dimensional) flame temperature and emissivity d...
This paper presents the technique which combines optical tomographic and two-color parametric techni...
With modern day interest to continue the reduction of harmful emissions and improve the efficiency o...
This paper presents an experimental investigation, visualization and validation in the three-dimensi...
This paper presents an imaging-based instrumentation system for three-dimensional (3-D) temperature ...
To reduce greenhouse gas emissions from fossil fuel fired power plants, a range of new combustion te...
This paper presents computing algorithms for the tomographic reconstruction of the luminosity distri...
To reduce greenhouse gas emissions from fossil fuel fired power plants a range of new combustion tec...
This paper presents the three-dimensional temperature measurement of an oxy-gas burner flame based o...
This paper focuses on the application of a multicamera imaging system for three-dimensional (3-D) vi...