This paper reports an approach to interpolate planar laser-induced fluorescence (PLIF) images of CH2O between consecutive experimental data by means of computational imaging realized with convolutional neural network (CNN). Such a deep learning based method can achieve higher temporal resolution for 2D visualization of intermediate species in combustion based on high-speed experimental images. The capability of the model was tested for generating 100 kHz PLIF images by interpolating single and multiple PLIF frames into the sequences of experimental images of lower frequencies (50, 33, 25 and 20 kHz). Results show that the prediction indices, including intersection over union (IoU), peak signal to noise ratio (PSNR), structural similarity in...
The performance characteristics of a new CH planar laser-induced fluorescence (PLIF) imaging system ...
A direct comparison between time resolved PLIF measurements of OH and two dimensional slices from a ...
We present a deep learning approach to obtain high-resolution (HR) fluorescence lifetime images from...
This paper reports an approach to interpolate planar laser-induced fluorescence (PLIF) images of CH2...
High-speed planar imaging of key combustion species, like hydroxyl radicals (OH), is crucial for und...
Flame front structure is one of the most fundamental characteristics and, hence, vital for understan...
We report on high-speed CH planar laser-induced fluorescence (PLIF) imaging in turbulent diffusion f...
International audienceA novel chemistry reduction strategy based on convolutional neural networks (C...
Exponential advancements in computational resources and algorithms have given birth to the new parad...
We report on the development of planar laser-induced fluorescence (PLIF) for CH imaging with improve...
We report on the development of planar laser-induced fluorescence (PLIF) for CH imaging with improve...
High-repetition-rate (5 kHz, 10 kHz) OH planar laser induced fluorescence (PLIF) was used to investi...
In order to obtain more detailed characteristics and information in highly turbulent flames, for a b...
Understanding the turbulence-flame interaction is crucial to model the low-emission combustors devel...
Turbulent combustion is a complex phenomenon that involves the interaction between fluid mechanics a...
The performance characteristics of a new CH planar laser-induced fluorescence (PLIF) imaging system ...
A direct comparison between time resolved PLIF measurements of OH and two dimensional slices from a ...
We present a deep learning approach to obtain high-resolution (HR) fluorescence lifetime images from...
This paper reports an approach to interpolate planar laser-induced fluorescence (PLIF) images of CH2...
High-speed planar imaging of key combustion species, like hydroxyl radicals (OH), is crucial for und...
Flame front structure is one of the most fundamental characteristics and, hence, vital for understan...
We report on high-speed CH planar laser-induced fluorescence (PLIF) imaging in turbulent diffusion f...
International audienceA novel chemistry reduction strategy based on convolutional neural networks (C...
Exponential advancements in computational resources and algorithms have given birth to the new parad...
We report on the development of planar laser-induced fluorescence (PLIF) for CH imaging with improve...
We report on the development of planar laser-induced fluorescence (PLIF) for CH imaging with improve...
High-repetition-rate (5 kHz, 10 kHz) OH planar laser induced fluorescence (PLIF) was used to investi...
In order to obtain more detailed characteristics and information in highly turbulent flames, for a b...
Understanding the turbulence-flame interaction is crucial to model the low-emission combustors devel...
Turbulent combustion is a complex phenomenon that involves the interaction between fluid mechanics a...
The performance characteristics of a new CH planar laser-induced fluorescence (PLIF) imaging system ...
A direct comparison between time resolved PLIF measurements of OH and two dimensional slices from a ...
We present a deep learning approach to obtain high-resolution (HR) fluorescence lifetime images from...