The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced Fluorescence

Although it is quite challenging to image and analyze the spatial distribution of bioaerosols in a confined space, a three-dimensional (3D) modeling system based on the planar laser-induced fluorescence (PLIF) technique is proposed in this paper, which is designed to analyze the temporal and spatial...

Full description

Bibliographic Details
Main Authors: Siying Chen, Yuanyuan Chen, Yinchao Zhang, Pan Guo, He Chen, Huiyun Wu
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Sensors
Subjects:
3D
Online Access:https://www.mdpi.com/1424-8220/21/8/2607
id doaj-9f1ab781c9b1486a9bd53e076e57800f
record_format Article
spelling doaj-9f1ab781c9b1486a9bd53e076e57800f2021-04-08T23:01:12ZengMDPI AGSensors1424-82202021-04-01212607260710.3390/s21082607The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced FluorescenceSiying Chen0Yuanyuan Chen1Yinchao Zhang2Pan Guo3He Chen4Huiyun Wu5School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, ChinaAcademy of Military Medical Sciences, Academy of Military Sciences, Beijing 100850, ChinaAlthough it is quite challenging to image and analyze the spatial distribution of bioaerosols in a confined space, a three-dimensional (3D) modeling system based on the planar laser-induced fluorescence (PLIF) technique is proposed in this paper, which is designed to analyze the temporal and spatial variations of bioaerosol particles in a confined chamber. The system employs a continuous planar laser source to excite the fluoresce, and a scientific complementary metal oxide semiconductor (sCMOS) camera to capture images of 2048 × 2048 pixels at a frame rate of 12 Hz. While a sliding platform is moving back and forth on the track, a set of images are captured at different positions for 3D reconstruction. In this system, the 3D reconstruction is limited to a maximum measurement volume of about 50 cm × 29.7 cm × 42 cm, with a spatial resolution of about 0.58 mm × 0.82 mm × 8.33 mm, and a temporal resolution of 5 s. Experiments were carried out to detect the PLIF signals from fluorescein aerosols in the chamber, and then 3D reconstruction was used to visualize and analyze the diffusion of aerosol particles. The results prove that the system can be applied to clearly reconstruct the 3D distribution and record the diffusion process of aerosol particles in a confined space.https://www.mdpi.com/1424-8220/21/8/2607bioaerosolPLIFconcentration3Dreconstruction
collection DOAJ
language English
format Article
sources DOAJ
author Siying Chen
Yuanyuan Chen
Yinchao Zhang
Pan Guo
He Chen
Huiyun Wu
spellingShingle Siying Chen
Yuanyuan Chen
Yinchao Zhang
Pan Guo
He Chen
Huiyun Wu
The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced Fluorescence
Sensors
bioaerosol
PLIF
concentration
3D
reconstruction
author_facet Siying Chen
Yuanyuan Chen
Yinchao Zhang
Pan Guo
He Chen
Huiyun Wu
author_sort Siying Chen
title The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced Fluorescence
title_short The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced Fluorescence
title_full The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced Fluorescence
title_fullStr The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced Fluorescence
title_full_unstemmed The 3D Modeling System for Bioaerosol Distribution Based on Planar Laser-Induced Fluorescence
title_sort 3d modeling system for bioaerosol distribution based on planar laser-induced fluorescence
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-04-01
description Although it is quite challenging to image and analyze the spatial distribution of bioaerosols in a confined space, a three-dimensional (3D) modeling system based on the planar laser-induced fluorescence (PLIF) technique is proposed in this paper, which is designed to analyze the temporal and spatial variations of bioaerosol particles in a confined chamber. The system employs a continuous planar laser source to excite the fluoresce, and a scientific complementary metal oxide semiconductor (sCMOS) camera to capture images of 2048 × 2048 pixels at a frame rate of 12 Hz. While a sliding platform is moving back and forth on the track, a set of images are captured at different positions for 3D reconstruction. In this system, the 3D reconstruction is limited to a maximum measurement volume of about 50 cm × 29.7 cm × 42 cm, with a spatial resolution of about 0.58 mm × 0.82 mm × 8.33 mm, and a temporal resolution of 5 s. Experiments were carried out to detect the PLIF signals from fluorescein aerosols in the chamber, and then 3D reconstruction was used to visualize and analyze the diffusion of aerosol particles. The results prove that the system can be applied to clearly reconstruct the 3D distribution and record the diffusion process of aerosol particles in a confined space.
topic bioaerosol
PLIF
concentration
3D
reconstruction
url https://www.mdpi.com/1424-8220/21/8/2607
work_keys_str_mv AT siyingchen the3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT yuanyuanchen the3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT yinchaozhang the3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT panguo the3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT hechen the3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT huiyunwu the3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT siyingchen 3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT yuanyuanchen 3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT yinchaozhang 3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT panguo 3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT hechen 3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
AT huiyunwu 3dmodelingsystemforbioaerosoldistributionbasedonplanarlaserinducedfluorescence
_version_ 1721533603788095488