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Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) 3/2023

16.08.2022 | Technical Paper

CFD analysis of an outdoor air purifier with experimental validation

verfasst von: Kunal Kumar, Chandan Kumar, R. K. Pandey

Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) | Ausgabe 3/2023

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Abstract

Air pollution is now a global problem due to its increased devastating effect on the normal lifestyle of every human being as well as animal. With the growing population, urbanization and industrialization have affected the environment severely by adding very fine particles, unwanted gases, and elements to the air. The major sources of outdoor air pollution are open-air waste burning, emission of unwanted gases, and aerosols from vehicles and industries. Inhalation of these toxic gases and particles is the prime source of lung-related fatal diseases. The increase in the percentage of death due to air pollution is an alarming circumstance for the entire world. The countries like India, which are at the developing stage, are suffering more from the consequences of air pollution. These countries have failed to make adjustments between the full filling of the livelihood need of the growing population and the healthy environment to live in. Therefore, it leads to the high necessity of developing low-cost and effective air cleaning technology to offer people healthy living. The present work describes the design optimization process of an outdoor air purifier based on Computational Fluid Dynamics analysis. Initially the internal aerodynamics of air purifier installed at CSIR-CMERI Colony, Durgapur, India is simulated and results ware verified with experimental data. Hereafter, external aerodynamics simulations are performed in order to optimize the gap between inlet and exit. Based on this study, few design modifications are suggested and all these modifications can also be optimized based on the pressure losses and the dissipation losses inside the purifier.

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Literatur
1.
2.
Zurück zum Zitat World Air Quality Report 2021 – IQAir World Air Quality Report 2021 – IQAir
3.
Zurück zum Zitat Splittgerber, V., Saenger, P.: City Tree: a vertical plant wall. Air Pollut. 295, 295–298 (2015) Splittgerber, V., Saenger, P.: City Tree: a vertical plant wall. Air Pollut. 295, 295–298 (2015)
4.
Zurück zum Zitat Laxmipriya, S., Kumar, A.A., Aravinthan, S.: N. reduction of air pollution using smog-free-tower a review paper. IRJAET 4, 3251–3255 (2018) Laxmipriya, S., Kumar, A.A., Aravinthan, S.: N. reduction of air pollution using smog-free-tower a review paper. IRJAET 4, 3251–3255 (2018)
6.
Zurück zum Zitat Januszkiewicz, K., Kowalski, K.G.: Air purification in highly urbanized areas with the use of TiO2. New approach in designing urban public space with beneficial human condition. In Proceedings of the IOP Conference Series: Materials Science and Engineering, Pergue, Czech Republic, 17–21, (2019) Januszkiewicz, K., Kowalski, K.G.: Air purification in highly urbanized areas with the use of TiO2. New approach in designing urban public space with beneficial human condition. In Proceedings of the IOP Conference Series: Materials Science and Engineering, Pergue, Czech Republic, 17–21, (2019)
7.
Zurück zum Zitat Cyranoski, D.: China tests giant air cleaner to combat smog. Nature 555, 152–153 (2018)CrossRef Cyranoski, D.: China tests giant air cleaner to combat smog. Nature 555, 152–153 (2018)CrossRef
8.
Zurück zum Zitat Paul, B. V., James N., David, S., Tom G., Neal, M. Air purifier with control sensors, US patent 7,166,259 B2, United States Patent (2007) Paul, B. V., James N., David, S., Tom G., Neal, M. Air purifier with control sensors, US patent 7,166,259 B2, United States Patent (2007)
9.
Zurück zum Zitat Hak, M., Richmond, V.A.: Air purifier, US 6,494,940 B1, United States Patent (2002) Hak, M., Richmond, V.A.: Air purifier, US 6,494,940 B1, United States Patent (2002)
10.
Zurück zum Zitat Matlin, T.H.K., Beach, R.L., Applegate, S.M., Dale, W.: Air Purifier with Intelligent Sensors and Intellectual Airflow, US 2015/0306533 A1, United States Patent (2015) Matlin, T.H.K., Beach, R.L., Applegate, S.M., Dale, W.: Air Purifier with Intelligent Sensors and Intellectual Airflow, US 2015/0306533 A1, United States Patent (2015)
11.
Zurück zum Zitat Rodriguez, L., Zurita, S., Outdoor Air Purifier Improved by Air Currents, WO 2017/216611 Al, (2016) Rodriguez, L., Zurita, S., Outdoor Air Purifier Improved by Air Currents, WO 2017/216611 Al, (2016)
12.
Zurück zum Zitat Amol, C., Air Purification System, WO 2017/208266 Al, (2007) Amol, C., Air Purification System, WO 2017/208266 Al, (2007)
13.
Zurück zum Zitat Air purifying street lamp, CN104075199A, Chinese patent Air purifying street lamp, CN104075199A, Chinese patent
14.
Zurück zum Zitat Air purifier installed on ordinary street lamp pole, CN104534588AChinese patent Air purifier installed on ordinary street lamp pole, CN104534588AChinese patent
15.
Zurück zum Zitat Liu, Y., Zhou, B., Wang, J., Zhao, B.: Health benefits and cost of using air purifiers to reduce exposure to ambient fine particulate pollution in China. J. Hazard. Mater. 414, 125540 (2021)CrossRef Liu, Y., Zhou, B., Wang, J., Zhao, B.: Health benefits and cost of using air purifiers to reduce exposure to ambient fine particulate pollution in China. J. Hazard. Mater. 414, 125540 (2021)CrossRef
16.
Zurück zum Zitat Li, C., Bai, L., He, Z., Liu, X., Xu, X.: The effect of air purifiers on the reduction in indoor PM2.5 concentrations and population health improvement. Sustain. Cities Soc. 75, 103298 (2021)CrossRef Li, C., Bai, L., He, Z., Liu, X., Xu, X.: The effect of air purifiers on the reduction in indoor PM2.5 concentrations and population health improvement. Sustain. Cities Soc. 75, 103298 (2021)CrossRef
17.
Zurück zum Zitat Yewale, P.: Studies on biosmotrap: a multipurpose biological air purifier to minimize indoor and outdoor air pollution. J. Clean. Prod. 357, 132001 (2022)CrossRef Yewale, P.: Studies on biosmotrap: a multipurpose biological air purifier to minimize indoor and outdoor air pollution. J. Clean. Prod. 357, 132001 (2022)CrossRef
18.
Zurück zum Zitat Jumlongkul, A.: Semi-outdoor filterless air purifier for smog and microbial protection with water purifier system. Environ. Res. 197, 111149 (2021)CrossRef Jumlongkul, A.: Semi-outdoor filterless air purifier for smog and microbial protection with water purifier system. Environ. Res. 197, 111149 (2021)CrossRef
22.
Zurück zum Zitat Launder, B.E., Spalding, D.B.: The numerical computation of turbulent flows. Comput. Methods Appl. Mech. Eng. 3(2), 269–289 (1974)CrossRefMATH Launder, B.E., Spalding, D.B.: The numerical computation of turbulent flows. Comput. Methods Appl. Mech. Eng. 3(2), 269–289 (1974)CrossRefMATH
Metadaten
Titel
CFD analysis of an outdoor air purifier with experimental validation
verfasst von
Kunal Kumar
Chandan Kumar
R. K. Pandey
Publikationsdatum
16.08.2022
Verlag
Springer Paris
Erschienen in
International Journal on Interactive Design and Manufacturing (IJIDeM) / Ausgabe 3/2023
Print ISSN: 1955-2513
Elektronische ISSN: 1955-2505
DOI
https://doi.org/10.1007/s12008-022-01014-9

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