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JOURNALS // Bulletin of Irkutsk State University. Series Mathematics // Archive

Bulletin of Irkutsk State University. Series Mathematics, 2022 Volume 40, Pages 15–33 (Mi iigum483)

This article is cited in 1 paper

Integro-differential equations and functional analysis

Rotational reaction over infected Covid-19 on human respiratory tract in the presence of Soret effect with Hall current

T. Padmavathia, S. Senthamilselvia, S. S. Santrab, V. Govindanc, M. Altanjid, S. Noeiaghdamef

a Vels University, Pallavaram, India
b JIS College of Engineering, Kalyani, India
c Phuket Rajabhat University, Phuket, Thailand
d College of Science, King Khalid University, Abha, Saudi Arabia
e Irkutsk National Research Technical University, Irkutsk, Russian Federation
f South Ural State University, Chelyabinsk, Russian Federation

Abstract: Corona virus infects the ciliated cells in the human nasal epithelium. Lung disease and diabetes are enlarged risks of severe breakdown against COVID-19. Cilia are hair-like construction enhanced from the celluloid into the pleural fluid surrounding the cell. Infection is detected in the lungs, a pleural disorder generates a Pleural Effusion. The present paper developed mathematical model intent to analyze the rotational consequence cause of COVID-19 on the human respiratory tract surrounded by the porous medium in the presence of the Soret effect with hall current under the force of the magnetic field. The respiratory tract mechanism of biological flows with the physiological process is observed. The non-dimensional governing equations are solved using the perturbation technique and the numerical computation results are exposed in the form of graphs. The effects of several parameters such as the Hartmann number, Schmidt number, Prandtl number, Soret parameter on the velocity, temperature and concentration fields are determined with their significance.

Keywords: cilia, COVID-19, hall current, magnetic field, pleural fluid, rotation parameter, Soret effect.

UDC: 518.517

MSC: 34E10, 37N25, 76D05, 76M45, 76Z99, 92B99

Received: 11.12.2021
Revised: 22.01.2022
Accepted: 15.02.2022

Language: English

DOI: 10.26516/1997-7670.2022.40.15



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