LAPSE:2023.20866
Published Article

LAPSE:2023.20866
Heat and Mass Transfer Analysis of a Fluid Flow across the Conical Gap of a Cone-Disk Apparatus under the Thermophoretic Particles Motion
March 21, 2023
Abstract
This particular study focuses on investigating the heat and mass transport characteristics of a liquid flow across the conical gap (CG) of a cone-disk apparatus (CDA). The cone and disk may be taken as stationary or rotating at varying angular velocities. Consideration is given to heat transport affected by solar radiation. The Rosseland approximation is used for heat radiation calculations in the current work. To observe the mass deposition variation on the surface, the effect of thermophoresis is taken into account. Appropriate similarity transformations are used to convert the three-dimensional boundary-layer governing partial differential equations (PDEs) into a nonlinear ordinary differential equations (ODEs) system. Particularly for the flow, thermal and concentration profiles, plots are provided and examined. Results reveal that the flow field upsurges significantly with upward values of Reynolds numbers for both cone and disk rotations. The increase in values of the radiation parameter improves heat transport. Moreover, it is detected that the stationary cone and rotating disk model shows improved heat transport for an increase in the values of the radiation parameter.
This particular study focuses on investigating the heat and mass transport characteristics of a liquid flow across the conical gap (CG) of a cone-disk apparatus (CDA). The cone and disk may be taken as stationary or rotating at varying angular velocities. Consideration is given to heat transport affected by solar radiation. The Rosseland approximation is used for heat radiation calculations in the current work. To observe the mass deposition variation on the surface, the effect of thermophoresis is taken into account. Appropriate similarity transformations are used to convert the three-dimensional boundary-layer governing partial differential equations (PDEs) into a nonlinear ordinary differential equations (ODEs) system. Particularly for the flow, thermal and concentration profiles, plots are provided and examined. Results reveal that the flow field upsurges significantly with upward values of Reynolds numbers for both cone and disk rotations. The increase in values of the radiation parameter improves heat transport. Moreover, it is detected that the stationary cone and rotating disk model shows improved heat transport for an increase in the values of the radiation parameter.
Record ID
Keywords
cone-disk apparatus, conical gap, heat and mass transfer, thermal radiation, thermophoresis
Subject
Suggested Citation
Srilatha P, Remidi S, Nagapavani M, Singh H, Prasannakumara BC. Heat and Mass Transfer Analysis of a Fluid Flow across the Conical Gap of a Cone-Disk Apparatus under the Thermophoretic Particles Motion. (2023). LAPSE:2023.20866
Author Affiliations
Srilatha P: Department of Mathematics, Institute of Aeronautical Engineering, Hyderabad 500043, Telangana, India
Remidi S: Information Technology Department, College of Computing and Information Sciences, University of Technology and Applied Sciences-Nizwa, Nizwa 611, Oman
Nagapavani M: Department of Mathematics, Hyderabad Institute of Technology and Management, Hyderabad 501401, Telangana, India [ORCID]
Singh H: Department of Mechanical Engineering, University Centre for Research & Development, Chandigarh University, Mohali 140413, Punjab, India
Prasannakumara BC: Department of Studies and Research in Mathematics, Davangere University, Davangere 577002, Karnataka, India [ORCID]
Remidi S: Information Technology Department, College of Computing and Information Sciences, University of Technology and Applied Sciences-Nizwa, Nizwa 611, Oman
Nagapavani M: Department of Mathematics, Hyderabad Institute of Technology and Management, Hyderabad 501401, Telangana, India [ORCID]
Singh H: Department of Mechanical Engineering, University Centre for Research & Development, Chandigarh University, Mohali 140413, Punjab, India
Prasannakumara BC: Department of Studies and Research in Mathematics, Davangere University, Davangere 577002, Karnataka, India [ORCID]
Journal Name
Energies
Volume
16
Issue
2
First Page
952
Year
2023
Publication Date
2023-01-14
ISSN
1996-1073
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Original Submission
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PII: en16020952, Publication Type: Journal Article
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LAPSE:2023.20866
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https://doi.org/10.3390/en16020952
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Mar 21, 2023
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