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Numerical heat featuring in radiative convective ternary nano°uid under induced magnetic ¯eld and heat generating source
Abbas, W ; Sharif University of Technology | 2024
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- Type of Document: Article
- DOI: 10.1142/S0217979225500444
- Publisher: 2024
- Abstract:
- The study of nanoliquid characteristics and their heat performance have attracted the interest of engineers. These engineered °uids have high thermal conductivity due to which such liquids are reliable for di®erent engineering applications including heating/cooling of buildings, thermal and mechanical engineering, etc. Therefore, the current research design provides a new ternary nanoliquid model for the heat transport process under induced magnetic ¯eld e®ects, mixed convection, heating source and thermal radiations. The modeling has been done by implementing the ternary °uid characteristics and supportive transformations and then for results simulation; bvp4c is coded successfully. It is scrutinized that a higher inductive magnetic ¯eld (0.1–0.4) and nanoparticles amount (0.01–0.07) are better to resist the movement while the wedge parameter (1Þ promotes it. By promoting the heating source, Eckert and Rd, the heat transfer process is observed rapidly while the mixed convective number controls it. Further, the particular used ternary nanoliquid is examined and found to be good for cooling purposes. © 2024 World Scientific. All rights reserved
- Keywords:
- Heating source ; Induced magnetic ¯eld ; Moving wedge, viscous dissipation ; Ternary nano°uid ; Heat convection ; Nanomagnetics ; Thermal conductivity ; Engineering applications ; Heat performance ; Heat-generating ; Nanoliquid ; Ternary nano°uid ; Viscous dissipation ; Thermal Engineering
- Source: International Journal of Modern Physics B ; 2024 ; 02179792 (ISSN)
- URL: https://www.worldscientific.com/doi/abs/10.1142/S0217979225500444?af=R&srsltid=AfmBOorJ6bfTc_Ou3sTei46HgTS-DPxvj-soKBmjcbAdJOt_djJv59Py
