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Water-based nanofluid flow with various shapes of Al2O3 nanoparticles owing to MHD inside a permeable tank with heat transfer

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成果类型:
期刊论文
作者:
Chu, Yu-Ming;Kumar, Rakesh;Bach, Quang-Vu*
通讯作者:
Bach, Quang-Vu
作者机构:
[Chu, Yu-Ming] Huzhou Univ, Dept Math, Huzhou 313000, Peoples R China.
[Chu, Yu-Ming] Changsha Univ Sci Technol, Hunan Prov Key Lab Math Modeling & Anal Engn, Changsha 410114, Peoples R China.
[Kumar, Rakesh] Cent Univ Himachal Pradesh, Sch Math Comp & Informat Sci, Dharamshala, India.
[Bach, Quang-Vu] Ton Duc Thang Univ, Fac Environm & Labour Safety, Sustainable Management Nat Resources & Environm R, Ho Chi Minh City, Vietnam.
通讯机构:
[Bach, Quang-Vu] T
Ton Duc Thang Univ, Fac Environm & Labour Safety, Sustainable Management Nat Resources & Environm R, Ho Chi Minh City, Vietnam.
语种:
英文
关键词:
Shape of nanoparticles;Darcy law;Radiation;Lorentz forces;Nanomaterial;Convection
期刊:
Applied Nanoscience
ISSN:
2190-5509
年:
2023
卷:
13
期:
4
页码:
2653-2664
基金类别:
Part of current project was supported by the National Natural Science Foundation of China (Grant Nos. 61673169, 1187120, 11971142, 11701176, 11626101, 11601485).
机构署名:
本校为其他机构
摘要:
Radiative behavior of nanomaterial with different shapes of nanoparticles within a permeable domain is simulated with an innovative approach. To predict the characteristics of Al2O3–H2O, shape factor impact has been considered. Outputs were extracted for various buoyancy, Hartmann and radiation. Outcomes indicate that domination of conduction mode occurs in existence of magnetic force. Augmenting temperature gradient can be seen for greater Rd. CVFEM has been involved to obtain and discuss impacts of all the governing parameters. The graphical...

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