In this paper, both first and second laws of thermodynamics are employed to examine the combined effects of nonlinear thermal radiation, buoyancy forces, thermophoresis and Brownian motion on entropy generation rate in hydromagnetic couple stress nanofluid flow through a vertical channel with permeable walls. The model equations of momentum, energy balance and nanoparticle concentration are obtained and tackled numerically using a shooting technique coupled with Runge-Kutta-Fehlberg integration scheme. The numerical results for velocity, temperature and nanoparticles concentration profiles are utilised to determine the skin friction, Nusselt number, Sherwood number, entropy generation rate and Bejan number. It is found that the entropy production in the flow system can be effectively minimized by regulating the values of the thermophysical parameters for efficient operation. Some other interesting results are displayed graphically and discussed quantitatively.
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Amer Univ Ras Al Khaimah, Sch Math & Nat Sci, Ras Al Khaymah, U Arab EmiratesAmer Univ Ras Al Khaimah, Sch Math & Nat Sci, Ras Al Khaymah, U Arab Emirates
Almakki, Mohammed
Mondal, Hiranmoy
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Maulana Abul Kalam Azad Univ Technol, Dept Appl Sci, Kolkata, IndiaAmer Univ Ras Al Khaimah, Sch Math & Nat Sci, Ras Al Khaymah, U Arab Emirates
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Department of Mathematics, Kohat University of Science and Technology KUST, Khyber Pakhtunkhwa, Kohat, PakistanDepartment of Mathematics, Kohat University of Science and Technology KUST, Khyber Pakhtunkhwa, Kohat, Pakistan
Jan, Muhammad Asif
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Shah, Zahir
Alzahrani, Mohammed R.
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Faculty of Education, UMM Al-Qura University, Makkah, Saudi ArabiaDepartment of Mathematics, Kohat University of Science and Technology KUST, Khyber Pakhtunkhwa, Kohat, Pakistan
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Shanghai Univ, Shanghai Inst Appl Math & Mech, Shanghai 200072, Peoples R ChinaShanghai Univ, Shanghai Inst Appl Math & Mech, Shanghai 200072, Peoples R China
Bhatti, Muhammad Mubashir
Abbas, Tehseen
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Quaid I Azam Univ, Dept Math, Islamabad 44000, PakistanShanghai Univ, Shanghai Inst Appl Math & Mech, Shanghai 200072, Peoples R China
Abbas, Tehseen
Rashidi, Mohammad Mehdi
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Tongji Univ, Shanghai Key Lab Vehicle Aerodynam & Vehicle Ther, Shanghai 201804, Peoples R China
Tongji Univ, ENN Tongji Clean Energy Inst Adv Studies, Shanghai 200072, Peoples R ChinaShanghai Univ, Shanghai Inst Appl Math & Mech, Shanghai 200072, Peoples R China
Rashidi, Mohammad Mehdi
Ali, Mohamed El-Sayed
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King Saud Univ, Dept Mech Engn, Coll Engn, POB 800, Riyadh 11421, Saudi ArabiaShanghai Univ, Shanghai Inst Appl Math & Mech, Shanghai 200072, Peoples R China
Ali, Mohamed El-Sayed
Yang, Zhigang
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Tongji Univ, Shanghai Key Lab Vehicle Aerodynam & Vehicle Ther, Shanghai 201804, Peoples R ChinaShanghai Univ, Shanghai Inst Appl Math & Mech, Shanghai 200072, Peoples R China
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Sichuan Univ, Coll Water Resource & Hydropower, State Key Lab Hydraul & Mt River Engn, Chengdu 610065, Sichuan, Peoples R China
Tsinghua Univ, Minist Educ, Key Lab Adv Reactor Engn & Safety, Beijing 100084, Peoples R ChinaSichuan Univ, Coll Water Resource & Hydropower, State Key Lab Hydraul & Mt River Engn, Chengdu 610065, Sichuan, Peoples R China
Khan, Z. H.
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Makinde, O. D.
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Ahmad, R.
Khan, W. A.
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Prince Mohammad Bin Fahd Univ, Coll Engn, Dept Mech Engn, POB 1664, Al Khobar 31952, Saudi ArabiaSichuan Univ, Coll Water Resource & Hydropower, State Key Lab Hydraul & Mt River Engn, Chengdu 610065, Sichuan, Peoples R China