Combined impact of radiation and chemical reaction on MHD hyperbolic tangent nanofluid boundary layer flow past a stretching sheet

Author:

Athal I.1,Haewon Byeon2,Sasikala A.3,Narsimha Reddy B.4,Govindan Vediyappan56ORCID,Maddileti P.7,Saritha K.8,Shashidar Reddy B.4,Rajakumari S.9,Tawade Jagadish V.10,Tamam Nissren11,Abdullaeva Barno Sayfutdinovna12,Chohan Jasgurpreetsingh13,Mishra Raghawendra14

Affiliation:

1. Department of Mathematics, PSNA College of Engineering and Technology, Dindigul 624622, Tamil Nadu, India

2. Department of Digital Anti-Aging Healthcare (BK21), Inje University, Republic of Korea

3. Department of Mathematics, Periyar Maniammai Institute of Science & Technology, Vallam, Thanjavur, Tamil Nadu, India

4. Department of Mathematics, Sreenidhi Institute of Science and Technology, Ghatkesar, Hyderabad, Telangana, India

5. Department of Mathematics, Hindustan Institute of Technology and Science (Deemed to Be University), Padur, Kelambakkam 603103, Tamil Nadu, India

6. Department of Mathematics, DMI St John The Baptist University, 800-Central Africa, Malawi

7. Department of Mathematics, Mahatma Gandhi University, Nalgonda, Telangana, India

8. Department of Humanities and Science, CVR College of Engineering, Mangalpalli, Ibrahimpatnam, Telangana, India

9. Department of Mathematics, R.M.D. Engineering College, Kavaraipettai 601206, Tamil Nadu, India

10. Vishwakarma University, Pune, Maharashtra, India

11. Department of Physics, College of Science, Princess Nourahbint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi Arabia

12. Tashkent State Pedagogical University, Tashkent, Uzbekistan

13. Department of Mechanical Engineering and University Centre for Research & Development, Chandigarh University, Mohali 140413, Punjab, India

14. Department of Mathematics, S.B.S. Government P.G. College, Rudrapur, Uttarakhand, India

Abstract

The aim of this study is to investigate the effects of thermal radiation and chemical reactions on magnetohydrodynamic hyperbolic tangent liquid, which includes nanoparticles on a stretched surface while taking into account Brownian motion and thermophoresis. The nonlinear partial differential equations governing the system are converted into nonlinear ordinary differential equations through suitable similarity transformations. The focus of the study is to elucidate important engineering concepts such as skin friction, Sherwood number, and heat transfer, as well as to understand the effects of various expressions on the different profiles. The Keller-box approach, a sophisticated numerical tool, is used to get the numerical answers to the current enquiry. The generated findings are extensively tested for correctness and dependability. The findings of this study might have far-reaching ramifications for a variety of technical applications, including heat exchangers, chemical reactors, and thermal management systems.The results show that the rate of mass transfer rises with the increment in the factors of chemical reaction, thermal radiation, nanoparticles volume, and Brownian motion.

Funder

Princess Nourahbint Abdulrahman University Researchers Supporting Project

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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