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Numerical and Analytical Approaches in Magnetohydrodynamic Fluid Flow

Payam Jalili Bahram Jalili Pooya Pasha Davood Domiri

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English
Engineering Science Reference
29 November 2024
Numerical and analytical approaches in magnetohydrodynamic (MHD) fluid flow play a crucial role in understanding the complex interactions between magnetic fields and conductive fluids. These methods enable researchers to model and predict the behavior of MHD systems, which are prevalent in astrophysics, nuclear fusion, and metal casting. Analytical techniques provide valuable insights into principles and scenarios, while numerical simulations offer realistic representations of flow patterns and boundary conditions. By integrating both approaches, scientists and engineers can enhance their comprehension of MHD fluid flow, leading to advancements in technology and improved industrial design. Numerical and Analytical Approaches in Magnetohydrodynamic Fluid Flow examines recent advancements in MHD flow in engineering. The heat transfer of fluid flow in porous media is analyzed, and analytical and numerical methods are used to solve nanofluid flow problems. This book covers topics such as hydromagnetics, nanotechnology, and data science, and is a useful resource for engineers, data scientists, physicists, mathematicians, researchers, and academicians.
By:   , , ,
Imprint:   Engineering Science Reference
Country of Publication:   United States
Dimensions:   Height: 254mm,  Width: 178mm, 
ISBN:   9798369353363
Pages:   326
Publication Date:  
Audience:   College/higher education ,  Professional and scholarly ,  Primary ,  Undergraduate
Format:   Paperback
Publisher's Status:   Active

Researcher in the fields of engineering sciences, engineering, mathematics and mechanics with the latest methods known in the world. Davood Domiri Ganji received his Ph.D. degree from the Department of Mechanical Engineering at Nushirvani Engineering Complex, Mazandaran University, Babol, Mazandaran, Iran. He is currently an Assistant Professor at the same department. His research interests are based on finite difference method, finite volume method, inverse problem, fluid mechanics, aerodynamics, analysis of partial differential equation (PDE), spray modelling (using analytical methods such as homotopy perturbation method (HPM), variational iteration method (VIM), piecewise parabolic method (PPM)), as well as computational fluid dynamic (CFD). He was honored an Appreciation Certificate from the President, Appreciation Certificates from the Minister of Higher Education and Culture, Appreciation Certificates from the Head of Regime Interest Committee. He is the Editor-in-chief of International Journal of Nonlinear Dynamic and Engineering Science (IJNDES), and an Editor of International Journal of Nonlinear Sciences and Numerical Simulation (IJNSNS).

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