Details

CFD Techniques and Energy Applications


CFD Techniques and Energy Applications



von: Zied Driss, Brahim Necib, Hao-Chun Zhang

CHF 118.00

Verlag: Springer
Format: PDF
Veröffentl.: 22.02.2018
ISBN/EAN: 9783319709505
Sprache: englisch

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Beschreibungen

This book focuses on CFD (Computational Fluid Dynamics) techniques and the recent developments and research works in energy applications. It is devoted to the publication of basic and applied studies broadly related to this area. The chapters present the development of numerical methods, computational techniques, and case studies in the energy applications. Also, they offer the fundamental knowledge for using CFD in energy applications through new technical approaches. Besides, they describe the CFD process steps and provide benefits and issues for using CFD analysis in understanding the flow complicated phenomena and its use in the design process. The best practices for reducing errors and uncertainties in the CFD analysis are further described. The book reveals not only the recent advances and future research trends of CFD Techniques but also provides the reader with valuable information about energy applications. It aims to provide the readers, such as engineers and PhD students, with the fundamentals of CFD prior to embarking on any real simulation project. Additionally, engineers supporting or being supported by CFD analysts can take advantage from the information of the book’s different chapters.<p></p> ​
<p>Theoretical analysis on the performance of a solar chimney coupled with a geothermal heat exchanger.- Study of the turbulence model effect on the air flow characteristics inside a solar chimney power plant.- Numerical study of the fluid characteristics effect on the penetration of a negatively buoyant jet.- Computer simulation of liquid motion in a container subjected to sinusoidal excitation with different turbulence models.- Numerical investigation for a vanned mixed flow turbine volute under steady conditions.- CFD investigation of the hydrodynamic structure around a modified anchor system.- Laminar flow for a Newtonian thermodependent fluid in an eccentric horizontal annulus.- Study of the incidence angle effect on the aerodynamic structure of a Savonius wind rotor.- Study of swirl contribution to stabilization turbulent diffusion flame.</p>
<p><b>Prof. Dr. Eng. Zied Driss</b><br/>Dr. Driss is Associate Professor in the Department of Mechanical Engineering at National School of Engineers of Sfax (ENIS). He received his Engineering Diploma in 2001, his Master Degree in 2003, his PhD in 2008 and his HDR in 2013 in Mechanical Engineering from ENIS at University of Sfax, Tunisia. He is interested on the development of numerical and experimental techniques for solving problems in mechanical engineering and energy applications. Also, his research has been focused on the interaction between Computational Fluid Dynamics (CFD) and Computational Structure Dynamics (CSD) codes. As a result of his research, he is principal or co-principal investigator on more than 80 papers in peer-reviewed journals, more than 150 communications to international conferences, 10 books and 40 books chapters. Also, he is the main inventors of 2 patents. Currently, Dr. Driss is a Chief of Project in the Laboratory of Electromechanical Systems (LASEM), an Editorial in Chief for two international journals, an Editorial Board Member and reviewer for different international journals, an Editor for different books, a General Chair of two bi-annual international conferences and an active member in different national and international associations.<br/></p><p> </p><p><b>Prof. Dr. Brahim Necib<br/></b>Dr. B.Necib is a Professor and Head of Research in Mechanical Engineering Department, Laboratory of mechanics at the University of Mentouri Constantine, Algeria. He received his Philosophy Doctor (Ph. D) and his Master in Aeronautical and Astronautical Engineering at Purdue University W. Lafayette Indiana, USA in 1987 and 1982 respectively. He got his Engineer degree in Mechanical Engineering from the National Polytechnic School of Algiers, Algeria in 1980. His work interest is on the development of numerical and experimental techniques for solving practical problems in mechanical and aeronautical engineering. His research work is focused on the aerodynamics, aero elasticity, propulsion and the analysis of static and dynamic discrete and continuum structures as well as the composite and the new smart materials using the finite elements numerical methods. As a result of his research work he is the main supervisor of 10 doctors of state, 30 magiters in mechanical engineering, 10 masters of sciences, 25 engineers of state in mechanics and the principal responsible of 11 national projects of research (CNEPRU). He is the principal authors and co-authors in 20 international and national papers in indexed journals and more than 150 international communications. Also, he is the editor of 02 published bloc notes on «Continuum Mechanics» and «Finite Element Methods». Prof. Necib was the head of the Research Laboratory of Mechanics up to 2008. Actually he is the responsible of research team of “aerodynamics, complex structures and news materials” and he is an active member in many national research commissions and scientific associations.</p><p><b>Prof. Dr. Hao-Chun Zhang</b></p><p>Dr. Hao-Chun Zhang is currently a Professor in School of Energy Science and Engineering, Harbin Institute of Technology (HIT). He is the deputy head of the Department of Nuclear Science and Engineering, head of Institute of Nuclear Reactor Engineering, HIT, and executive professor of HIT-CORYS Nuclear System Simulation International Joint Research Center(Sino-France). With BSC (Engineering) in 1999, MSC (Engineering) in 2001 and Ph.D. in 2007 from Harbin Institute of Technology (HIT), Dr. Zhang joined HIT in September 2004. Dr. Zhang has about 150 research publications in peer-reviewed journals and conferences, 2 books, and 2 translations of foreign books. Apart from the main research in the area of engineering thermo-physics, currently his research covers computational energy science, nuclear system simulation, and ultrasonic aircraft thermal protection. Dr. Zhang is a recipient of theresearch fellowship of the Krupp Foundation and DAAD, Germany. He is the reviewer of more than 20 journals, many conferences and scientific funds in the area of nuclear engineering, heat transfer, mechanics and sustainable energy. Dr. Zhang is now in charge of research projects from DFG, national research natural foundation of China, ministry of education of China, ministry of science and technology of China and funds from international and enterprises collaboration. Dr. Zhang is the member of AAAS, ASME and AIAA, Director of China Energy Research Society. He was awarded the 2016 Best Paper of ASME MNHMT, 2015 Most Valued Reviewer by Journal of Quantitative Spectroscopy and Radiative Transfer, 2012 DAAD/DFG funds for Chinese scholar, the 2011 outstanding reviewer by ASME Journal of Heat Transfer and 2008 Krupp Fellowship for Chinese Young Scholar from Germany.</p>
This book focuses on CFD (Computational Fluid Dynamics) techniques and the recent developments and research works in energy applications. It is devoted to the publication of basic and applied studies broadly related to this area. The chapters present the development of numerical methods, computational techniques, and case studies in the energy applications. Also, they offer the fundamental knowledge for using CFD in energy applications through new technical approaches. Besides, they describe the CFD process steps and provide benefits and issues for using CFD analysis in understanding the flow complicated phenomena and its use in the design process. The best practices for reducing errors and uncertainties in the CFD analysis are further described. The book reveals not only the recent advances and future research trends of CFD Techniques but also provides the reader with valuable information about energy applications. It aims to provide the readers, such as engineers and PhD students, with the fundamentals of CFD prior to embarking on any real simulation project. Additionally, engineers supporting or being supported by CFD analysts can take advantage from the information of the book’s different chapters.<p></p>
Includes basic and applied studies broadly related to energy applications Presents the development of numerical methods, computational techniques, and case studies Offers the fundamental knowledge for using CFD in energy applications through new technical approaches

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