Optimization Methods for Finite Element Analysis and Design describes recent developments in Finite Element Methods (FEM). The book covers a range of state-of-the-art application areas including medical equipment, structural analysis, and machinery products.
Optimization Methods for Finite Element Analysis and Design describes recent developments in Finite Element Methods (FEM). The book covers a range of state-of-the-art application areas including medical equipment, structural analysis, and machinery products.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Ishaan R Kale holds a Ph.D. in Nature-Inspired Optimization Techniques from Symbiosis International University. He received his MEng in Mechanical Design Engineering from Maharashtra Institute of Technology, Pune University and BEng from North Maharashtra University. His research interest includes Design Engineering, Constraint Handling, Metaheuristic Optimization Algorithms and Hybrid Metaheuristics. Sujin Bureerat received the B.Eng. degree in Mechanical Engineering from Khon Kaen University, Thailand, and the Ph.D. degree in Engineering from Manchester University, United Kingdom. He is a Professor with the Department of Mechanical Engineering, Khon Kaen University. His research interests include: multidisciplinary design optimization, metaheuristics, aeroelasticity, and aircraft design. Ravipudi Venkata Rao is a renowned mechanical engineering academic specializing in optimization techniques, design, and manufacturing. With significant contributions to nature-inspired metaheuristic algorithms, he has authored numerous books and research papers, influencing fields like structural optimization, computational mechanics, and intelligent manufacturing systems worldwide.
Inhaltsangabe
Chapter 1: A brief review of different Optimization and Machine Learning techniques for Mesh Refinement. Chapter 2: Bridging Theory and Practice in Mesh Smoothing Techniques. Chapter 3: Static deformation of cable nets: The conic programming approach. Chapter 4: Design and Analysis of Gas Turbine Rotor Blade with Film Cooling for Aeronautical Applications. Chapter 5: Optimal Design of Frame Structures Based on The Finite Elements Analysis Using Fuzzy Jaya Algorithm. Chapter 6: Total Potential Optimization Using Metaheuristic Algorithms for Analysis of Structural Systems. Chapter 7: Optimal Design of Heat Exchanger Systems Using Marathon Runner Algorithm. Chapter 8: Cohesive Zone Modelling of Epoxy Bonded Composite Lap Joints under Cyclic Loading
Chapter 1: A brief review of different Optimization and Machine Learning techniques for Mesh Refinement. Chapter 2: Bridging Theory and Practice in Mesh Smoothing Techniques. Chapter 3: Static deformation of cable nets: The conic programming approach. Chapter 4: Design and Analysis of Gas Turbine Rotor Blade with Film Cooling for Aeronautical Applications. Chapter 5: Optimal Design of Frame Structures Based on The Finite Elements Analysis Using Fuzzy Jaya Algorithm. Chapter 6: Total Potential Optimization Using Metaheuristic Algorithms for Analysis of Structural Systems. Chapter 7: Optimal Design of Heat Exchanger Systems Using Marathon Runner Algorithm. Chapter 8: Cohesive Zone Modelling of Epoxy Bonded Composite Lap Joints under Cyclic Loading
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