Demystifying Numerical Models: Step-by Step Modeling of Engineering Systems is the perfect guide on the analytic concepts of engineering components and systems. In simplified terms, the book focuses on engineering characteristics and behaviors using numerical methods. Readers will learn how the computational aspects of engineering analysis can be applied to develop various engineering systems to a level that is fit for implementation.
Demystifying Numerical Models: Step-by Step Modeling of Engineering Systems is the perfect guide on the analytic concepts of engineering components and systems. In simplified terms, the book focuses on engineering characteristics and behaviors using numerical methods. Readers will learn how the computational aspects of engineering analysis can be applied to develop various engineering systems to a level that is fit for implementation.
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Autorenporträt
Dr. John P.T. Mo is Professor of Manufacturing Engineering and former Discipline Head of Manufacturing and Materials at RMIT University. Prior to joining RMIT, he was Senior Principal Research Scientist in Commonwealth Scientific and Industrial Research Organisation (CSIRO) and led several teams including Manufacturing Systems and Infrastructure Network Systems in the Division of Manufacturing and Infrastructure Technology. His expertise includes system integration and analysis, data communication, sensing and signal diagnostics. In his 11 years in CSIRO, he led a team of professional research staff worked on risks analysis algorithms, electricity market simulation, wireless communication, fault detection and production scheduling. He was the project leader for many large scale government projects including productivity improvement in furnishing industry and consumer goods supply chain integration.
Dr. Sherman C.P. Cheung is Associate Professor and Program Manager of Mechanical Engineering at RMIT University. Dr. Cheung is an expert in numerical modelling using Computational Fluid Dynamics (CFD) technique. His expertise includes fire dynamics modelling, multiphase flow modelling, numerical heat and mass transfer and computational optimization algorithms. In the past 15 years of his career, he has actively engaged in various consultancy projects with industrial partners using numerical techniques to perform safety analysis, design optimization, risk analysis and system performance assessment.
Inhaltsangabe
1. Introduction to Numerical Representation of Engineering Systems 2. Basic Numerical Techniques 3. Liquid power systems 4. Heat transfer systems 5. Gas power systems 6. Electrical power systems 7. Industrial systems 8. Systems engineering 9. Beam Deflection 10. Vibration 11. Composite
1. Introduction to Numerical Representation of Engineering Systems 2. Basic Numerical Techniques 3. Liquid power systems 4. Heat transfer systems 5. Gas power systems 6. Electrical power systems 7. Industrial systems 8. Systems engineering 9. Beam Deflection 10. Vibration 11. Composite
Rezensionen
"This would be an excellent book for any engineering student or working professional who wants to use numerical modeling techniques and commonly available spreadsheet software to quickly solve complex engineering problems. This is a skill well-worth your time to acquire." --IEEE Electrical Insulation Magazine
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