Finite Element Modeling and Simulation with ANSYS Workbench 2nd Edition
Original price was: $55.00.$44.97Current price is: $44.97.
Format: Downloadable ZIP File
Resource Type: Test bank
Duration: Unlimited downloads
Delivery: Instant Download
Inspect Financial institution For Modeling and Simulation Using ANSYS Workbench 2nd Edition
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ISBN-101138486299
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ISBN-13978-1138486294
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Modeling and Simulation Using ANSYS Workbench 18, Second Edition, merges finite element theory with real-world application. Introducing finite element modeling and analysis for individuals with no prior background, and co-authored by instructors with a collective 30 years of teaching experience in this field, this text presents FEM formulations integrated with relevant practical instructions for utilizing ANSYS Workbench 18. Integrating the fundamental principles of FEA, simulation case studies, and employing ANSYS Workbench in the modeling of engineering problems, the book also establishes the finite element method as a robust numerical technique in engineering design and analysis.
Features
- Utilizes ANSYS Workbench™ 18, which incorporates the ANSYS SpaceClaim Direct Modeler™ into common simulation workflows for user-friendly and rapid geometry manipulation, within the FEA environment, with full-color illustrations and diagrams.
- Addresses fundamental principles and practical aspects of finite element modeling and simulation, with full-color visuals throughout.
- Incorporates numerous simulation case studies, demonstrated in a step-by-step manner.
- Comprises web-based simulation resources for ANSYS Workbench 18 examples.
- Offers analyses of trusses, beams, frames, aircraft stress and strain problems, plates and shells, 3-D design elements, and assembly structures, as well as analyses of thermal and fluid aspects. Dr. Xiaolin Chen is an associate professor of mechanical engineering and director of the Computer-Aided Engineering (CAE) Research Laboratory at Washington State University, Vancouver campus. She earned her BS in engineering mechanics from Shanghai Jiao Tong University, MS in mechanical design and theory from the State Key Laboratory of Mechanical System and Vibration affiliated with Shanghai Jiao Tong University, and her PhD in mechanical engineering from the University of Cincinnati. Her research interests include computational methods in solid mechanics, finite element analysis, boundary element analysis, reduced order modeling for dynamic systems, multiphysics phenomena and coupled-field problems, inverse problems, and regularization techniques.
Dr. Yijun Liu is a professor of Mechanical Engineering at the University of Cincinnati. He obtained his BS and MS in aerospace engineering from Northwestern Polytechnical University (China), and his PhD in theoretical and applied mechanics from the University of Illinois at Urbana-Champaign. Prior to joining the faculty, he conducted postdoctoral research at the Center of Nondestructive Evaluation of Iowa State University, and worked at Ford Motor Company as a CAE analyst. Dr. Liu’s interests lie in computational mechanics, finite element method, boundary element method, and fast multipole methods for modeling problems with composite materials, fracture, fatigue, structural dynamics, and acoustics.
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