Acoustic Analyses Using Matlab® and Ansys®
Seiten
2014
Crc Press Inc (Verlag)
978-1-4822-2325-5 (ISBN)
Crc Press Inc (Verlag)
978-1-4822-2325-5 (ISBN)
This book describes the use of ANSYS finite element analysis software and MATLAB® to solve acoustic problems, from simple ones to those requiring FEA software. Along with instructions on mathematical modelling, software hints and MATLAB source code. See https://mecheng.adelaide.edu.au/avc/software/
This is the first book of its kind that describes the use of ANSYS® finite element analysis (FEA) software, and MATLAB® engineering programming software to solve acoustic problems. It covers simple text book problems, such as determining the natural frequencies of a duct, to progressively more complex problems that can only be solved using FEA software, such as acoustic absorption and fluid-structure-interaction. It also presents benchmark cases that can be used as starting points for analysis. There are practical hints too for using ANSYS software. The material describes how to solve numerous problems theoretically, and how to obtain solutions from the theory using MATLAB engineering software, as well as analyzing the same problem using ANSYS Workbench and ANSYS Mechanical APDL.
Free downloads are provided on http://www.mecheng.adelaide.edu.au/avc/software, including MATLAB source code, ANSYS APDL models, and ANSYS Workbench models
Includes readers’ techniques and tips for new and experienced users of ANSYS software
Identifies bugs and deficiencies to help practitioners avoid making mistakes
It can be used as a textbook for graduate students in acoustics, vibration, and related areas in engineering; undergraduates in mechanical and electrical engineering; and as an authoritative reference for industry professionals.
This is the first book of its kind that describes the use of ANSYS® finite element analysis (FEA) software, and MATLAB® engineering programming software to solve acoustic problems. It covers simple text book problems, such as determining the natural frequencies of a duct, to progressively more complex problems that can only be solved using FEA software, such as acoustic absorption and fluid-structure-interaction. It also presents benchmark cases that can be used as starting points for analysis. There are practical hints too for using ANSYS software. The material describes how to solve numerous problems theoretically, and how to obtain solutions from the theory using MATLAB engineering software, as well as analyzing the same problem using ANSYS Workbench and ANSYS Mechanical APDL.
Free downloads are provided on http://www.mecheng.adelaide.edu.au/avc/software, including MATLAB source code, ANSYS APDL models, and ANSYS Workbench models
Includes readers’ techniques and tips for new and experienced users of ANSYS software
Identifies bugs and deficiencies to help practitioners avoid making mistakes
It can be used as a textbook for graduate students in acoustics, vibration, and related areas in engineering; undergraduates in mechanical and electrical engineering; and as an authoritative reference for industry professionals.
Dr. Carl Howard is a Lecturer at the University of Adelaide. He has been a consultant with Vipac Engineers and Scientists, Worley, and Colin Gordon and Associates, and also worked at United Technologies Research Center. Dr Ben Cazzolato is an Associate Professor at the University of Adelaide. He has over two decades' experience as an acoustic consultant and academic researcher.
Introduction. Background. Ducts. Sound Inside a Rigid-Walled Cavity. Introduction to Damped Acoustic Systems. Sound Absorption in a Lined Duct. Room Acoustics. Radiation and Scattering. Fluid Structure Interaction. Bibliography. Index.
| Erscheint lt. Verlag | 18.12.2014 |
|---|---|
| Zusatzinfo | 74 Tables, black and white; 203 Illustrations, black and white |
| Verlagsort | Bosa Roca |
| Sprache | englisch |
| Maße | 156 x 234 mm |
| Gewicht | 1126 g |
| Themenwelt | Mathematik / Informatik ► Informatik ► Theorie / Studium |
| Technik ► Bauwesen | |
| Technik ► Maschinenbau | |
| ISBN-10 | 1-4822-2325-2 / 1482223252 |
| ISBN-13 | 978-1-4822-2325-5 / 9781482223255 |
| Zustand | Neuware |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
| Haben Sie eine Frage zum Produkt? |
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