Advanced Computational Vibroacoustics: Reduced-Order Models and Uncertainty Quantification (Hardback) 🔍
Ohayon, Roger, Soize, Christian Cambridge University Press (Virtual Publishing), 1, 2014
英语 [en] · PDF · 2.8MB · 2014 · 📘 非小说类图书 · 🚀/zlib · Save
描述
This book presents an advanced computational method for the prediction of sound and structural vibrations, complex structural acoustics and fluid-structure interaction systems encountered in aerospace, automotive, railway, naval, and energy-production industries. Written for the global market, it is an invaluable resource for researchers, students, and engineers.
备选作者
Roger Ohayon; Christian Soize
备选作者
Christian Soize; R Ohayon
备用出版商
RCOG Press
备用版本
Cambridge University Press, New York, 2014
备用版本
United Kingdom and Ireland, United Kingdom
备用版本
Online-ausg, New York, 2014
备用版本
1, 2022
备用版本
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备用描述
Advanced Computational Vibroacoustics presents an advanced computational method for the prediction of sound and structural vibrations, in low- and medium-frequency ranges - complex structural acoustics and fluid-structure interaction systems encountered in aerospace, automotive, railway, naval, and energy-production industries. The formulations are presented within a unified computational strategy and are adapted for the present and future generation of massively parallel computers. A reduced-order computational model is constructed using the finite element method for the damped structure and the dissipative internal acoustic fluid (gas or liquid with or without free surface) and using an appropriate symmetric boundary-element method for the external acoustic fluid (gas or liquid). This book allows direct access to computational methods that have been adapted for the future evolution of general commercial software. Written for the global market, it is an invaluable resource for academic researchers, graduate students, and practising engineers.
备用描述
Advanced Computational Vibroacoustics presents an advanced computational method for the prediction of sound and structural vibrations, in low- and medium-frequency ranges—complex structural acoustics and fluid-structure interaction systems encountered in aerospace, automotive, railway, naval, and energy-production industries. The formulations are presented within a unified computational strategy and are adapted for the present and future generation of massively parallel computers. A reduced-order computational model is constructed using the finite element method for the damped structure and the dissipative internal acoustic fluid (gas or liquid with or without free surface) and using an appropriate symmetric boundary-element method for the external acoustic fluid (gas or liquid). This book allows direct access to computational methods that have been adapted for the future evolution of general commercial software. Written for the global market, it is an invaluable resource for academic researchers, graduate students, and practicing engineers.
开源日期
2024-01-08
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