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Learn to master the full range of vibroacoustic simulation using both SEA and hybrid FEM/SEA methods
Vibroacoustic simulation is the discipline of modelling and predicting the acoustic waves and vibration of particular objects, systems, or structures. This is done through finite element methods (FEM) or statistical energy analysis (SEA) to cover the full frequency range. In the mid-frequency range, both methods must be combined into a hybrid FEM/SEA approach. By doing so, engineers can model full frequency vibroacoustic simulations in complex technical systems used in aircraft, trains, cars, ships, and satellites. Indeed, hybrid approaches are increasingly used in the automotive, aerospace, and rail industries.
Previously covered primarily in scientific journals, Vibroacoustic Simulation provides a practical approach that helps readers master the full frequency range of vibroacoustic simulation. Through a systematic approach, the book illustrates why both FEM and SEA are necessary in acoustic engineering and how both can be used in combination through hybrid methodologies. Striking a crucial balance between complex theories and practical applications, the text provides real-world examples of vibroacoustic simulation, such as fuselage simulation, interior-noise prediction for electric and combustion vehicles, train profiles, and more, to help elucidate the concepts described within.
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Vibroacoustic Simulation is a useful reference for acoustic and mechanical engineers working in the automotive, aerospace, defense, or rail industries, as well as researchers and graduate students studying acoustics.
Author: Alexander Peiffer
ISBN-10: 1119849845
ISBN-13: 9781119849841
Publisher: Wiley
Language: English
Published: 05/17/2022
Pages: 480
Format: Hardcover
Weight: 2.28lbs
Size: 10.00h x 7.00w x 1.06d
Alexander Peiffer, PhD, is Head of Team Whole Vehicle Acoustics of Electric Platforms and Active Systems at Audi AG. He has over 20 years' experience in technical acoustics and industrial research, focusing on statistical energy analysis methods and finite element simulation. He previously held positions as Head of Vibroacoustics and Dynamics and Head of Noise and Vibration Control at Airbus Group Innovations and serves as a guest lecturer for industrial acoustics courses at Technical University-Munich.
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