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Wave Propagation Approach for Structural Vibration - 9789811572364

Description: Wave Propagation Approach for Structural Vibration Please note: this item is printed on demand and will take extra time before it can be dispatched to you (up to 20 working days). Author(s): Chongjian Wu Format: Hardback Language: English Publisher: Springer Verlag, Singapore, Singapore Imprint: Springer Verlag, Singapore ISBN-13: 9789811572364, 978-9811572364 Synopsis This book is intended for researchers, graduate students and engineers in the fields of structure-borne sound, structural dynamics, and noise and vibration control. Based on vibration differential equations, it presents equations derived from the exponential function in the time domain, providing a unified framework for structural vibration analysis, which makes it more regular and normalized. This wave propagation approach (WPA) divides structures at "discontinuity points," and the waves show characteristics of propagation, reflection, attenuation, and waveform conversion. In each segment of the system between two "discontinuity points," the governing equation and constraint are expressed accurately, allowing the dynamic properties of complex systems to be precisely obtained. Starting with basic structures such as beams and plates, the book then discusses theoretical research on complicated and hybrid dynamical systems, and demonstrates that structural vibration can be analyzed from the perspective of elastic waves by applying WPA.

Price: 70.18 GBP

Location: Aldershot

End Time: 2025-01-12T09:32:53.000Z

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Wave Propagation Approach for Structural Vibration - 9789811572364

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Book Title: Wave Propagation Approach for Structural Vibration

Subject Area: Mechanical Engineering

Item Height: 235 mm

Item Width: 155 mm

Series: Springer Tracts in Mechanical Engineering

Author: Chongjian Wu

Publication Name: Wave Propagation Approach for Structural Vibration

Format: Hardcover

Language: English

Publisher: Springer Verlag, Singapore

Subject: Mechanics

Publication Year: 2020

Type: Textbook

Item Weight: 612 g

Number of Pages: 267 Pages

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