000 02428cam a2200277zu 4500
001 88849207
003 FRCYB88849207
005 20250107221732.0
006 m o d
007 cr un
008 250107s2017 fr | o|||||0|0|||eng d
020 _a9780128092743
035 _aFRCYB88849207
040 _aFR-PaCSA
_ben
_c
_erda
100 1 _aBlake, William K.
245 0 1 _aMechanics of Flow-Induced Sound and Vibration, Volume 2
_bComplex Flow-Structure Interactions
_c['Blake, William K.']
264 1 _bElsevier Science
_c2017
300 _a p.
336 _btxt
_2rdacontent
337 _bc
_2rdamdedia
338 _bc
_2rdacarrier
650 0 _a
700 0 _aBlake, William K.
856 4 0 _2Cyberlibris
_uhttps://international.scholarvox.com/netsen/book/88849207
_qtext/html
_a
520 _aMechanics of Flow-Induced Sound and Vibration, Volume 2: Complex Flow-Structure Interactions, Second Edition, enables readers to fully understand flow-induced vibration and sound, unifying the disciplines of fluid dynamics, structural dynamics, vibration, acoustics, and statistics in order to classify and examine each of the leading sources of vibration and sound induced by various types of fluid motion. Starting from classical theories of aeroacoustics and hydroacoustics, a formalism of integral solutions valid for sources near boundaries is developed and then broadened to address different source types, including hydrodynamically induced cavitation and bubble noise, turbulent wall-pressure fluctuations, pipe and duct systems, lifting surface flow noise and vibration, and noise from rotating machinery. Each chapter is illustrated with comparisons of leading formulas and measured data. Combined with its companion book, Mechanics of Flow-Induced Sound and Vibration, Volume 1: General Concepts and Elementary Sources, the book covers everything an engineer needs to understand flow-induced sound and vibration. This book will be a vital source of information for postgraduate students, engineers and researchers with an interest in aerospace, ships and submarines, offshore structures, construction, and ventilation.Presents every important topic in flow-induced sound and vibrationCovers all aspects of the topics addressed, from fundamental theory, to the analytical formulas used in practiceProvides the building blocks of computer modeling for flow-induced sound and vibration
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_d66279