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010 ▼a 2021043870
020 ▼a 1119810981 ▼q electronic book
020 ▼a 9781119810971 ▼q electronic book
020 ▼a 1119810973 ▼q electronic book
020 ▼a 9781119810995 ▼q electronic book
020 ▼a 111981099X ▼q electronic book
020 ▼a 9781119810988 ▼q (electronic bk.)
020 ▼z 9781119810964 ▼q hardcover
0247 ▼a 10.1002/9781119810995 ▼2 doi
035 ▼a 3077399 ▼b (N$T)
035 ▼a (OCoLC)1284932170
040 ▼a DLC ▼b eng ▼e rda ▼c DLC ▼d DG1 ▼d OCLCF ▼d OCLCO ▼d YDX ▼d UPM ▼d N$T ▼d OCLCQ ▼d OCLCO ▼d OCLCL ▼d 248032
042 ▼a pcc
049 ▼a MAIN
05004 ▼a TP156.F6 ▼b F65 2022
08200 ▼a 532/.5 ▼2 23/eng/20211108
24500 ▼a Flow-induced vibration handbook for nuclear and process equipment / ▼c Michel J. Pettigrew, Colette E. Taylor, Nigel J. Fisher.
260 ▼a Hoboken, NJ : ▼b John Wiley & Sons, Inc., ▼c [2022]
300 ▼a 1 online resource (xix, 471 pages) : ▼b illustrations (some color).
336 ▼a text ▼b txt ▼2 rdacontent
337 ▼a computer ▼b c ▼2 rdamedia
338 ▼a online resource ▼b cr ▼2 rdacarrier
4901 ▼a Wiley-ASME Press series
504 ▼a Includes bibliographical references and index.
5050 ▼a Front Matter -- Introduction and Typical Vibration Problems / Michel J Pettigrew -- Flow-Induced Vibration of Nuclear and Process Equipment / Michel J Pettigrew, Colette E Taylor -- Flow Considerations / John M Pietralik, Liberat N Carlucci, Colette E Taylor, Michel J Pettigrew -- Hydrodynamic Mass, Natural Frequencies and Mode Shapes / Daniel J Gorman, Colette E Taylor, Michel J Pettigrew -- Damping of Cylindrical Structures in Single-Phase Fluids / Michel J Pettigrew -- Damping of Cylindrical Structures in Two-Phase Flow / Michel J Pettigrew, Colette E Taylor -- Fluidelastic Instability of Tube Bundles in Single-Phase Flow / Michel J Pettigrew, Colette E Taylor -- Fluidelastic Instability of Tube Bundles in Two-Phase Flow / Michel J Pettigrew, Colette E Taylor -- Random Turbulence Excitation in Single-Phase Flow / Colette E Taylor, Michel J Pettigrew -- Random Turbulence Excitation Forces Due to Two-Phase Flow / Colette E Taylor, Michel J Pettigrew -- Periodic Wake Shedding and Acoustic Resonance / David S Weaver, Colette E Taylor, Michel J Pettigrew -- Assessment of Fretting-Wear Damage in Nuclear and Process Equipment / Michel J Pettigrew, Metin Yetisir, Nigel J Fisher, Bruce A W Smith, Victor P Janzen -- Fretting-Wear Damage Coefficients / Nigel J Fisher, Fabrice M Gurout -- Appendix A: Component Analysis.
520 ▼a "Flow-induced vibration is the term for the phenomena of vibration and noise that is caused by fluid flow. Excessive flow-induced vibrations can cause fatigue or failure in process and plant equipment, which can in turn lead to operational disruptions, lost production, and costly repairs. Mechanical engineers can help avoid these issues by performing a flow-induced vibration analysis during the design phase of a project. Industries that employ plants with high capital costs, such as the nuclear, power, petrochemical, and aerospace industries, have a particular interest in understanding and mitigating flow-induced vibrations"-- ▼c Provided by publisher.
588 ▼a Description based on online resource; title from digital title page (viewed on September 27, 2022).
590 ▼a Added to collection customer.56279.3
650 0 ▼a Hydrodynamics.
650 0 ▼a Pressure vessels ▼x Fluid dynamics.
650 0 ▼a Pressure vessels ▼x Vibration.
650 0 ▼a Piping ▼x Fluid dynamics.
650 0 ▼a Chemical plants ▼x Piping ▼x Vibration.
650 0 ▼a Nuclear power plants ▼x Piping ▼x Vibration.
650 0 ▼a Pipe ▼x Fluid dynamics.
650 6 ▼a Hydrodynamique.
650 6 ▼a Re?cipients sous pression ▼x Vibrations.
650 6 ▼a Tuyauterie ▼x Dynamique des fluides.
650 6 ▼a Usines chimiques ▼x Tuyauterie ▼x Vibrations.
650 6 ▼a Centrales nucle?aires ▼x Tuyauterie ▼x Vibrations.
650 7 ▼a Hydrodynamics ▼2 fast
650 7 ▼a Piping ▼x Fluid dynamics ▼2 fast
650 7 ▼a Pressure vessels ▼x Fluid dynamics ▼2 fast
7001 ▼a Pettigrew, M. J., ▼e editor.
7001 ▼a Taylor, Colette E., ▼e editor.
7001 ▼a Fisher, N. J. ▼q (Nigel John), ▼d 1959-, ▼e editor.
758 ▼i has work: ▼a Flow-induced vibration handbook for nuclear and process equipment (Text) ▼1 https://id.oclc.org/worldcat/entity/E39PCGMwq4BhPJq396KfF9tR8C ▼4 https://id.oclc.org/worldcat/ontology/hasWork
77608 ▼i Print version: ▼t Flow-induced vibration handbook for nuclear and process equipment ▼b First edition. ▼d Hoboken, NJ : John Wiley & Sons, Inc., 2022 ▼z 9781119810964 ▼w (DLC) 2021043869
830 0 ▼a Wiley-ASME Press series.
85640 ▼3 EBSCOhost ▼u https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=3077399
938 ▼a EBSCOhost ▼b EBSC ▼n 3077399
990 ▼a 관리자
994 ▼a 92 ▼b N$T