Joint and Cross Acceptances for Cross-Flow-Induced Vibration—Part II: Charts and Applications

[+] Author and Article Information
M. K. Au-Yang

Framatome Technologies, 155 Mill Ridge Road, Lynchburg, VA 24502-4341 e-mail: MK_Au-Yang@Framatech.com

J. Pressure Vessel Technol 122(3), 355-361 (Apr 13, 2000) (7 pages) doi:10.1115/1.556192 History: Received March 15, 2000; Revised April 13, 2000
Copyright © 2000 by ASME
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Au-Yang,  M. K., 2000, “Joint and Cross Acceptances for Cross Flow-Induced Vibration Part I—Theoretical and Finite-Element Formulations,” ASME J. Pressure Vessel Technol., 122, pp. 349–354.
Powell,  A., 1958, “On the Fatigue Failure of Structures due to Vibrations Excited by Random Pressure Fields,” J. Acoust. Soc. Am., 30, No. 12, pp. 1130–1135.
Au-Yang,  M. K., 1987, “Development of Stabilizers for Steam Generator Tube Repair,” Nucl. Eng. Des., 107, pp. 189–197.
Au-Yang,  M. K., 1986, “Turbulent Buffeting of a Multi-Span Tube Bundle,” ASME J. Vib. Acoust. Stress, Reliab. Des., 108, pp. 150–154.
Pettigrew, M. J., and Gorman, D. J., 1981, “Vibration of Heat Exchanger Tube Bundles in Liquid and Two-Phase Cross Flow,” Flow-Induced Vibration Design Guidelines, Chen, P. Y., ed., pp. 89–110. ASME PVP-Vol. 52.


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Span joint acceptance J11 for various boundary conditions (λ=lc/2)
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Span joint acceptance for spring-supported beam (λ=lc/2)
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Span joint and cross acceptances for simply supported beam (λ=lc/2; see also footnote2)
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Span joint acceptances for clamped beam (λ=lc/2; see also footnote2)
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Span joint and cross acceptances for cantilever beam (λ=lc/2; see also footnote2 )
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Frequencies and mode shapes of a multi-span heat exchanger tube
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Response of three-span beam to turbulence



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