Random Excitation Forces in Heat Exchanger Tube Bundles

Author:

Taylor C. E.1,Pettigrew M. J.1

Affiliation:

1. Atomic Energy of Canada Limited, Chalk River Laboratories, Chalk River, Ontario K0J 1J0 Canada

Abstract

Random excitation forces can cause low-amplitude tube motion that will result in long-term fretting-wear or fatigue. To prevent these tube failures in heat exchangers, designers and troubleshooters must have guidelines that incorporate random or turbulent fluid forces. Experiments designed to measure fluid forces were conducted at the Chalk River Laboratories and at other laboratories worldwide. The data from these experiments were studied and collated, to determine suitable guidelines for random excitation forces. In this paper, a guideline for random excitation forces in single-phase cross flow is presented in the form of normalized spectra that are applicable to a wide range of flow conditions and tube frequencies. In particular, the experimental results used in this study were conducted over the full range of flow conditions found in the liquid region of a nuclear steam generator. The proposed guidelines are applicable to steam generators, condensers, reheaters and other shell-and-tube heat exchangers. They may be used for flow-induced vibration analysis of new or existing components, as input to vibration analysis computer codes and as specifications in procurement documents. [S0094-9930(00)00603-X]

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference17 articles.

1. Crandall, S. H., 1958, Random Vibration, Technology Press of MIT Wiley, New York, NY.

2. Meirovitch, L., 1967, Analytical Methods in Vibration, MacMillan, New York, NY.

3. Thomson, W. T., 1965, Vibration Theory and Applications, Prentice-Hall, Englewood Cliffs, NJ.

4. Pettigrew, M. J., and Gorman, D. J., 1973, “Experimental Studies on Flow-Induced Vibration to Support Steam Generator Design, Part 3: Vibration of Small Tube Bundles in Liquid and Two-Phase Cross Flow,” Proc. UKAEA/NPL International Symposium in Vibration Problems in Industry, Keswick, UK, Paper 426;

5. also, Atomic Energy of Canada Limited Report, AECL-5804.

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