A Design Guideline for Random Excitation Forces Due to Two-Phase Cross Flow in Tube Bundles

Author:

Taylor Colette E.1,Pettigrew Michel J.2

Affiliation:

1. Canadian Nuclear Laboratories, 1249 Victoria St., Petawawa, ON K8H 2E8, Canada

2. Principal Research Engineer Emeritus Canadian Nuclear Laboratories, Chalk River, ON K0J 1J0, Canada

Abstract

Abstract This paper re-examines the available experimental data to investigate the random excitation forces that affect tube bundles exposed to two-phase cross flow. Much of the experimental data generated over the past four decades have been gathered in an attempt to understand the parametric dependence of the random two-phase forces. The data include air–water, steam–water and various Freons used in a variety of test sections with either strain gages to measure the tube amplitude or force transducers to measure the reaction forces. A review of previous work in this area finds that some authors claim a strong flow regime dependence while others suggest that this dependence is weak. This work takes a detailed look at this discrepancy and finds that a single design guideline does not adequately bound all flow regimes. As a result, two dimensionless upper bounds are proposed.

Publisher

ASME International

Subject

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

Reference34 articles.

1. Random Excitation Forces in Tube Bundles Subjected to Two-Phase Cross-Flow;ASME J. Pressure Vessel Technol.,1996

2. Vibration of Tube Bundles in Two-Phase Cross-Flow: Part 3—Turbulence-Induced Excitation;ASME J. Pressure Vessel Technol.,1989

3. The Effects of Bundle Geometry on Heat Exchanger Tube Vibration in Two-Phase Cross Flow;ASME J. Pressure Vessel Technol.,2001

4. Taylor, C. E., 1994, “ Random Excitation Forces in Tube Arrays Subjected to Water and Air-Water Cross Flow,” Ph.D. thesis, University of Toronto, Toronto, ON.

5. Vibration of a Triangular Tube Bundle in Two-Phase Freon Cross Flow;ASME J. Pressure Vessel Technol.,1995

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