Large-Scale Pulsation Detection by Means of Temperature Measurements

Author:

Silin N.1,Masson V.1,Rauschert A.2

Affiliation:

1. Consejo Nacional de Investigaciones Científicas y Técnicas, Avenida Bustillo 9500 CAB, Bariloche, Río Negro 8400, Argentina

2. Comisión Nacional de Energía Atómica, Avenida del Libertador 8250, Buenos Aires 1429, Argentina

Abstract

In the present work we explore the potential of time-resolved temperature measurements to obtain information on large-scale pulsations in a rod bundle geometry with axial flow. Large-scale flow pulsation is the phenomenon that dominates the turbulent mixing between the subchannels of rod bundles, which explains why it is of great importance for the design or assessment of nuclear fuel elements. The objective of the present work is to determine the characteristics of large-scale pulsations that can be used for the verification or validation of computational fluid dynamics code results. The method proposed is to generate a temperature gradient across the location of flow pulsations and to measure the time-varying temperature field downstream. Pulsation characteristic times, lengths, and traveling speed have been obtained. This study has been performed in a rod bundle similar to a nuclear fuel assembly and the results obtained are in good agreement with previous works on similar geometries. The technique can be applied to obtain additional large-scale structure information in test sections designed for thermal measurements, in situations where convection is dominated by these structures.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference24 articles.

1. Rogers, J. T., and Rosehart, R. G., 1972, “Mixing by Turbulent Interchange in Fuel Bundles, Correlations and Inferences,” ASME Paper No. 72-HT-53.

2. Implications Concerning Rod Bundle Crossflow Mixing Based on Measurements of Turbulent Flow Structure;Rowe;Int. J. Heat Mass Transfer

3. Fully Developed Rod Bundle Flow Over a Large Range of Reynolds Number;Hooper;Nucl. Eng. Des.

4. The Structure of Turbulent Flow in a Rectangular Channel Containing a Cylindrical Rod–Part 1: Reynolds-Averaged Measurements;Guellouz;Exp. Therm. Fluid Sci.

5. Periodic Vortices in Flow Through Channels With Longitudinal Slots or Fins;Meyer

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