Turbulent Flow Through Spacer Grids in Rod Bundles

Author:

Yang Sun Kyu1,Chung Moon Ki1

Affiliation:

1. Thermal Hydraulics Safety Research Team, Korea Atomic Energy Research Institute, Yusung, P.O. Box 105, Taejon, 305-600, Korea

Abstract

The effects of the spacer grids with mixing vanes in rod bundles on the turbulent structure were investigated experimentally. The detailed hydraulic characteristics in subchannels of a 5 × 5 rod bundle with mixing spacer grids were measured upstream and downstream of the spacer grid by using a one component LDV (Laser Doppler Velocimetry). Axial velocity and turbulent intensity, skewness factor, and flatness factor were measured. The turbulence decay behind spacer grids was obtained from measured data. The trend of turbulence decay behaves in a similar way as turbulent flow through mesh grids or screens. Pressure drop measurements were also performed to evaluate the loss coefficient for the spacer grid and the friction factor for a rod bundle.

Publisher

ASME International

Subject

Mechanical Engineering

Reference13 articles.

1. Measurement Uncertainty, Part-1, ANSI/ASME PTC 19.1, 1985, ASME Performance Test Codes: Supplement on Instruments and Apparatus.

2. Blasius, H., 1913, “The Law of Similarity for Frictional Processes in Fluids,” (originally in German), Forsch Arbeit Ingenieur-Wesen, Berlin, p. 131.

3. Comte-Bellot G. , and CorrsinS., 1966, “The Use of a Contraction to Improve the Isotropy of Grid-generated Turbulence,” Journal of Fluid Mechanics, Vol. 25, Part 4, pp. 657–682.

4. Laws, E. M., and Livesey, J. L., 1978, “Flow through Screens,” Annual Review of Fluid Mechanics, Vol. 10.

5. Rehme K. , 1973, “Pressure Drop Correlations for Fuel Element Spacers,” Nuclear Technology, Vol. 17, pp. 15–23.

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