Pressure drop and flow characteristics in partially blocked wire wrapped rod bundles
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering
Reference24 articles.
1. Pressure drop performance of rod bundles in hexagonal arrangements;Rehme;Int. J. Heat Mass Transf.,1972
2. Rehme, K. 1973. Pressure drop correlations for fuel element spacers. Nucl. Technol. 17(1) 15–23, 10.13182/NT73-A31250.
3. Hydrodynamic models and correlations for bare and wire-wrapped hexagonal rod bundles - Bundle friction factors, subchannel friction factors and mixing parameters;Cheng;Nucl. Eng. Des.,1986
4. Numerical implementation of the Cheng and Todreas correlation for wire wrapped bundle friction factors-desirable improvements in the transition flow region;Chen;Nucl. Eng. Des.,2013
5. PIV measurements of turbulent flows in a 61-pin wire-wrapped hexagonal fuel bundle;Nguyen;Int. J. Heat Fluid Flow,2017
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1. Fluid Dynamics Effects of a Porous Blockage on Laminar Flow in the Interior Subchannels of a 61-Pin Wire-Wrapped Rod Bundle;Nuclear Technology;2024-07-03
2. Assessment of RANS and LES in predicting the flow in a 61-pin wire-wrapped bundle with a porous blockage;Nuclear Engineering and Design;2023-12
3. Numerical study of the impact of blockages on the Thermal-Hydraulic performance of 19 and 61-pin Wire-Wrapped bundles with conjugate heat transfer using RANS;Annals of Nuclear Energy;2023-12
4. Neutronic-coupled thermal hydraulic analysis of flow blockage in the hottest wire-wrapped LBE-cooled fuel assembly;Nuclear Engineering and Design;2023-12
5. Experimental characterization of pressure and friction factor in an interior subchannel of a 61-pin wire-wrapped rod bundle with a porous blockage;Physics of Fluids;2023-11-01
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