Pressure measurements in a wire-wrapped 61-pin hexagonal fuel bundle
Autor: | Mason Childs, Saye Lee, N. Goth, P. Jones, Yassin A. Hassan, Rodolfo Vaghetto, D. T. Nguyen |
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Předmět: |
Pressure drop
Materials science Hexagonal crystal system Turbulence 020209 energy Mechanical Engineering Thermodynamics Reynolds number 02 engineering and technology Mechanics 01 natural sciences 010305 fluids & plasmas law.invention symbols.namesake Pressure measurement Creep law Bundle 0103 physical sciences 0202 electrical engineering electronic engineering information engineering symbols |
Zdroj: | Scopus-Elsevier |
Popis: | To achieve longer-life liquid-metal fast reactor cores, designers are considering to increase the wall gap of the wire-wrapped hexagonal fuel bundles to account for volumetric void swelling and radiation creep. A new wire-wrapped hexagonal test bundle has been constructed, with a wall gap larger than prior experiments, and experimental pressure drop data have been generated under laminar, transition, and turbulent flow regimes (corresponding to Re of 250–19,000), to complement the existing database of small wall gap experimental bundles. The comparison of the experimental data set with the predictions of four existing correlations (Baxi and Dalle Donne, Cheng and Todreas detailed (CTD), Kirillov, and Rehme) showed general agreement between data and the selected correlations. However, the CTD correlation most accurately predicted the experimental trend and the transition between flow regimes. The analysis of the experimental data also revealed that the larger wall gap size caused a lower bundle pressure drop due to the increased bypass flow area. |
Databáze: | OpenAIRE |
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