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- W2000474112 abstract "Abstract In order to evaluate the coolant cross-flow rate among subchannels of a wire-spaced FBR fuel subassembly, the three-dimensional Navier-Stokes equation was solved numerically for a detailed flow velocity distribution within several connected subchannels inside a subassembly, where consideration was focussed on setting up iteratively an approriate velocity field on boundary interfaces enclosing the subchannels under consideration as the boundary condition. Such subchannels may include a peripheral fuel pin. Some of the numerical results obtained are as follows: (1) In an annular channel coaxed with a wire-spaced fuel pin, the maximum azimuthal velocity component does not appear just at the upstream side of a wire spacer but it appears at the leading angle of 180° to the upstream side with respect to the wire-wrapping phase in a fully developed flow region apart from the entrance. (2) In a wire-spaced fuel pin bundle, the transverse velocity increases steeply in the vicinity of the upstream side of a wire-spacer, while it increases gradually with the development of wakes in the downstream side of a wire-spacer. (3) At the peripheral gaps the swirl flow is induced in the wire-wrapping direction along the inner surface of a wrapper tube and its circumferential evolution predicted in the present analysis is in good agreement with experimental data obtained by a MIT group." @default.
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- W2000474112 date "1982-04-01" @default.
- W2000474112 modified "2023-10-16" @default.
- W2000474112 title "Three-dimensional local coolant flow velocity field under the influence of wire-spacers in an FBR fuel subassembly" @default.
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- W2000474112 doi "https://doi.org/10.1016/0029-5493(82)90254-0" @default.
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