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- W2020073588 abstract "Abstract The paper reports on the application of a 3-D finite-volume method employing an orthogonal, cylindrical-polar body-fitted grid and the standard K−g3 turbulence model to the calculation of flow and plume spreading past surface-mounted circular structures. Calculations are presented for two idealized laboratory situations, one being the flow around a circular cylinder of height-to-diameter ratio 1.9 immersed in a simulated atmospheric boundary layer and the other the flow past a model cooling tower with ratio of plume exit to cross-flow velocity of 1.67 and with an inert tracer added to study the plume spreading. Comparison with experimental results establishes the capability of the numerical model to reproduce many of the complex flow features in the vicinity of cylindrical structures and also of the plume spreading. Certain discrepancies between calculations and experiments point to the need for a more refined treatment of the boundary layer developing on the ground, a better numerical resolution, and the use of an H-grid instead of a polar grid when plume spreading is to be studied." @default.
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- W2020073588 title "Three-dimensional computation of flow past cylindrical structures and model cooling towers" @default.
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- W2020073588 doi "https://doi.org/10.1016/0360-1323(89)90012-7" @default.
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