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- W4242376930 abstract "This report evaluates mathematical models that may be used to predict the flow and temperature distributions resulting from heated surface discharges from power-plant outfalls. Part One discusses the basic physics of surface-plume dispersion and provides a critical review of 11 of the most popular and promising plume models developed to predict the near- and complete-field plume. The principal conclusion of the report is that the available models, in their present stage of development, may be used to give only general estimates of plume characteristics; precise predictions are not currently possible. The Shirazi-Davis and Pritchard (No. 1) models appear superior to the others tested and are capable of correctly predicting general plume characteristics. (The predictions show roughly factor-of-two accuracy in centerline distance to a given isotherm, factor-of-two accuracy in plume width, and factor-of-five accuracy in isotherm areas.) The state of the art can best be improved by pursuing basic laboratory studies of plume dispersion along with further development of numerical-modeling techniques." @default.
- W4242376930 created "2022-05-12" @default.
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- W4242376930 date "1975-05-01" @default.
- W4242376930 modified "2023-09-29" @default.
- W4242376930 title "Water Resources Research Program. Surface thermal plumes: evaluation of mathematical models for the near and complete field" @default.
- W4242376930 doi "https://doi.org/10.2172/7145081" @default.
- W4242376930 hasPublicationYear "1975" @default.
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