1987Journal of Hydraulic EngineeringRequires access

Negatively Buoyant Flow in a Diverging Channel. I: Flow Regimes

Thomas Johnson, Gerard J. Farrell, Christopher R. Ellis, Heinz G. Stefan

Open publisher page 40 citations

Abstract

Negatively buoyant (plunging) flow entering a horizontal and diverging channel has been studied in the laboratory. Such flow is found at the heads of reservoirs and near effluent sites into lakes. Six flow regimes could be distinguished in the experiments. The flows are similar to nonbuoyant, twodimensional diffuser flow, but negative buoyancy adds several variations. The dependence of the flow regimes on the inflow channel aspect ratio, inflow densimetric Froude number, diffuser half‐angle, and channel‐to‐diffuser transition are presented. The experimental results can be used to predict if and where flow separation will occur and what flow regimes will be present.

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What this paper is about

Negatively buoyant (plunging) flow entering a horizontal and diverging channel has been studied in the laboratory. Such flow is found at the heads of reservoirs and near effluent sites into lakes. Six flow regimes could be distinguished in the experiments. The flows are similar to nonbuoyant, twodimensional diffuser flow, but negative buoyancy adds several variations. The dependence of the flow regimes on the inflow channel aspect ratio, inflow densimetric Froude number, diffuser half‐angle, and channel‐to‐diffuser transition are presented. The experimental results can be used to predict if and where flow separation will occur and what flow regimes will be present.

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Available abstract

Negatively buoyant (plunging) flow entering a horizontal and diverging channel has been studied in the laboratory. Such flow is found at the heads of reservoirs and near effluent sites into lakes. Six flow regimes could be distinguished in the experiments. The flows are similar to nonbuoyant, twodimensional diffuser flow, but negative buoyancy adds several variations. The dependence of the flow regimes on the inflow channel aspect ratio, inflow densimetric Froude number, diffuser half‐angle, and channel‐to‐diffuser transition are presented. The experimental results can be used to predict if and where flow separation will occur and what flow regimes will be present.

Key concepts: Froude number, Open-channel flow, Inflow, Diffuser (optics), Flow (mathematics), Buoyancy, Mechanics, Channel (broadcasting)

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