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- W2313309733 abstract "We investigated the forced flow through a capillary vane consisting of two parallel plates in the compensated gravity environment of the drop tower Bremen. Capillary vanes are used in surface tension tanks to transport the propellant to the outlet and to provide a flow path for the bubblefree supply of the thruster. The theoretical approach with a one-dimensional Bernoulli equation leads to a non-linear ordinary differential equation for the radius of curvature along the free surface of the vane. Both laminar and entrance pressure losses were taken into account as well as the flow conditions before the inlet of the vane. The aim of the experiment was to determine the critical volume flux through the vane. Therefore, for each experiment a defined volume flux was applied and the resultant flow conditions (subcritical: stable surface at the sides; supercritical: unstable surfaces and gas ingestion at the outlet) was recorded on tape. The theory shows good agreement (± 10%) with the experiment data for a wide range of the non-dimensional parameters OHNESORGE number, gap ratio, and flow length. The maximum flow velocity can be predicted to prevent gas ingestion at the outlet which is undesired for applications in surface tension tanks." @default.
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- W2313309733 date "1998-07-13" @default.
- W2313309733 modified "2023-09-26" @default.
- W2313309733 title "Experimental investigation on flow rate limitations in open capillary vanes" @default.
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- W2313309733 doi "https://doi.org/10.2514/6.1998-3165" @default.
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