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- W2330332023 abstract "The rapid filling of closed conduits containing trapped air may result in severe pressure fluctuations associated with air compression; most numerical models of the filling process ignore the presence of the air. While some models have incorporated air-water interactions, most of these are based on lumped-inertia and assume well defined air-water interfaces. It is expected that air will be distributed along large diameter conduits and a relevant question is whether the assumption concentrated air at specific locations affects model predictions. This study compares predictions from two models that account for air pressurization, and from a model that disregards the air phase, with experimental results from rapid filling pipes with no ventilation. While the pressure peaks predicted by the two models that incorporate air pressure were similar, the discretized model incorporated more air-water interactions than the lumped inertia model. In contrast, peak pressures predicted by the model that disregards air phase were far larger than the ones observed in experiments and unrelated to the measurements." @default.
- W2330332023 created "2016-06-24" @default.
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- W2330332023 date "2011-05-19" @default.
- W2330332023 modified "2023-09-28" @default.
- W2330332023 title "Modeling Approaches for the Rapid Filling of Closed Conduits with Entrapped Air" @default.
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- W2330332023 doi "https://doi.org/10.1061/41173(414)362" @default.
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