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- W2126362323 abstract "The experimental results, presented in this paper, demonstrate 3-dimensional and unsteady effects in cavitating flows. Two configurations were investigated, a single hydrofoil with swept leading edge and a radial pump impeller. Experiments were carried out at various flow and cavitation conditions and – in the case of the hydrofoil – for two different sweep angles of the leading edge. The results should serve, on one hand, for analysing the 3-dimensional and unsteady cavitation phenomena and, on the other hand, for the validation of a self-developed CFD-code for the calculation of cavitating flows in stationary 3-D configurations and in radial pumps (see part II of this paper). The cavitation occurring on the single hydrofoil is characterised by the type of cloud cavitation. The generation and periodical shedding of clouds is caused by the so called reentrant jet, a back flow near the surface of the hydrofoil, see [5][6]. The PIV-technique (particle image velocimetry) combined with the LIF-technique (laser induced fluorescence) enables to obtain information on the velocity field outside and inside the cavitation pocket on the hydrofoils. Using a special CCDequipment with two CCD-cameras, the location and extent of the vapour zones was determined simultaneously with the velocity field. With the aid of digital image processing, also information was provided on statistical characteristics of the cavitation fluctuations on the hydrofoils." @default.
- W2126362323 created "2016-06-24" @default.
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- W2126362323 date "2003-01-01" @default.
- W2126362323 modified "2023-09-26" @default.
- W2126362323 title "THREE-DIMENSIONAL UNSTEADY CAVITATION EFFECTS ON A SINGLE HYDROFOIL AND IN A RADIAL PUMP - MEASUREMENTS AND NUMERICAL SIMULATIONS; PART ONE: EXPERIMENTS" @default.
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