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Numerical Analysis of Pelton Nozzle Jet Flow Behavior Considering Elbow Pipe

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Published under licence by IOP Publishing Ltd
, , Citation Zeng Chongji et al 2016 IOP Conf. Ser.: Earth Environ. Sci. 49 022005 DOI 10.1088/1755-1315/49/2/022005

1755-1315/49/2/022005

Abstract

In Pelton turbine, the dispersion of cylindrical jet have a great influence on the energy interaction of jet and buckets. This paper simulated the internal flow of nozzle and the downstream free jet flow at 3 different needle strokes. The nozzle model consists of the elbow pipe and the needle rod which supported by 4 ribs. Homogenous model and SST k-ω model were adopted to simulate the unsteady two-phase jet flow. The development of free flow, including a contraction process followed by an expansion process, was analysed detailed as well as the influence of the nozzle geometry on the jet flow pattern. The increase of nozzle opening results in a more dispersion jet, which means a higher hydraulic loss. Upstream bend and ribs induce the secondary flow in the jet and decrease the jet concentration.

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