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Dynamic model for axial motion of horizontal pelton turbine and validation in actual failure case

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hdl:2117/342661
Document typeArticle
Defense date2020-01-01
Rights accessOpen Access
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Attribution-NonCommercial-NoDerivs 3.0 Spain
Abstract
Pelton turbines are important machines for power generation from a renewable energy source such as water. For power rates below 20 MW, the rotor of Pelton turbines is usually in horizontal position. Considering ideal mounting and operating conditions, there are no axial forces acting on the rotor. In practice, there is an hydraulic force due to the difference between nozzle centerline and bucket centerline, and there is a magnetic force due to the difference between axial position of stator and rotor magnetic field centers. &ese forces are supported by bearings. In this article, a nonlinear dynamic model considering these axial forces and bearings behavior is presented and solved for two different actual Pelton turbines. &e nonlinear dynamic model allows determining and evaluating the source of axial motion and therefore provides valuable information in order to reduce it when the axial displacement is high enough to produce damage.
CitationRodriguez, C. [et al.]. Dynamic model for axial motion of horizontal pelton turbine and validation in actual failure case. "Shock and vibration", 1 Gener 2020, vol. 2020, p. 88119617/1-8811961/16.
ISSN1070-9622
Publisher versionhttps://www.hindawi.com/journals/sv/2020/8811961/
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