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Träfflista för sökning "WFRF:(Yao Yingxue) "

Sökning: WFRF:(Yao Yingxue)

  • Resultat 1-5 av 5
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1.
  • Wu, Jinming, et al. (författare)
  • Latching and Declutching Control of the Solo Duck Wave-Energy Converter with Different Load Types
  • 2017
  • Ingår i: Energies. - : MDPI AG. - 1996-1073. ; 10:12
  • Tidskriftsartikel (refereegranskat)abstract
    • The solo duck wave-energy converter (WEC) captures power in a point absorber manner, hence it exhibits high power-capture efficiency within only a narrow bandwidth. Passive control is characterized by a unidirectional power flow, and thus its engineering implementation can be simplified. In this paper, two typical passive control strategies, latching and declutching control, are applied to the solo duck WEC to improve its power-capture performance at wave periods larger and smaller than the natural period of the WEC, respectively. Special attention is paid to the peak value of instantaneous WEC performance parameters, including the peak motion excursion, the peak power take-off (PTO) moment, and the peak-to-average power ratio, when the captured power is maximized. Performance differences between the linear and coulomb loads are also investigated. Results show that both latching and declutching control can effectively improve captured power, but also incidentally increase the peak motion excursion and peak-to-average power ratio. When under latching and declutching control, the coulomb load leads to the same maximum relative capture width and peak motion excursion as the linear load, but presents smaller peak PTO moment and peak-to-average power ratio than the linear load, hence making the coulomb load the better choice for the solo duck WEC.
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2.
  • Wu, Jinming, et al. (författare)
  • Numerical and Experimental Study of the Solo Duck Wave Energy Converter
  • 2019
  • Ingår i: Energies. - : MDPI. - 1996-1073. ; 12:10
  • Tidskriftsartikel (refereegranskat)abstract
    • The Edinburgh Duck is one of the highly-efficient wave energy converters (WECs). Compared to the spine-connected Duck configuration, the solo Duck will be able to use the point absorber effect to enhance its power capture performance. In this paper, a 3D computational fluid dynamic (CFD) model is developed to predict the hydrodynamic performance of the solo Duck WEC in regular waveswithin a wide range ofwave steepness until the Duck capsizes. A set of experiments was designed to validate the accuracy of the CFD model. Boundary element method (BEM) simulations are also performed for comparison. CFD results agree well with experimental results and the main difference comes from the friction in the mechanical transmission system. CFD results also agree well with BEM results and differences appear at large wave steepness as a result of two hydrodynamic nonlinear factors: the nonlinear waveform and the vortex generation process. The influence of both two nonlinear factors iscombined to be quantitatively represented by the drag torque coefficient.The vortex generation process is found to cause a rapid drop of the pressure force due to the vortexes taking away the kinetic energy from the fluid.
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3.
  • Wu, Jinming, et al. (författare)
  • Optimizing the Performance of Solo Duck Wave Energy Converter in Tide
  • 2017
  • Ingår i: Energies. - : MDPI AG. - 1996-1073. ; 10:3
  • Tidskriftsartikel (refereegranskat)abstract
    • The high efficiency performance of the Edinburgh Duck wave energy converter (WEC) in 2D regular wave tests makes it a promising wave energy conversion scheme. A solo Duck WEC will be able to apply the point absorber effect to further enhance its performance. Since released degree of freedom will decrease the efficiency, a Duck WEC with fixed pitching axis will be a better option. However, for fixed supported WECs, tide is a non-ignorable consideration. In this paper, a movable mass method is utilized in the whole tidal range to not only balance the Duck to appropriate beak angles, but also follow the variation of hydrodynamic coefficients to keep cancelling the reactance of the system impedance so that complex conjugate control can be realized to optimize the power capture performance of the Duck WEC in tide. Results show that the beak angle should be adjusted to as large a value as possible so that the response amplitude of the Duck at maximum relative capture width will be reasonable small, and the lowest weight of the movable mass is found when its designed position locates at the center of the Duck profile.
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5.
  • Wu, Jinming, et al. (författare)
  • Performance analysis of solo Duck wave energy converter arrays under motion constraints
  • 2017
  • Ingår i: Energy. - : Elsevier BV. - 0360-5442 .- 1873-6785. ; 139, s. 155-169
  • Tidskriftsartikel (refereegranskat)abstract
    • This paper studies the power capture performance of solo Duck wave energy converter (WEC) arrays. The barrier function method combined with a quasi-Newton BFGS optimization algorithm is applied to find the maximum captured power of the array when the Ducks are under motion constraints. Based on this optimized maximum captured power, the effects of separation distance, wave period, incident wave direction and Duck width on the array performance are investigated. For the two Ducks array, results show that the alternative constructive and destructive interaction stripes in the contour plot of the q-factor variation with non-dimensional separation distance are resulted from the diffracted wave pattern from each Duck, and the hydrodynamic interaction strength is reduced when constraints affect the performance. For the three Ducks array, the middle Duck shows larger variability of captured power than the side Ducks due to experiencing double in phase diffracted wave from the side ones. The captured power of the solo Duck WEC array is sensitive to incident wave direction, and arrays with Ducks of smaller width are found to have better performance in power capture efficiency.
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  • Resultat 1-5 av 5
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tidskriftsartikel (5)
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refereegranskat (5)
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Göteman, Malin, 1980 ... (5)
Wu, Jinming (5)
Yao, Yingxue (5)
Zhou, Liang (4)
Li, Wei, 1984- (2)
Li, Wei (1)
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Yu, Huifeng (1)
Chen, Ni (1)
Sun, Dongke (1)
Ni, Zhonghua (1)
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