• Chinese Journal of Ship Research
  • Vol. 17, Issue 6, 70 (2022)
Qiongfang YANG1, Rui WU2, Minmin ZHENG2, Xuequan MA2..., Heng LIU2 and Yilin YANG2|Show fewer author(s)
Author Affiliations
  • 1College of Power Engineering, Naval University of Engineering, Wuhan 430033, China
  • 2Shanghai Ship and Shipping Research Institute Co., Ltd., Shanghai 200137, China
  • show less
    DOI: 10.19693/j.issn.1673-3185.02600 Cite this Article
    Qiongfang YANG, Rui WU, Minmin ZHENG, Xuequan MA, Heng LIU, Yilin YANG. New method for predicting full-scale power performance of pumpjet propulsion system based on statistical learning[J]. Chinese Journal of Ship Research, 2022, 17(6): 70 Copy Citation Text show less
    References

    [1] BUGALSKI T, HOFFMANN P. Numerical simulation of the selfpropulsion model tests[C]Second International Symposium on Marine Propulss. Hamburg, Germany: [s. n. ], 2011: TA43.

    [2] TAKAI T. Simulation based design f highspeed sealift with waterjets by high fidelity URANS approach[D]. Iowa: University of Iowa, 2010.

    [3] A ESLAMDOOST, L LARSSON, R BENSOW. Analysis of the thrust deduction in waterjet propulsion–the Froude number dependence. Ocean Engineering, 152, 100-112(2018).

    [4] BULTEN N W H. Numerical analysis of a waterjet propulsion system[D]. Eindhoven: Technische Universiteit Eindhoven, 2006.

    [5] ESLAMDOOST A. Investigations of waterjet hull interaction effects[D]. Gothenburg: Chalmers University of Technology, 2012.

    [6] CDI Marine Company. Waterjet pump nozzle assembly designed f main propulsion of an advanced 50 knots monohull cargo ship[R]. [S. l. ]: Califnia State University CCDoTT Rept No. 7488, 2003.

    [7] HOYT J III, CHOI G I, LAMBERTI B, et al. The specialist committee on waterjets: final rept recommendations to the 22nd ITTC[C] Proceedings of the 22nd International Towing Tank Conference. herls: ITTC, 1999.

    [8] TERWISGA T J C, HOYT III J G, ZANGENEH M, et al. The specialist committee on validation of waterjet test procedures: final rept recommendations to the 23rd ITTC[C] Proceedings of the 23rd International Towing Tank Conference. herls: ITTC, 2002.

    [9] ZANGENEH M, CHOI G I, OLOFFSON N, et al. The specialist committee on validation of waterjet test procedures: final rept recommendations to the 24th ITTC[C]Proceedings of the 24th International Towing Tank Conference. Edinburgh, UK: ITTC , 2005.

    [10] WOUD H K, STAPERSMA D. Design of propulsion electric power generation systems[M]. London: The Institute of Marine Engineers, 2002.

    [12] ALLISON J L. Marine waterjet propulsion[M]. New Yk: SNAME Annual Meeting, 1993.

    [13] BRENNEN C E. Hydrodynamics of pumps[M]. Nwich, VT, USA: Concepts ETI Inc. , 1994.

    [15] M ALTOSOLE, G BENVENUTO, M FIGARI et al. Dimensionless numerical approaches for the performance prediction of marine waterjet propulsion units. International Journal of Rotating Machinery, 2012, 321306(2012).

    [16] CDI Marine Company, Systems Development Division. Waterjet selfpropulsion model test f application to a highspeed sealift ship, center f the commercial deployment of transptation technologies (CCDoTT)[R]. Los Angeles, CA: Califnia State University, 2007.

    Qiongfang YANG, Rui WU, Minmin ZHENG, Xuequan MA, Heng LIU, Yilin YANG. New method for predicting full-scale power performance of pumpjet propulsion system based on statistical learning[J]. Chinese Journal of Ship Research, 2022, 17(6): 70
    Download Citation