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    Comparative study on the prediction of speed-power-rpm of the KVLCC2 in regular head waves using model tests

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    https://www.riss.kr/link?id=A107270597

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    This paper predicts the speed-power-rpm relationship in regular head waves using various indirect methods: load variation, direct powering, resistance and thrust identity, torque and revolution, thrust and revolution, and Taylor expansion methods. The subject ship is KVLCC2. The wave conditions are the regular head waves of l/LPP ¼ 0.6 and 1.0 with three wave steepness ratios at three ship speeds of 13.5, 14.5 and 15.5 knots (design speed). In the case of l/LPP ¼ 0.6 at design speed, two more wave steepness ratios have been taken into consideration. The indirect methods have been evaluated through comparing the speed-power-rpm relationships with those obtained from the resistance and self-propulsion tests in calmwater and inwaves. The load variation method has been applied to predict propulsive performances in waves, and to derive overload factors (ITTC, 2018). The overload factors have been applied to obtain propulsive efficiency and propeller revolution. The thrust and revolution method (ITTC, 2014) has been modified.
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    This paper predicts the speed-power-rpm relationship in regular head waves using various indirect methods: load variation, direct powering, resistance and thrust identity, torque and revolution, thrust and revolution, and Taylor expansion methods. The...

    This paper predicts the speed-power-rpm relationship in regular head waves using various indirect methods: load variation, direct powering, resistance and thrust identity, torque and revolution, thrust and revolution, and Taylor expansion methods. The subject ship is KVLCC2. The wave conditions are the regular head waves of l/LPP ¼ 0.6 and 1.0 with three wave steepness ratios at three ship speeds of 13.5, 14.5 and 15.5 knots (design speed). In the case of l/LPP ¼ 0.6 at design speed, two more wave steepness ratios have been taken into consideration. The indirect methods have been evaluated through comparing the speed-power-rpm relationships with those obtained from the resistance and self-propulsion tests in calmwater and inwaves. The load variation method has been applied to predict propulsive performances in waves, and to derive overload factors (ITTC, 2018). The overload factors have been applied to obtain propulsive efficiency and propeller revolution. The thrust and revolution method (ITTC, 2014) has been modified.

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    참고문헌 (Reference)

    1 Berlekom, W. B. Van, "Wind forces on modern ship forms-effects on performance" 97 : 123-134, 1981

    2 McCarthy, J. H., "The Performance of a Submerged Propeller in Regular Waves" David Taylor Model Basin 1961

    3 Kwon, Y. J., "Speed Loss Due to Added Resistance in Wind and Waves" 14-16, 2008

    4 Nakamura, S., "Propulsive performance of a container ship in waves" 158 : 24-47, 1975

    5 Chuang, Z., "Prediction of speed loss of a ship in waves" M. Abdel-Maksoud 1-8, 2011

    6 Seo, J. H., "Power increase and propulsive characteristics in regular head waves of KVLCC2 using model tests" 216 : 1-12, 2020

    7 ITTC, "ITTC-recommended procedures and guidelines. Analysis of Speed/Power Trial Data ITTC, 7.5-04-01-01.2"

    8 ITTC, "ITTC-recommended Procedures and Guidelines. Testing and extrapolation methods resistance: resistance test 7.5-02-02-01"

    9 ITTC, "ITTC-recommended Procedures and Guidelines. Prediction of power increase in irregular waves from model test 7.5-02-07-02.2"

    10 ITTC, "ITTC-recommended Procedures and Guidelines. Performance, speed and power trials, Part 2 Analysis of speed/power trial data 7.5-02-03-01.4"

    1 Berlekom, W. B. Van, "Wind forces on modern ship forms-effects on performance" 97 : 123-134, 1981

    2 McCarthy, J. H., "The Performance of a Submerged Propeller in Regular Waves" David Taylor Model Basin 1961

    3 Kwon, Y. J., "Speed Loss Due to Added Resistance in Wind and Waves" 14-16, 2008

    4 Nakamura, S., "Propulsive performance of a container ship in waves" 158 : 24-47, 1975

    5 Chuang, Z., "Prediction of speed loss of a ship in waves" M. Abdel-Maksoud 1-8, 2011

    6 Seo, J. H., "Power increase and propulsive characteristics in regular head waves of KVLCC2 using model tests" 216 : 1-12, 2020

    7 ITTC, "ITTC-recommended procedures and guidelines. Analysis of Speed/Power Trial Data ITTC, 7.5-04-01-01.2"

    8 ITTC, "ITTC-recommended Procedures and Guidelines. Testing and extrapolation methods resistance: resistance test 7.5-02-02-01"

    9 ITTC, "ITTC-recommended Procedures and Guidelines. Prediction of power increase in irregular waves from model test 7.5-02-07-02.2"

    10 ITTC, "ITTC-recommended Procedures and Guidelines. Performance, speed and power trials, Part 2 Analysis of speed/power trial data 7.5-02-03-01.4"

    11 ITTC, "ITTC-recommended Procedures and Guidelines. Performance, propulsion 1978 ITTC performance prediction method 7.5-02-03-01.4"

    12 Van, S. H., "Experimental investigation of the flow characteristics around practical hull forms" 25-27, 1998

    13 Cheol-Min Lee, "Comparative study of prediction methods of power increase and propulsive performances in regular head short waves of KVLCC2 using CFD" 대한조선학회 11 (11): 883-898, 2019

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2013-10-01 등재 SCIE 등재 (등재유지) KCI등재
    2011-01-01 등재 등재후보학술지 유지 (기타) KCI등재후보
    2009-01-01 등재 SCIE 등재 (기타) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.56 0.18 0.54
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.49 0.47 0.475 0.04
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