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    Representation of small passenger ferry maneuvering motions by practical modular model

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    https://www.riss.kr/link?id=A107283371

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Maneuvering motions of a ship in calm water are studied through the concept of MMG model. Governing forces are defined by the use of available empirical formulae that require only main ship particulars as input variables. In order to validate the calculation tool, a full-scale sea experiment was carried out in Osaka Bay using a 17-m twin-screw passenger ferry. Test execution and data measurement were performed through the utilization of an autopilot control unit and satellite compass. The result of a straight running test confirms the acceptable accuracy in addressing the surge motion problem. Reasonable agreement between simulation and experiment is also confirmed for 5+=5+ and 10+=10+ zig-zag tests despite the strong environmental disturbance. The current model can generally represent the subject ship maneuvering motions and is promising for the application to other ship hulls.
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    Maneuvering motions of a ship in calm water are studied through the concept of MMG model. Governing forces are defined by the use of available empirical formulae that require only main ship particulars as input variables. In order to validate the calc...

    Maneuvering motions of a ship in calm water are studied through the concept of MMG model. Governing forces are defined by the use of available empirical formulae that require only main ship particulars as input variables. In order to validate the calculation tool, a full-scale sea experiment was carried out in Osaka Bay using a 17-m twin-screw passenger ferry. Test execution and data measurement were performed through the utilization of an autopilot control unit and satellite compass. The result of a straight running test confirms the acceptable accuracy in addressing the surge motion problem. Reasonable agreement between simulation and experiment is also confirmed for 5+=5+ and 10+=10+ zig-zag tests despite the strong environmental disturbance. The current model can generally represent the subject ship maneuvering motions and is promising for the application to other ship hulls.

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    참고문헌 (Reference)

    1 Sukas, O. F., "Theoretical background and application of MANSIM for ship maneuvering simulations" 1992 : 2019

    2 Ittc, "The maneuvering committee-final report and recommendations to the 28th ITTC" 1 : 2017

    3 Ittc, "The maneuvering committee - final report and recommendations to the 25th ITTC" 1 : 2008

    4 Inoue, S., "The hydrodynamic derivatives on ship maneuverability in even keel condition" 57 : 13-19, 1978

    5 Harvald, S. A., "Resistance and Propulsion of Ships" Wiley 1983

    6 Stern, F., "Proceedings of the Workshop on Verification and Validation of Ship Maneuvering Simulation Methods SIMMAN 2008"

    7 Google Maps, "Osaka Bay 34deg41’40.0”N 135deg20’10.3”E. 2D Map"

    8 Nomoto, K., "On the steering qualities of ships" 99 : 75-82, 1956

    9 Motora, S., "On the measurement of added mass and added moment of inertia for ship motions (part 3. Added mass for the transverse motions)" 106 : 63-68, 1960

    10 Motora, S., "On the measurement of added mass and added moment of inertia for ship motions (part 2. Added mass for the longitudinal motions)" 106 : 59-62, 1960

    1 Sukas, O. F., "Theoretical background and application of MANSIM for ship maneuvering simulations" 1992 : 2019

    2 Ittc, "The maneuvering committee-final report and recommendations to the 28th ITTC" 1 : 2017

    3 Ittc, "The maneuvering committee - final report and recommendations to the 25th ITTC" 1 : 2008

    4 Inoue, S., "The hydrodynamic derivatives on ship maneuverability in even keel condition" 57 : 13-19, 1978

    5 Harvald, S. A., "Resistance and Propulsion of Ships" Wiley 1983

    6 Stern, F., "Proceedings of the Workshop on Verification and Validation of Ship Maneuvering Simulation Methods SIMMAN 2008"

    7 Google Maps, "Osaka Bay 34deg41’40.0”N 135deg20’10.3”E. 2D Map"

    8 Nomoto, K., "On the steering qualities of ships" 99 : 75-82, 1956

    9 Motora, S., "On the measurement of added mass and added moment of inertia for ship motions (part 3. Added mass for the transverse motions)" 106 : 63-68, 1960

    10 Motora, S., "On the measurement of added mass and added moment of inertia for ship motions (part 2. Added mass for the longitudinal motions)" 106 : 59-62, 1960

    11 Motora, S., "On the measurement of added mass and added moment of inertia for ship motions" 105 : 83-92, 1959

    12 Kijima, K., "On the maneuvering performance of a ship with the parameter of loading condition" 168 : 141-148, 1990

    13 Ministry of Land, Infrastructure, Transport and Tourism of Japan, "Measured Wave Data of January 2020 on Kobe Port" Nationwide Ocean Wave Information Network for Ports and Harbours

    14 Okuda, R., "Maneuvering simulation of a twin-propeller ship by an equivalent single-rudder model" 29 : 2019

    15 Yoshimura, Y., "Maneuvering force database with medium high speed merchant ships including fishing vessels and investigation into a maneuvering prediction method" 14 : 63-73, 2011

    16 Yasukawa, H., "Maneuverability of a semidisplacement typed high speed mono-hull" 19 : 47-59, 2014

    17 Ogawa, A., "MMG Report-I, on the mathematical model of maneuvering motion" 575 : 192-198, 1977

    18 Taniguchi, K., "Investigation into the propeller cavitation in oblique flow" 121 : 81-94, 1967

    19 Furuno Electric Co, Ltd, "Introduction of a New Experimental Ship “Furuno Maru”. Furuno Corporate Information Site"

    20 Yasukawa, H., "Introduction of MMG standard method for ship maneuvering predictions" 20 : 37-52, 2015

    21 Oosterveld, M. W. C., "Further computer-analyzed data of the Wageningen B-screw series" 22 : 251-262, 1975

    22 Yoshimura, Y., "Estimation of the manoeuvring behavior of ship in uniform wind" 158 : 125-136, 1985

    23 Japan Coast Guard, "Estimated Current Data of January 2020 on Seto Inland Sea"

    24 Japan Meteorological Agency, "Daily Weather Data of January 2020 on Kobe Airport"

    25 Research Committee on Improvement of Mathematical Model for Ship Maneuvering Predictions, "Committee Report P-34" Japan Society of Naval Architects and Ocean Engineers 2014

    26 Research Committee on Standardization of Mathematical Model for Ship Maneuvering Predictions, "Committee Report P-29" Japan Society of Naval Architects and Ocean Engineers 2012

    27 Lee, S. K., "A study on the manoeuvring mathematical model for a twin-propeller twin-rudder ship" 163 : 109-118, 1988

    28 Chattopadhyay, S., "A study on performance and cavitation of propellers for high speed crafts including effect of boss" 159 : 59-70, 1986

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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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    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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