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    대각도 받음각을 갖는 무인잠수정에 작용하는 동유체력 특성에 관한 실험적 연구

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    https://www.riss.kr/link?id=A82586828

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The authors adopt the Unmanned Undersea Vehicle(UUV), the shape of which is like a manta. They call here it Manta UUV. Manta UUV has been designed from the similar concept of the UUV called Manta Test Vehicle(MTV), which was originally built by the Naval Undersea Warfare Center of USA(Lisiewicz and French, 2000; Simalis et al., 2001; U.S. Navy, 2004). The present study deals with the effect of Reynolds numbers on hydrodynamic forces acting on Manta UUV at large angles of attack. The large angles of attack cover the whole range of 0 to ± 180 degrees in horizontal plane and in vertical plane respectively. Static test at large attack angles has been carried out with two Manta UUV models in circulating water channel. The authors assume that the experimental results of hydrodynamic forces (lateral force, yaw moment, vertical force and pitch moment) are analyzed into two components, which are lift force component and cross-flow drag component. First of all, Based on two dimensional cross-flow drag coefficient at 90 degrees of attack angle, the cross-flow drag component at whole range of attack angles is calculated. Then the remainder is assumed to be the lift force component. The only cross-flow drag component is assumed to be subject to Reynolds number.entstly the authors suggest the methodology to predict hydrodynamic derivertives acting on the full-scale Manta UUV.
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    The authors adopt the Unmanned Undersea Vehicle(UUV), the shape of which is like a manta. They call here it Manta UUV. Manta UUV has been designed from the similar concept of the UUV called Manta Test Vehicle(MTV), which was originally built by the Na...

    The authors adopt the Unmanned Undersea Vehicle(UUV), the shape of which is like a manta. They call here it Manta UUV. Manta UUV has been designed from the similar concept of the UUV called Manta Test Vehicle(MTV), which was originally built by the Naval Undersea Warfare Center of USA(Lisiewicz and French, 2000; Simalis et al., 2001; U.S. Navy, 2004). The present study deals with the effect of Reynolds numbers on hydrodynamic forces acting on Manta UUV at large angles of attack. The large angles of attack cover the whole range of 0 to ± 180 degrees in horizontal plane and in vertical plane respectively. Static test at large attack angles has been carried out with two Manta UUV models in circulating water channel. The authors assume that the experimental results of hydrodynamic forces (lateral force, yaw moment, vertical force and pitch moment) are analyzed into two components, which are lift force component and cross-flow drag component. First of all, Based on two dimensional cross-flow drag coefficient at 90 degrees of attack angle, the cross-flow drag component at whole range of attack angles is calculated. Then the remainder is assumed to be the lift force component. The only cross-flow drag component is assumed to be subject to Reynolds number.entstly the authors suggest the methodology to predict hydrodynamic derivertives acting on the full-scale Manta UUV.

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    참고문헌 (Reference)

    1 신용구, "수중함의 함미타 효율추정을 위한 수학모델링에 관한 연구" 대한조선학회 42 (42): 190-196, 2005

    2 윤근항, "수중운동체의 목표추적시스템에 적합한 유도론 선정에 대한 연구" 대한조선학회 42 (42): 299-306, 2005

    3 U.S. Navy, "The Navy Unmanned Undersea Vehicle(UUV) Master Plan" 2004

    4 Tamura,K, "Study on the Blockage correction" 131 : 17-28, 1972

    5 Sirmalis,J.E., "Pursuing the MANTA Vision : Recent At-Sea Technology Demonstration Results" Proceedings, Undersea Defense Technology Conference, Hawaii 2001

    6 Lewis,E.V, "Principles of Naval Architecture, lll, 2nd Revision" the Society of Naval Architects and Marine Engineers 1989

    7 Newman,J.N, "Marine hydrodynamics" Mit press 217-, 1978

    8 손경호, "Manta형 무인잠수정의 조종운동 특성에 관한 연구" 대한조선학회 46 (46): 114-126, 2009

    9 손경호, "Manta형 무인잠수정의 대각도 받음각을 갖는 조종운동 수학모델에 관한 연구" 대한조선학회 47 (47): 328-341, 2010

    10 Lisiewicz, J. S, "Manta Test Vehicle At-Sea Test Results and Technology Demonstration Plans" 2000

    1 신용구, "수중함의 함미타 효율추정을 위한 수학모델링에 관한 연구" 대한조선학회 42 (42): 190-196, 2005

    2 윤근항, "수중운동체의 목표추적시스템에 적합한 유도론 선정에 대한 연구" 대한조선학회 42 (42): 299-306, 2005

    3 U.S. Navy, "The Navy Unmanned Undersea Vehicle(UUV) Master Plan" 2004

    4 Tamura,K, "Study on the Blockage correction" 131 : 17-28, 1972

    5 Sirmalis,J.E., "Pursuing the MANTA Vision : Recent At-Sea Technology Demonstration Results" Proceedings, Undersea Defense Technology Conference, Hawaii 2001

    6 Lewis,E.V, "Principles of Naval Architecture, lll, 2nd Revision" the Society of Naval Architects and Marine Engineers 1989

    7 Newman,J.N, "Marine hydrodynamics" Mit press 217-, 1978

    8 손경호, "Manta형 무인잠수정의 조종운동 특성에 관한 연구" 대한조선학회 46 (46): 114-126, 2009

    9 손경호, "Manta형 무인잠수정의 대각도 받음각을 갖는 조종운동 수학모델에 관한 연구" 대한조선학회 47 (47): 328-341, 2010

    10 Lisiewicz, J. S, "Manta Test Vehicle At-Sea Test Results and Technology Demonstration Plans" 2000

    11 Umeda,N., "Hydrodynamic Forces Acting on a Longitudinally Non-symmetric Ship under Manoeuvring at Low Speed" 127-138, 1989

    12 Vennard,J.K., "Elementary Fluid Mechanics, Sixth Edition" 628-634, 1982

    13 Choi,J.R, "Analysis on Development Trend and Core Technology of Unmanned Underwater Vehicle" Agency for Defense Development. 65 : 2008

    14 Strom-Tejsen, "A Digital Computer Techique for Prediction of Standard Maneuvers of Surface Ships" 1965

    15 Son,N.S, "A Design of Collision Avoidance System of an Underwater Vehicle" 38 (38): 23-29, 2001

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2026 평가 재인증평가 신청대상 (재인증)
    2020-01-01 등재 등재학술지 유지 (재인증) KCI등재
    2017-01-01 등재 등재학술지 유지 (계속평가) KCI등재
    2013-01-01 등재 등재 1차 FAIL (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2006-01-01 등재 등재학술지 유지 (등재유지) KCI등재
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    2001-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.52 0.52 0.48
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.44 0.4 0.685 0.16
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