• Title/Summary/Keyword: Spiral Maneuver Test

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Evaluation of Course-keeping Quality of a Ship by Zig-Zag Test (Zig-Zag test에 의한 선박의 보침성능 평가에 관한 연구)

  • Seung-Keon Lee;Seung-Jae Lee
    • Journal of the Society of Naval Architects of Korea
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    • v.35 no.1
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    • pp.54-60
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    • 1998
  • Generally, spiral test has been used for evaluating course-keeping quality of a ship. But, there are many difficult problems in performing spiral test and reversed spiral test. Therefore, we propose zig-zag test instead of spiral test for evaluating curse-keeping quality of a ship. In this paper, K-T maneuvering response model is applied to the spiral curves which are systematically produced to calculate Zig-zag maneuver. Then, 1st overshoot angle and 2nd overshoot angle are plotted. And the relations between overshoot angles and band widths of spiral curve are discussed.

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Estimation of Straight Line Stability of a Damaged Surface Combatant through Spiral Maneuver Test Model Considering Asymmetry (비대칭성이 고려된 나선형 시험 모델을 통한 손상 수상함의 직진 안정성 추정)

  • Ha, Jeong Soo;Jeong, Yeon Hwan
    • Journal of the Korean Society of Systems Engineering
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    • v.16 no.2
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    • pp.110-117
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    • 2020
  • In this paper, we estimated the straight line stability by performing a 3 degree of freedom spiral test simulation of a intact/damaged surface combatant using the hydrodynamic coefficient obtained through the PMM(Planar motion mechanism) test based on system engineering process. A model ship was ONR Tumblehome and damaged compartment was set on the starboard bow. As a result of conducting a spiral test simulation based on the experimental results of J.Ha (2018), the asymmetric straight line stability due to the damaged compartment was confirmed. In the case of a ship in which the starboard bow was damaged, it was confirmed that it had the characteristic to deflect to the left when going straight. Also, when estimating the straight line stability of a both port and starboard asymmetric surface combatant, a separated equation of motion model that sees the port and starboard as different ships seems suitable.

A Study on the Maneuverabilities of the T.S. Kaya (실습선 가야호의 조종성능에 관한 연구)

  • KIM, Min-Seok;SHIN, Hyeong-Il;KIM, Jong-Hwa;KANG, Il-Kwon
    • Journal of Fisheries and Marine Sciences Education
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    • v.21 no.1
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    • pp.59-67
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    • 2009
  • It is necessary for navigator to understand sufficiently maneuverabilities based on experiences and the data which were gotten from several tests of the ship when he maneuver his vessel. By the way most navigators used to rely on his experiences or feelings only maneuvering ship. But when he encounters situations he did not experience before he may be in difficulties. So navigator must get both experiences and data based on experimental results. In this paper author performs several tests such as turning test, Zig-zag test and spiral test to provide informations of maneuverabilities for navigators. The obtained results are as follows: There occurs almost no difference in size of the turning circle by the changes of ship's speeds. The scale of the turning circle was decreased exponentially when the rudder angle was increased. The maneuverabilities is better turning to starboard side than to port side. Maneuverabilities are more effective when the rudder is used to small angle than to large angle. As a result of spiral test course stability was comparatively seemed to be good.

A Study on Developing Ship's Turing Circles (선박의 선회권 작성에 관한 고찰)

  • Song, Kang-Sop;Hugh, Ihl
    • Journal of the Korean Institute of Navigation
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    • v.3 no.1
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    • pp.1-17
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    • 1979
  • It is very important for both naval architects and ship's officers to know the maneuvering characteristics of their ships. As the abilities of a rudder which controlls a ship can be determined clearly by analyzing the results of Kempf's zig-zag maneuver and directional stability of a ship also known by Dieudonn spiral maneuver, the importance of turning test which takes much time is recently apt to be neglected. But because the test can be executed comparatively more simply than any other maneuvering tests, it gives some informations on the directional stability, and turning characteristics may be expressed simply by the results of the test, it is still often performed. In this paper several assumptions are made to simplify the turning motion of a ship. The equations of initial transient phase, the radius ofsteady turning circle, and the center of the steady turning point are derived by using the hydrodynamic derivatives. And then the approximate method of drawing the turning circle geometrically is suggested.

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