• 제목/요약/키워드: Turning Circle Test

검색결과 36건 처리시간 0.021초

Z시험에 의한 선회권의 작도법에 관한 연구 (A Study on the Method of Turning Circle Drawing by Z-test)

  • 오정철
    • 한국항해학회지
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    • 제7권1호
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    • pp.33-62
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    • 1983
  • A navigator on bridge needs to know every kinds of motion characteristics of his vessel at sea. Generally when a vessel is completely built, the shipyard makes turning circle diagrams from the results of turing circle tests made during the sea trials for the reference of the vessel's owner. But referring only the data of a turning circle diagram, an officer on bridge can not figure out his vessel's maneuvering characteristics sufficiently, So nowadays the shipyard often adds Z test to turning circle test for more detail references. In this paper the author made Z and turning circle tests at the rudder angles of 15 and and 35 degress separately and in each of the case made a turrning circle diagram from the results of the turning circle test and the esults numerically calculated from mathematical formula made on the base of the maneuvering indices got from the Z test and compared them each other for the purpose of finding the correlations between them. Followings are concluded from the results. An actual turning circle diagram and a calculated one from the results of the Z test at same rudder angle coincides each other well when the center of the calculated circle is transferred by 1.7B toward the direction of the initial turning perpendicularly to the original course and 0.5L toward the direction in parallel with original course in case of the rudder angle of 35 degrees and 1.2B and 0.3L toward each of the above mentioned directions in case of rudder angle of 15 degrees.

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선박 TRIM변화에 따른 조종성능의 분석 (The Analysis of the Ship's Maneuverability According to the Ship's Trim and Draft)

  • 박병수;강동훈;강일권;김현무
    • 수산해양교육연구
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    • 제27권6호
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    • pp.1865-1871
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    • 2015
  • Ship's trim is the one of the most important factor for safety at the sea. Turning circle test and Z-test were carried out to find the effect of ship's trim and draft changes. The results are as follows. 1. If the ship's draft and trim became large, turning circle would be wide. 2. If the ship's draft and trim became large, ship's drift angle would be small. Small drift angle made wide turning circle. 3. Trim by the head made slow ship's final speed when turning circle test. 4. By Z-test, the deeper draft and trim by the stern made small OSA. Small OSA means strong ship's stability. 5. Totally 2nd OSA is smaller than 1st OSA on Z-test. 6. There were small differences of 2nd OSA in trim by the stern, but there were large OSA in trim by the head. 7. The larger trim by the stern, the smaller OSW. The small OSW means better ship's stability and maneuverability.

선회권시험방법에 의한 신침로거리의 산정방법에 관한 연구 (The Method to Calculate the New Course Distance of a Ship by Turning Circle Test Method)

  • 김기윤
    • 수산해양기술연구
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    • 제30권4호
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    • pp.299-311
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    • 1994
  • The new course distances of a ship are one of the important factors of the safety handling as the indices to indicate directly her abilities of course alteration. Recently, International Maritime Organization (IMO) exhorts that all vessels should use maneuvering booklets in which are drawn the curves of new course distances obtained from the test of measuring them and noted other maneuvering performance standard in various navigation conditions. This paper describes the method to calculate many new course distances for many rudder angles by turning circle test without observation or using other calculating methods. The main results are as follows: 1) The mean difference of the distances between two new course distances by the turning circle test and heading test of the experimental ship was about 7.7% vaules of the ones by the heading test. when her altering angles were $48^{\circ}$, $63^{\circ}$and $70^{\circ}$, using the rudder angle of $35^{\circ}$ . These new course distances were therefore found to be small in difference of those. 2) The mean difference of the distance between two new course distances by the turning circle test and the maneuvering indices of the experimental ship was about 4.5% values of the ones by the maneuvering indices, when her altering angles were $48^{\circ}$, $63^{\circ}$and $70^{\circ}$, using the rudder angle of $35^{\circ}$, these new course distances were therefore found to be small in difference of those. 3) The mean difference of the distance between two new course distances by the turning circle test and the observation of the experimental ship was about 6.1% values of the ones by the observation, when her altering angles were $48^{\circ}$, $63^{\circ}$and $70^{\circ}$, using the rudder angle of $35^{\circ}$. These new course distances were therefore found to be small in difference of those. 4) It is confirmed that many new course distances for many angles can be calculated easily by using the method of ship's simple turning circle test, without observation or using the maneuvering indices and heading test method. 5) It is considered to be helpful for the safety of ship handling to draw curves of new course distances by turning circle test and $\phi_4$ - $\phi_2 by heading test, and utilize them at sea.

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DGPS에 의한 선미트롤선 해림 3호의 선회권측정 (Measurement for the Tuning Circle of the Stern Trawler HAELIM-3 by the Differential GPS)

  • 최재은;김진건;김기윤
    • 수산해양기술연구
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    • 제31권1호
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    • pp.84-92
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    • 1995
  • 군산대학교 실습선 해림 3호의 조종성능을 파악하기 n이하여 GPS 보다 그 측립정도가 더 높은 DGPS를 이용하여 종회권 측정을 행하고, 이를 재래식 측정방법인 부표방입반법과 비교 검토하였으며, 그 결과를 요약하면 다음과 같다. 1. DGPS에 의한 선회권측정의 정도를 파악하기 위하여 육상에서 50m의 선회시험을 행한 결과 측위오차는 1.5m 이내 였다. 2. DGPS에 의한 선회권측정은 속력별, 타각별, 좌우선회별로 각각 그 특성이 잘 나타낼 수 있도록 정확하게 측정 할 수 있었다. 3. 부표방위반법에 의한 선회권측정은 타각을 크게 하여 그 선회권이 작을 때는 DGPS의 것과 같이 비교적 정확하게 측정할 수 있으나, 타각을 작게하여 선회권이 클 때는 방위오차가 크기 때문에 정확하게 측정할 수 없었다. 4. DGPS에 의한 해림 3호의 선회경(DT)은 타각 35。~5。일 때, 미속에서는 선박의 수선간장 (Lpp)상의 2.6~15.0배, 반속에서는 2.8~16.6배, 전속에서는 3.1~17.4배로 나타났었고, 부표방위반법에 의한 선회경은 각각 2.4~9.5배, 2.6~9.6배, 3.2~12.2배로 나타났었다

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

  • 송강섭;허일
    • 한국항해학회지
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    • 제3권1호
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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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차량의 최소선회성능 시험의 실시간 계측 및 처리 장치 개발 (Development of Real-time Processing Measurement Device of the Vehicle Minimum Turning Circle Test)

  • 류치영;이정환;조진우;강이석
    • 한국군사과학기술학회지
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    • 제20권1호
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    • pp.48-54
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    • 2017
  • A minimum turning circle test of vehicles is operated by using Real-Time Kinematic(RTK) surveying method which enhances the precision of the Global Positioning System(GPS). A procedure of the conventional method to obtain results is to take post processing after the test. Therefore, it is difficult to ensure results in an instant. This paper introduces developed process and equipment that can immediately obtain results after the minimum turning test without post processing.

PAL 시험과 Z 시험에 의한 부산 403호의 조종성능에 관한 연구 (A Study on the Maneuverabilities of the M . S . Pusan 403 by PAL Test and Z Test)

  • 유재춘;김기윤;김종화
    • 수산해양기술연구
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    • 제22권2호
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    • pp.22-30
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    • 1986
  • It is very important for a navigator on bridge to know the maneuverability of his ship sufficiently at sea. Generally, the data of a turning circle test have long been used to study and evaluate the maneuverability of a ship. But referring only the data of the turning circle test method, he can not evaluate his ship's maneuvering characteristics sufficiently. So nowaday the test method added Z test to turning circle test for more detail references is considered to be desirable. In this paper, the authors performed PAL test and Z test together in order to study the maneuverability of M. S.Pusan 403, training ship of the National Fisheries University of Pusan. According to the results of PAL test, the rudder effect in port rudder angle of the M. S. Pusan 403 was found to be more effective than that in starboard one, because her changing amounts of angular velocity, turning radius and tangent speed in port rudder angles were found to be larger than those of them in starboard rudder one in unsymmetry. The relation between her drift angle(.8) and rudder angle (0) was found to be changing with .8=0.640 in direct proportion. As it appeared that her calculated K'-values were smaller than the standard K'-values of different kinds of ships in accordance with her Z test, her turning ability was found to be lower. The running distance of a turn in her 10$^{\circ}$ Z test was about 8.3 times her own length and was found not to be exceeded the standard maneuvering distance, therefore she was considered to have good maneuverabilities synthetically.

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

  • 김민석;신형일;김종화;강일권
    • 수산해양교육연구
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    • 제21권1호
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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.

Ship Manoeuvring Performance Experiments Using a Free Running Model Ship

  • Im, Nam-Kyun;Seo, Jeong-Ho
    • 한국항해항만학회지
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    • 제33권9호
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    • pp.603-608
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    • 2009
  • In this paper, a 3m-class free running model ship will be introduced with its manoeuvring performance experiments. The results of turning circle test and zig-zag test will be explained. The developed system are equipped with GPS, main control computer, wireless LAN, IMU (Inertial Measurement Unit), self-propulsion propeller and driving rudder. Its motion can be controlled by RC (Radio Control) and wireless LAN from land based center. Automatic navigation is also available by pre-programmed algorithm. The trajectory of navigation can be acquired by GPS and it provides us with important data for ship's motion control experiments. The results of manoeuvring performance experiment have shown that the developed free running model ship can be used to verify the test of turning circle and zig-zag. For next step, other experimental researches such as ship collision avoidance system and automatic berthing can be considered in the future.

실습선 아라호(M.S. A-RA)의 조종성능에 관한 연구 (A Study on the Maneuverabilities of the Training ship M.S. A-RA)

  • 안영화;박명호;최환문;정용진
    • 수산해양기술연구
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    • 제37권4호
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    • pp.275-284
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    • 2001
  • 본 연구에서는 제주대학교 실습선 아라호(G/T : 990tons)의 조종 성능을 파악하기 위하여 2000년 8월과 2001년 5월에 2회에 걸쳐 제주항 북방 3마일 해상에서 조타에 의한 선회성과 추종성 등의 조종성능을 실시한 결과는 다음과 같다. 1. 부표 방위반법으로 측정한 선회권의 크기에서 선회종거는 우현선회시가 198m, 좌현선회시가 192m로서 좌현선회시가 우현선회시보다 6m 작았으며, 또한, 선회경의 크기는 우현선회시가 194m, 좌현선회시가 188m로서 좌현선회시가 우현선회시 보다 6m 작았다. 2. DGPS 측위에 의한 선회권의 크기에서 선회종거는 우현선회시가 196m, 좌현선회시가 194m로서 좌현선회시가 우현선회시보다 2m 작았다. 또한, 선회경의 크기는 우현선회시가 194m, 좌현선회시 190m로서 좌현선회시가 우현선회시보다 4m 작았다. 3. 신조 시운전시 부표 방위반법에 의해 측정한 선회권의 크기와 2001년 5월에 DGPS 측위에 의하여 측정한 선회권의 크기를 비교해 본 결과, 선회종거는 DGPS 측위에 의한 선회권이 신조시운전시 선회종거보다 우현선회시가 1m 컸으며, 좌현선회시가 21m 작았다. 또한, 선회경의 크기는 우현선회시 16m, 좌현선회시 23m 작았다. 4. 선속 13k't로 전속 전진중 타각 $35^\circ$로 좌현 또는 우현으로 전타 했을 때 선회각 $180^\circ$에서 선속이 7.8k't이고 $360^\circ$선회시는 6.0k't가 되었으며, 소요 시간은 좌현선회시가 150초, 우현선회시가 156sec로 좌현선회시가 우현선회시보다 6초 짧았으며, 선회평균 각속도는 좌현선회시가 $2.4^\circ$/sec, 우현선회시가 $2.3^\circ$/sec였다. 5. 타각 $10^\circ$, $20^\circ$, $30^\circ$ Z시험에서 선회성지수 K와 추종성지수 T는 각 각 선회성지수는 1.24, 1.45, 1.65였으며, 추종성지수는 각 각 0.33, 0.20, 0.14가 되어 $30^\circ$인 경우가 $10^\circ$, $20^\circ$ Z시험에서 보다 선회성지수 K는 크고, 추종성지수 T는 작아서 대각도 조타일 때가 소각도 조타일 때 보다 조종성능이 양호하였다.

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