• 제목/요약/키워드: MMG model

검색결과 38건 처리시간 0.02초

파랑 표류력을 고려한 선박의 파랑 중 선회성능 해석 (Numerical Analysis of Turning Performance in Waves by Considering Wave Drift Forces)

  • 서민국;남보우;김연규
    • 대한조선학회논문집
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    • 제55권2호
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    • pp.103-115
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    • 2018
  • This paper performs a numerical computation of ship maneuvering performance in waves. For this purpose, modular-type model (MMG (Mathematical Modeling Group) model) is adopted for maneuvering simulation and wave drift force is included in the equation of maneuvering motion. In order to compute wave drift force, two different seakeeping programs are used: AdFLOW based on Wave Green function method and SWAN based on Rankine panel method. When wave drift force is calculated using SWAN program, not only ship forward speed but also ship lateral speed are considered. By doing this, effects of lateral speed on wave drift force and maneuvering performance in waves are confirmed. The developed method is validated by comparing turning test results in regular waves with existing experimental data. Sensitivities of wave drift force on maneuvering performance are, also, checked.

타의 종류에 따른 선박의 파랑 중 직진성능에 관한 연구 (Study on Variation in Ship's Course Keeping Ability under Waves Depending on Rudder Type)

  • 구본국;이종현;강동훈
    • 한국해양공학회지
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    • 제27권2호
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    • pp.87-92
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    • 2013
  • The variation in the course keeping ability in relation to rudder type is investigated using simulations with 3 different types of rudders (a normal rudder, normal rudder with a plate, and Schilling rudder) under wave conditions. The simulation is developed based on an MMG model with Kijima's regression model, along with the data from Son's experiments and Kose's experiments. A 3-D source distribution method is applied to calculate the source of the external wave forces for the simulation. The coefficients of an autopilot controller that may affect the course keeping ability are also estimated from the simulations with the different rudders. The course keeping ability is evaluated by comparing the forward distances while the ships are simulated with the rudders and autopilot controller.

만타형 UUV의 심도제어와 충돌회피에 관한 연구 (A Study of the Depth Control System and the Collision Avoidance System for the Manta-type UUV)

  • 김주한;이승건;이상의;배철한
    • 한국항해항만학회지
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    • 제32권6호
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    • pp.447-452
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    • 2008
  • 본 연구에서는 만타형 수중운동체의 수평 및 수직 방향에 대한 자동제어 및 충돌회피 시스템을 확립하였다. PID 제어이론, 퍼지 추론 등이 적용되었으며, 시뮬레이션에 사용된 6자유도 운동 방정식은 이론계산과 구속모형 시험에 의하여 확립하였다. PID제어에 의한 심도제어 결과가 제시되었으며, UUV의 충돌 위험도는 가상 소나 시스템을 이용한 퍼지 추론으로 추정하였다. 이를 이용하여 만타형 수중운동체의 심도제어 시스템 및 충돌회피 시뮬레이션 시스템이 개발되었다.

Numerical Study to Evaluate Course-Keeping Ability in Regular Waves Using Weather Vaning Simulation

  • Kim, In-Tae;Kim, Sang-Hyun
    • 한국해양공학회지
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    • 제35권1호
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    • pp.13-23
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    • 2021
  • Since the introduction of the mandatory energy efficiency design index (EEDI), several studies have been conducted on the maneuverability of waves owing to the decrease in engine power. However, most studies have used the mean wave force during a single cycle to evaluate maneuverability and investigated the turning performance. In this study, we calculated the external force in accordance with the angle of incidence of the wave width and wavelengths encountered by KVLCC2 (KRISO very large crude-oil carrier) operating at low speeds in regular waves using computational fluid dynamics (CFD). We compare the model test results with those published in other papers. Based on the external force calculated using CFD, an external force that varies according to the phase of the wave that meets the hull was derived, and based on the derived external force and MMG control simulation, a maneuvering simulation model was constructed. Using this method, a weather vaning simulation was performed in regular waves to evaluate the course-keeping ability of KVLCC2 in waves. The results confirmed that there was a difference in the operating trajectory according to the wavelength and phase of the waves encountered.

모바일하버의 조종운동 수학모델 구축 및 조종 시뮬레이션 개발에 관한 연구 (A Study on the Development of Maneuvering Mathematical Model and Maneuvering Simulation for a Mobile Harbor)

  • 정재훈;이승건;이창훈
    • 한국항해항만학회지
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    • 제34권8호
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    • pp.629-634
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    • 2010
  • 세계 컨테이너 물동량의 증가와 컨테이너선의 대형화로 인해 선박과 수심이 얕은 항구 및 부두를 연결하는 새로운 개념의 해상 운송 수단이 요구되어 왔다. 본 연구에서는 모바일하버 선형과 함께, Azipod 추진기 및 선수 스러스터(Bow thruster) 등으로 구성된 모바일하버의 조종수학모델을 구축하였다. 그리고 선체 유체력 및 Azipod 추력 등을 평가 적용하여 조종운동 시뮬레이션을 수행하였다. 그 결과, 모바일 하버의 조종운동 시뮬레이션에 의한 선회성능과 조종제어범위를 사전에 예측할 수 있었다. 또한, 모바일하버의 직진 시험 및 선회성능 시험에 있어 양호한 결과를 얻었으며, 접안 시 Azipod 추진기와 선수 스러스터를 이용한 최적의 조종운동 시뮬레이션을 확립하였다.

저속(低速) 전.후진(前.後進) 조종(操縱)에 의한 동유체력(動流體力)의 수학(數學)모델 (Mathematical Model for the Hydrodynamic Forces in Forward or Backward Low Speed Maneuvering)

  • 김진안;이승건
    • 대한조선학회논문집
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    • 제29권3호
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    • pp.45-52
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    • 1992
  • 조종운동(操縱運動)의 정확(正確)한 예측(豫測)이 절실(切實)하게 요구되는 항만내(港灣內)에서의 조종운동(操縱運動)과 같이, 저속(低速)이며 또 천수역(淺水域)에서의 선박(船舶)의 조종운동(操縱運動)을 잘 표현(表現)하는 수학(數學) Model은 아직 얻어지지 않고 있는 것이 현재까지의 실정(實情)이라 할 것이다. 일본의 Kose는 저속시(低速時) 선체유체력(船體流體力)의 새로운 Model을 제안(提案)한 바 있으나 아직 그 유용성에 대해서는 다방면(多方面)에서 검토(檢討)가 필요(必要)하다고 할 것이다. 본(本) 논문(論文)은 이러한 현실(現實)에서, 우선 저속시(低速時)의 Hull 유체력(流體力)을 잘 표현(表現)할 수 있는 새로운 방법(方法)을 모색하여 이를 Kose의 Model이나 종래(從來)의 M.M.G.Model 또는 Cross-Flow Drag Model등과 비교하여, 저속시(低速時)의 선체(船體)에 작용(作用)하는 유체력(流體力)을 잘 나타낼 수 있는 Model을 개발하려고 한다. 수학(數學) Model의 우열(優劣)을 판정하는 방법으로서는, 일본의 RR-742부회(部會)에서 실험한 저속시(低速時)($f_n={\pm}0.06,\;U={\pm}0.3m/s$)의 전후진(前後進)에 대한 Bare Hull의 CMT결과로 얻어진 전후력, 횡력, 선회모멘트를 Data로 삼아 이들을 각각 Kose Model, Cross-flow Model, MMG Model 및 신(新) Model에 의하여 Fitting하고, Fitting의 표준편차(標準偏差)를 비교하였다.

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탠덤 배치된 FPSO와 셔틀탱커의 비선형 운동 해석 (Nonlinear Motion Analysis of FPSO and Shuttle Tanker in a Tandem Configuration)

  • 임춘규;이호영;신현경
    • 대한조선학회논문집
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    • 제43권5호
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    • pp.560-567
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    • 2006
  • FPSO and shuttle tanker are connected to each other by a mooring hawser and a loading hose through which cargo oil is off-loaded. Even in mild sea-state. environmental loads can cause unstable large drift motions between two vessels in tandem off-loading operations, which may result in collision incidents. Accordingly. the analysis on the relative motion between two vessels due to the environmental loads should be investigated in initial design stage. In this study, the low speed maneuvering equation is employed to simulate nonlinear motions of FPSO and shuttle tanker. Low frequency wave drift forces including hydrodynamic interactions between two vessels are evaluated by near field approaches. Current loads are determined by mathematical model of MMG and wind loads are calculated by employing the wind spectrum according to the guidelines of API-RP2A. Mooring forces produced by turret mooring lines and a flexible hawser are modeled quasi-statically by catenary equations. The effect of environmental loads that affect nonlinear motion is investigated through variation in their magnitudes and the nonlinear motions between FPSO and shuttle tanker are simulated under wave, current and wind in time domain.

PC를 이용한 선박조종연습 DESKTOP Simulator개발에 관한 연구 (A Study on the Development of PC-based DestTop Ship Maneuvering Simulator for trainning purpose)

  • 허용범;윤점동
    • 한국항해학회지
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    • 제20권2호
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    • pp.1-13
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    • 1996
  • Most of the ShipHandling Simulators of full-mission-bridge system need vast area to install and even PC-based maneuvering simulators are often equipped with Steering Wheel or Engine Telegraphe etc. of data input interface, which necessarily makes the user face with excessive financial burden. These have been one of the obstacles for the officers, captains, pilots and students in access to maneuvering simulation whenever they want to try it in advance prior to actual ship maneuvering. Subsequently, all the officers and captains come to have little chances to train themselves until they arualified as a pilot after a long period of time of realship maneuvering practice on board, which means they have to control they have to control their own ship at sea without clear understanding on her maneuverability when they are forced to do it on the way. And these lack of capability for maneuvering have used so often to result in marine casualties of collision with other ships or pier facilities while maneuvering in harbor. To prevent those accidents by means of enhancing their maneuvering ability, PC-based DeskTop Simulator that allows anyong to access readily at anytime is needed and in conformation to such demand this simulator has been developed. The Software this simulator written in Turbo Pascal Ver. 5.0 has adopted MMG mathmatical model theoretically in part and also it was designed to make it possible that all numeric data inputs and outputs with graphic presentation for maneuvering operation be carried out just only with keyboard and monitor console. With the Simulation software, all the officers, captains, pilots and even students who has a proper computer at hand are expected to be able to make an attempt to simulate the maneuvering of their ownship or any other types of them at any port in which they want to do it.

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