• 제목/요약/키워드: Surge motion

검색결과 95건 처리시간 0.026초

전용부두 계류중인 실습선의 선체거동 해석 및 제어에 관한 연구 (Behavior Analysis and Control of a Moored Training Ship in an Exclusive Wharf)

  • 조익순
    • 해양환경안전학회지
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    • 제23권2호
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    • pp.139-145
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    • 2017
  • 최근 이상적인 자연현상으로 인해 돌풍, 태풍 및 쓰나미 등 비상상황이 자주 발생하고 있고, 이로 인해 항내 계류선박은 선체거동을 미리 예측하여 해석하고, 선체거동을 제어하지 못해 계류선박의 계류시스템이 손상되면 해양사고가 발생할 수 있다. 따라서 계류시스템의 손상이 예상되는 경우 정량적 판단에 의해 항내 계류할 것인지 아니면 항외로 피항할 것인지 결정할 필요가 있다. 본 연구에서는 외력에 의한 계류선박의 거동해석 및 계류시스템 제어를 위해 대학내 전용 부두에 계류중인 실습선을 대상으로 계류안전성을 평가하였다. 계류삭의 최대장력을 분석한 결과, 파주기 12초 및 15초인 경우에는 대부분 허용강도(S.W.L)를 초과하는 것으로 분석되었다. 계선주에 작용하는 최대견인력을 분석한 결과, 해당 위치에 설치된 지 노후화된 소형 계선주에 다수의 계류삭을 체결함으로서 모든 평가 Case에서 계선주 허용규격인 35톤을 초과하는 것으로 분석되었다. 선체동요 및 하역안전성 평가결과 파주기 12초 이상 및 풍속 25노트 조건에서는 Surge 운동의 한계값인 3.0미터를 초과하는 것으로 분석되었다. 그 결과를 토대로 계류시스템 제어를 위한 판단기준이 되는 풍속, 파고 및 파주기 등의 주요 외력조건별 고위험, 위험 및 보통 위험 등 3단계의 리스크 매트릭스(Risk Matrix)를 작성하여, 계류시스템 제어를 위한 판단기준이 되는 위기관리 대응매뉴얼로 활용할 수 있을 것으로 기대된다.

선박 계류시스템의 종방향 외력하의 비선형 동적거동 해석 (Dynamical Analysis of the Mooring Vessel System Under Surge Excitations)

  • 이상도;유삼상
    • 해양환경안전학회지
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    • 제24권2호
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    • pp.140-145
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    • 2018
  • 본 연구는 두점식 선박 계류시스템의 종방향 외력에 대한 비선형 동적거동 해석을 수행하였다. 특정 입력 매개변수에 대한 카오스 운동과 한계주기궤도 등의 비선형 거동의 특성을 연구하였다. 주로 비선형복원력은 계류시스템의 강한 비선형성과 동적거동의 다양성을 제공한다. 계의 운동방정식 시뮬레이션에 사용된 수치 적분기는 4차 룽게쿠타법이다. 외력진폭과 주파수를 변화시킬 때 분기 그림과 동적불안정 현상들을 볼 수 있다. 외력의 주파수(진동수)가 0.4 rad/s인 경우 수많은 혼돈상태 점들 사이에 주기창이라 불리는 안정적인 주기해가 관측된다. 주파수가 0.7 rad/s인 경우는 외력진폭이 1.0을 초과할 때 혼돈 영역이 갑자기 증가한다. 주파수가 1.0 rad/s인 경우는 주파수가 0.4 rad/s 및 0.7 rad/s인 경우와 비교해 볼 때, 혼돈 운동이 약화된다. 아울러, 두점식 계류시스템은 각 매개변수에서 준주기 운동, 한계주기궤도, 대칭성의 깨짐과 같은 다양한 정상상태의 궤적이 관측된다.

슈퍼트위스팅 슬라이딩모드를 이용한 선박계류시스템의 동적제어 (Sliding Mode Control with Super-Twisting Algorithm for Surge Oscillation of Mooring Vessel System)

  • 이상도;이보경;유삼상
    • 해양환경안전학회지
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    • 제24권7호
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    • pp.953-959
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    • 2018
  • 본 논문에서는 바람, 파도, 조류 등의 큰 외란조건에서 선박계류시스템의 계류안정성 확보를 위한 동적제어기 설계를 연구하였다. 선박계류시스템의 비선형 동요를 억제하기 위해 슈퍼트위스팅 알고리즘(STA)을 포함한 슬라이딩 모드 제어(SMC) 기법이 적용되었다. 외란이나 파라미터의 불확실성에 대한 강인성의 장점에도 불구하고, 채터링은 슬라이딩 모드 제어기를 적용하는데 주요 단점이 되고 있다. 1차계 SMC는 정확히 제어 목표치에 수렴 하도록 정밀한 제어는 가능하나, 채터링과 같은 파괴적인 현상과 연계되어 적용에 주요한 장애가 된다. 대신에, STA는 큰 외란에도 불구하고 비교적 높은 정확도를 보이며 채터링 현상을 완전히 제거한다. 1차계 슬라이딩 모드 제어기의 채터링 문제를 피할 수 있는 STA기반의 SMC는 비선형 계류시스템의 동적제어를 위한 아주 효과적인 수단으로 판단된다. 아울러, STA로 제어된 선박계류시스템의 위치오차 궤적은 경계 구역 내에서 형성된다. 끝으로, 슬라이딩 표면과 위치궤적의 오차결과를 통해 STA의 이득제어 효과도 관측할 수 있다.

부유식 파력발전장치용 계류선의 설계 및 안전성 검토에 관한 연구 (Investigation of Safety and Design of Mooring Lines for Floating Wave Energy Conversion)

  • 정동호;남보우;신승호;김현주;이호생;문덕수;송제하
    • 한국해양공학회지
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    • 제26권4호
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    • pp.77-85
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    • 2012
  • A study was performed on the design of a mooring line to maintain the position of a floating WEC (wave energy conversion) system. The procedure to design a mooring line is set up and the safety of the designed mooring system is evaluated using commercial software, Orcaflex. The characteristics curve for one line is analyzed to determine the properties and pretension of a mooring line. While considering the ocean environmental condition and importance of a floating WEC system, a multi-line layout is determined. A 4-point mooring system with 4 lines shows the instability in the yaw motion of the floating WEC system under a designed ocean environmental condition. The redesigned 4-point mooring system with 8 lines is found to be safe on the condition of a harsh ocean environment. The floating WEC system with the redesigned mooring system also shows stable motion in surge and pitch under operating conditions. From a parametric study on the mooring line length, the extreme value of the mooring line tension is found to be very sensitive to the pretension and length of mooring line. The results of this study can contribute to the establishment of a design procedure for mooring lines.

Dynamics model of the float-type wave energy converter considering tension force of the float cable

  • Hadano, Kesayoshi;Lee, Sung-Bum;Moon, Byung-Young
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권2호
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    • pp.217-224
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    • 2014
  • We have developed the novel device that can extract energy from ocean waves utilizing the heaving motion of a floating mass. The major components of the energy converter are: a floater, a counterweight, a cable, a driving pulley, two idler pulleys, a ratchet, and a generator. The device generates power through the tension force in the cable and the weight difference between the floater and the counterweight. When the system is at static free condition, the tension in the cable is equal to the weight of the counterweight which is minimum. Therefore it is desirable to keep the counterweight lighter than the floater. However, experiments show that during the rise of the water level, the torque generated by weight of the counterweight is insufficient to rotate the driving pulley which causes the cable on the floater side to slack. The proposed application of the tension pulley rectifies these problems by preventing the cable from becoming slack when the water level rises. In this paper, the dynamics model is modified to incorporate the dynamics of the tension pulley. This has been achieved by first writing the dynamical equations for the tension pulley and the energy converter separately and combining them later. This paper investigates numerically the effect of the tension pulley on various physical quantities such as the cable tension, the floater displacement, and the floater velocity. Results obtained indicate that this application is successful in suppressing large fluctuations of the cable tension.

부유식 가변 피치형 수직축 풍력발전기의 발전효율에 관한 실험 연구 (Experimental Study on Efficiency of Floating Vertical Axis Wind Turbine with Variable-Pitch)

  • 김재희;조효제;황재혁;장민석;이병성
    • 한국해양공학회지
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    • 제32권3호
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    • pp.202-207
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    • 2018
  • This paper presents the efficiency of a floating vertical axis wind turbine with variable-pitch. A model was designed to use the lift force and drag force for blades with various pitch angles. The blade's pitch angle is controlled by the stopper. To validate the efficiency of the wind turbine discussed in this paper, a model test was carried out through a single model efficiency experiment and wave tank experiment. The parameters of the single model efficiency experiment were the wind speed, electronic load, and pitch angle. The wave tank experiment was performed using the most efficient pitch angle from the results of the single model efficiency experiment. According to the results of the wave tank experiment, the surge and pitch motion of a structure slightly affect the efficiency of a wind turbine, but the heave motion has a large effect because the heights of the wind turbine and wind generator are almost the same.

TURBULENCE PRODUCED BY TSUNAMIS IN GALAXY CLUSTERS

  • FUJITA YUTAKA;MATSUMOTO TOMOAKI;WADA KEIICHI
    • 천문학회지
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    • 제37권5호
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    • pp.571-574
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    • 2004
  • Clusters of galaxies are filled with X-ray emitted hot gas with the temperature of T ${\~}$2-10 keV. Recent X-ray observations have been revealing unexpectedly that many cluster cores have complicated, peculiar X-ray structures, which imply dynamical motion of the hot gas. Moreover, X-ray spectra indicate that radiative cooling of the cool gas is suppressed by unknown heating mechanisms (the 'cooling flow problem'). Here we propose a novel mechanism reproducing both the inhomogeneous structures and dynamics of the hot gas in the cluster cores, based on state-of-the-art hydrodynamic simulations. We showed that acoustic-gravity waves, which are naturally expected during the process of hierarchical structure formation of the universe, surge in the X-ray hot gas, causing a serous impact on the core. This reminds us of tsunamis on the ocean surging into an distant island. We found that the waves create fully-developed, stable turbulence, which reproduces the complicated structures in the core. Moreover, if the wave amplitude is large enough, they can suppress the cooling of the core. The turbulence could be detected in near-future space X-ray missions such as ASTRO-E2.

An Effective Adaptive Autopilot for Ships

  • Le, Minh-Duc;Nguyen, Si-Hiep;Nguyen, Lan-Anh
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.720-723
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    • 2005
  • Ship motion is a complex controlled process with several hydrodynamic parameters that vary in wide ranges with respect to ship load condition, speed and surrounding conditions (such as wind, current, tide, etc.). Therefore, to effectively control ships in a designed track is always an important task for ship masters. This paper presents an effective adaptive autopilot ships that ensure the optimal accuracy, economy and stability characteristics. The PID control methodology is modified and parameters of a PID controller is designed to satisfy conditions for an optimal objective function that comprised by heading error, resistance and drift during changing course, and loss of surge velocity or fuel consumption. Designing of the controller for course changing process is based on the Model Reference Adaptive System (MRAS) control theory, while as designing of the automatic course keeping process is based on the Self Tuning Regulator (STR) control theory. Simulation (using MATLAB software) in various disturbance conditions shows that in comparison with conventional PID autopilots, the designed autopilot has several notable advantages: higher course turning speed, lower swing of ship bow even in strong waves and winds, high accuracy of course keeping, shorter time of rudder actions smaller times of changing rudder direction.

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작동기수가 부족한 자율무인잠수정 그룹의 편대제어기법 (Formation Control of a Group of Underactuated Autonomous Underwater Vehicles)

  • 이계홍;전봉환;이판묵;임용곤
    • 제어로봇시스템학회논문지
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    • 제14권12호
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    • pp.1197-1204
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    • 2008
  • This paper presents an asymptotic formation control scheme for a group of underactuated autonomous underwater vehicles (AUVs) where only three control inputs - surge force, yaw moment and pitch moment are available for each vehicle's six degree of freedom (DOF) underwater motion. Usually, the dynamics agents applied in most of the formation algorithms presented so far have been modeled as particle systems, which is a simple double-integrator system. Therefore, these algorithms cannot be directly applicable to the practical systems, especially to the underwater vehicles whose dynamics are highly nonlinear. Moreover, the vehicles considered in this paper are underactuated. The formation control is derived using general potential function method, and the corresponding potential function consists of two parts: interactions between vehicles and virtual-leader following. Proposed formation scheme guarantees asymptotic local stability of closed-loop system. Numerical simulations are carried out to illustrate the effectiveness of proposed formation scheme.

붐의 탄성효과를 고려한 해상크레인의 유연 다물체 동역학 해석 (Analysis of Dynamic Response of a Floating Crane and a Cargo with Elastic Booms Based on Flexible Multibody System Dynamics)

  • 박광필;차주환;이규열
    • 대한조선학회논문집
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    • 제47권1호
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    • pp.47-57
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    • 2010
  • This study analyzes the dynamic response of a floating crane with a cargo considering an elastic boom to evaluate(or for evaluation of) its flexibility effect on their dynamic response. Flexible multibody system dynamics is applied in order to establish a dynamic equation of motion of the multibody system, which consists of flexible and rigid bodies. In addition, a floating reference frame and nodal coordinates are used to model the boom as a flexible body. The study also simulates the coupled surge, pitch, and heave motions of the floating crane carrying the cargo with three degrees of freedom by numerically solving the equation. Finally, the simulation results of the elastic and rigid booms are comparatively analyzed and the effects of the flexible boom are discussed.