• 제목/요약/키워드: Ship motion theory(Strip Method)

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유한(有限)깊이의 물에서의 선체운동(船體運動) -선수선형(船首船型)의 영향(影響)- (The Effect of Forebody Forms on the Ship Motion in Water of Finite Depth)

  • 황종흘;이기표
    • 대한조선학회지
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    • 제13권1호
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    • pp.11-16
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    • 1976
  • The effect of the bow shape on the ship motion response in longitudinal regular waves of water of finite depth is investigated by employing the strip theory. The two-dimensional hydrodynamic forces(added mass and damping) were calculated by close-fit method for water of finite depth. The models for investigation are U and V bow ship forms of block coefficient 0.8 with constant after body which were used by Yourkov [2] and recently by Kim [3] for their deep water investigations. The following results are obtained by the present numerical experiments. (1) It is confirmed that the damping coefficient of the V-bow ship is greater than that of U-bow ship and in consquence the amplitude of heave and pitch of V-bow ship is smaller than that of U-bow ship among longitudinal regular head waves in water of finite depth (2) The merit of the V-bow ship on the motion damping is more significant in heave than in pitch, and is decreasing with the shallowness of water depth. (3) The change of bow form gives little effect on the wave exciting force and moment compared with the motion responce.

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선미식 트롤선의 동요특성에 관한 이론적인 연구 (A Theoretical Study on the Charactersitics of Motion Response of Stern Trawlers)

  • 강일권;윤점동;조효제
    • 한국항해학회지
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    • 제22권2호
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    • pp.89-98
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    • 1998
  • In the field of research of seakeeping quality, much development has been made incent years using the method of calculation based on the strip theory. It is indispensable to grasp quantitatively the seaworthiness of a ship in order to draw correct design at initial stage and to perform proper operations at sea services. In this paper, the responses of three fishing vessels are calculated using statistical and spectral analyzing method to get the characteristics of the motion response. From the theoretical result we know that the significant values of the pitching and rolling motion can be signiicantly affected by not only the ship's tonnage but also the mean wave period in spite of the similar sea environment. So we can apply these expected results to the safe maneuvering and fishing operations in rough weather conditions by combining environmental circumstance with the stability condition of vessels.

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직접해석법(直接解析法)에 의한 선체(船體)의 종강도 해석 (Longitudinal Strength Analysis of Hull Girder by Direct Analysis Procedure)

  • 신종계;노인식;신병천;이호섭
    • 대한조선학회지
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    • 제21권4호
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    • pp.40-48
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    • 1984
  • The computer program DASH(Direct Analysis of Ship's Hull), based on the direct calculating procedure as proposed at the 4th ISSC(1970), was developed. The DASH program is designed by the following calculation procedure: 1) Derivation of the design wave loads through the ship motion analysis based on the strip theory. 2) Stress analysis of the hull girder based on the 7-degree of the freedom beam theory including the warping torsion effect. 3) Long-term prediction of the stresses based on the statistical approach using sea-spectrums and ocean wave data in the ship's route. An example calculation was performed for the purpose of a demonstration of the present approach on the 16,200 DWT Oil Tanker. The results are discussed and compared with the conventional method.

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선형(船型)이 선체운동(船體運動)에 미치는 영향(影響)에 관(關)한 연구(硏究) (The Effect of Forebody Forms on the Ship Motion in Regular Head Waves)

  • 김진안
    • 대한조선학회지
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    • 제12권1호
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    • pp.47-58
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    • 1975
  • The effect of the bow shape on the ship motion response among longitudinal regular waves, is investigated employing the strip theory. The two dimensional hydrodynamic forces such as added mass and damping are calculated by the integral equation method for arbitrary sections. Nine ship models are selected for investigation. They are U, UV and V bow ship forms of different block coefficient of 0.6, 0.7 and 0.8 with constant after body. The heave amplitude of the V bow ship is smaller than that of the U bow ship in the whole range of wave length except extremely short wave as were stated by the earlier investigators. This results holds also in the case of bow vertical motions such as vertical relative displacement, velocity and acceralation. As to the pitch amplitudes, the V bow ship gives smaller value in long waves but larger value in short waves. However, heave and pitch phase angles are practically not influenced by the form of the fore body sections. In the bow motions, a little difference in phase angle is appeared in the vicinity of the wave which has same ship length. With respect to the wave exiting force and moment unfovourable effects could be expected in V bow ships. And these tendency hold also in the wave bending moment.

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선박의 비선형 유체력을 고려한 파랑중 동적 강도 해석법에 관한 연구 (A Study on the Dynamic Strength Analysis of the Hull Girder Among Waves Considering Non-Linear Hydrodynamic forces)

  • 신구균;김사수;손성완
    • 대한조선학회논문집
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    • 제29권4호
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    • pp.152-172
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    • 1992
  • 대파고 파랑중을 항해하는 선박은 큰 선체 운동으로 인하여 수면하 단면 형상이 시시각각 크게 변하므로 자유 표면 조건, 물체 표면 조건의 비선형성에 의한 비선형 유체력의 영향이 무시될 수 없게 된다. 경우에 따라서는 선저가 파면으로부터 충격력을 받는 슬래밍 현상과 선수가 파도를 뒤집어 쓰는 청파 현상등과 같은 충격적 유체력이 선체에 가해지는 등 복잡한 문제가 발생하게 된다. 본 연구에서는 선체를 가변 단면보의 탄성체로 이상화하여 파랑중 선체 거동을 박육 단면보 이론에 의해 정식화하고 파랑 하중으로는 수면하 단면 형상 변화에 따른 비선형 유체력과 momentum slamming이론을 이용한 유체 충격력을 고려하여 대파고 파랑 중 탄성체인 선체의 응답을 추정하는 해석 기법을 개발하여 이를 기존의 실험결과와 비교 그 타당성을 확인하고, 이의 응용으로 본 기법에 의하여 4만톤급 정유 운반선에 적용하여 정면파 및 사파중에서 파고, 파장, 선속을 파라미터로 한 수치 계산을 수행하고 여러가지 파라미터 변화에 대한 선체 구조의 동적 강도 응답 특성을 계통적으로 분석하여 보았다. 본 연구에서 개발된 동적강도 해석법은 대파고 중에서 유체력의 비선형성 및 유체 충격력까지 고려한 해석기법이므로 신구조 방식 선박에 대한 직접 설계법의 확립 뿐만 아니라 슬래밍 등에 의한 선체 절손 사고의 원인 규명에도 유용하게 적용할 수 있을 것으로 사료된다.

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종규칙파중(縱規則波中)에서의 선박(船舶)의 부가저항(附加抵抗) 계산(計算) (On the Added Resistance of a Ship in a Regular Head Sea)

  • 김효철
    • 대한조선학회지
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    • 제20권3호
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    • pp.17-20
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    • 1983
  • There have been many investigations of predicting the added resistance of a ship in seaway since Havelock discussed this topic in 1937. Among these researches, Maruo's theoretical approach is known as the most consistent mathematical representation for added resistance of a ship in regular head sea. In his theory, the hull form of a ship is represented under the slender body approximation. But the motion responses which were used for the calculation of the added resistance have been obtained by using the strip method which is based on an approximation that the hull form may be expressed as set of two dimensional cylinder sections in longitudinal direction. Therefore two different methods for hull form representation were implicity used in Maruo's original work for the added resistance calculation. Utilizing the characteristics that hull forms are usually slender, Kan expressed the hull form as two dimensional cylinder at each station by using the Taylor series expansion for the length wise direction. Putting this idea into Maruo's original work, the added resistance can be obtained with the explicitly unique representation of the hull form. For the purpose of comparison the added resistance of a hull form(series 60, Cb=0.6) was calculated by using the motion response obtained by Shintani. The numerical result showes a good qualitative agreement with the experimental result by Sibul.

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불규칙 파랑 중 선체 동요 평가에 관한 연구 (A study on evaluation of ship motion in irregular waves)

  • 이창헌;최찬문;안장영;김석종;김병엽;시게히로 리츠오
    • 수산해양기술연구
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    • 제51권4호
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    • pp.504-511
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    • 2015
  • In this paper, the results of evaluating the passenger comfort due to the standard deviation of acceleration in vertical and lateral direction regarding the ship response in irregular wave by ordinary strip method in regular wave and energy spectrum using linear superposition theory in order to evaluate the motion of experimental ship are as follows. According to the results of ship response, it was possible to find that, in order to reduce the motion of ship, a ship operating in bow sea was more stable than in quartering sea. In the results of analyzing the standard deviation of acceleration in vertical direction according to each component wave pattern, when there was a wave length of 56m and an average wave period of 6 sec, most of cases showed the peak value. And among them, the standard deviation was 0.35 which was the highest in head sea. And in case of lateral direction, the maximum value was shown in a wave length of 100m and an average wave period of 8 sec. And it was 0.16 in beam sea and ${\chi}=150^{\circ}$. In the evaluation of passenger comfort due to standard acceleration in vertical and lateral direction, it was 80% in head and bow sea. On the other hand, it was shown to be 15% in follow sea. Accordingly, when the expected wave height in a sea area where a training ship was intended to operate was known, it was possible to predict the routing of ship. And altering her course could reduce the passenger comfort by approximately 50%.

초고속 쌍동선에 대한 내항성능 해석 방법 비교 (스트립 방법과 3-D Panel 방법) (The Comparison of Seakeeping Performance Analysis Methods for a High Speed Catamaran (Strip and 3-D Panel Method))

  • 이호영;송기종;염덕준
    • 대한조선학회논문집
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    • 제33권2호
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    • pp.127-138
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    • 1996
  • 고속선의 내항성능 해석 방법으로 스트립 방법, 통합이론(Unified theory), 3차원 판넬 방법등이 널리 사용되고 있다. 스트립 이론은 2차원적 해석 방법으로 전진속도가 빠른 경우나 추파중 저주파수 영역에서 유체력 계수와 운동응답이 정확하지 않으며, 통합이론은 내부영역에서는 2차원적 해석을 사용하고 외부영역은 세장체 이론을 사용하여 해석하는 방법으로 수학적으로 복잡한 단점이 있다. 3차원 판넬 방법을 이용한 해석은 계산 시간이 오래 걸리지만 고속인 경우에 모든 주파수 영역에서 정확한 해를 주는 것으로 알려져 있고, 전산기의 급속한 발달과 더불어 가장 권장되는 방법이다. 본 논문에서는 고속선의 해석에 전통적으로 사용되고 있는 스트립 법에 의한 해석과 3차원 판넬 방법을 이용한 해석법을 비교한다. 3차원 판넬 방법에 의한 해석은 쏘오스 분포법과 전진하면서 동요하는 그린 함수를 사용하고, 그린 함수의 수치, 계산은 Hoff의 방법을 이용하였고, 그린 함수는 종축에 대한 대칭 관계를 이용하여 계산 시간을 줄였다. 계산에 사용된 선종은 카타마란(Catamaran) 형태의 고속선이며 상기 두 방법에 의해 구해진 유체력 계수, 파강제력과 주파수 응답함수 등을 비교하였고, 또한 불규칙파중 운동응답의 계산 결과를 비교 검토해 보았다.

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An assessment of the effect of hull girder vibration on the statistical characteristics of wave loads

  • Ogawa, Yoshitaka;Takagi, Ken
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제3권1호
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    • pp.80-85
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    • 2011
  • For the assessment of statistical characteristics of wave loads in the real sea state, the probability distribution of wave loads are computed based on the sufficient duration of computations in irregular waves. First of all, the estimation of wave impact loads is well modified applying the displacement potential formulation, which was proposed by one of authors, for solving Wagner's flow model. Consequently, the present computation method is also modified. Prior to the computation in irregular waves, preliminary computation to determine the adequate number of realization of irregular waves is examined. The effect of hull girder vibration on the statistical characteristics is examined by means of the computation with/without hull girder vibration. It is found that hull girder vibration has a certain effect on the probability of occurrence of wave loads. Furthermore, computations taking account of the effect of operation, that is the effects of ship speed and course change, is conducted for the rational evaluation of the effects of hull girder vibration. It is clarified that the effect of operation on the statistical characteristics of wave loads is significant. It is verified that the evaluation without the effect of operation may overestimate the effect of hull girder vibration.

다축선의 프로펠러 레이싱 추정에 관한 연구 (Propeller racing of ocean-going ships with multiple screw propellers)

  • 박종헌
    • 수산해양기술연구
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    • 제43권3호
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    • pp.222-231
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    • 2007
  • This paper represents a basic statistical examination on the navigability of ocean-going ship from the point of estimating the time lasting period when propeller racing occurred by using the basic probability theory and the statistics. The propeller racing is one of the most important seakeeping qualities in relation to the safety of the main engine and shafting system. The trend of the racing has been mainly investigated in order to estimate allowable maximum propeller diameter, operation of ocean-going ships, etc.. In those studies, the propeller racing generally and mainly means the situation (propeller exposed) in which the relative motion amplitude between ship hull and wave surface would exceed a depth of point in rotary disk propeller. Therefore, it seems that the magnitude of the amplitude and its exceeding frequency of propeller racing have been examined as a principal subject of study as usual. However, the time during which the amplitude exceeds the depth of point, that is, the propeller exposes in the air, must be also one of most important factor affecting the trend of propeller racing. Then, this paper proposes a new practical method for estimating the time lasting of exposed propeller related to propeller racing in rough-confused seas on the basis of the linear strip theory and the statistics. And, numerical examples of estimating the propeller racing probability are given for four wide ship forms. Finally the usefulness of the proposed method for predicting propeller racing based on the time lasting period is discussed.