• 제목/요약/키워드: Optimal ship size

검색결과 47건 처리시간 0.021초

A Merchant Ships Size Optimization Model

  • Choi, Ki-Chul
    • 한국국방경영분석학회지
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    • 제12권1호
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    • pp.78-86
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    • 1986
  • This paper analyzes how a shipowner or charterer may determine the specification of optimal ship size for a given route with respect to certain market requirements. The theory of optimal ship size, a methodology for estimating scale economics, and the various factors affecting ship size are examined using a typical conventional cargo ship and bulk cargo carriers based on shipowners' cost data.

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일반살화물선의 경제성 평가에 관한 연구 (속력 및 적화톤수를 중심으로) (A Study on the optimal Size and Speed of Common Bulk Carrier)

  • 양시권;손성빈
    • 한국항해학회지
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    • 제6권1호
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    • pp.19-39
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    • 1982
  • There may be a lor of studies on the economic design of ship for the most favorable combination of design basis on the owner's request. However, there are few on the economical ship's size and speed for the ship owner's stand point. This paper describes on the optimal ship's size and speed to the given marine commercial environments for the owner's requirement to the shipyard. As the result of the paper, the criterion curve of bulk carrier will also be used to assess existing ships for their profitability.

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항만하역 노동력의 효율적인 배분에 관하여 (On the Optimal Allocation of Labour Gangs in the Port)

  • Lee, Cheol-Yeong;Woo, Byung-Goo
    • 한국항만학회지
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    • 제1권1호
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    • pp.21-47
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    • 1987
  • Nowaday all the countries of the world have studied the various problems caused in operating their own ports efficiently. Ship delay in the port is attributal to the inefficient operation in the navigation aids, the cargo handling, the storage and transfer facilities, and to the inefficient allocation of gangs or to a bad service for ships. Among these elements the allocation of gangs is the predominating factor in minimizing ship's turn round time. At present, in the case of Pusan Port. the labour union and stevedoring companies allocate gangs in every hatches of ships by a rule of thumb, just placing emphasis on minimizing ship's turn round time, without applying the principle of allocation during the cargo handling. Owing to this the efficiency of the cargo handling could not be expected to be maximized and this unsystematic operation result in supplying human resources of much unnecessary surplus gangs. Therefore in this paper the optimal size and allocation of gangs for minimizing the ship's turn round time is studied and formularized. For the determination of the priority for allocation the evaluation function, namely $F=PHi^{n}{\times}(W+H)$, can be obtained; where, PHI : Principal Hatch Index W : Total Cargo Weight represented in Gang-Shifts H : Total Number of Ship's hatches and also for the optimal size of gangs the average number of gang allocated per shift (Ng), namely Ng=W/PHI, is used. The proposed algorithm is applied to Pusan Port and its validity is verified.

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Bus 형 LAN의 Contention-Token 혼합형 프로토콜에 관한 연구

  • 김정선
    • 정보와 통신
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    • 제4권4호
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    • pp.505-524
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    • 1987
  • Nowaday all the countries of the world have studied the various problems caused in operating their own ports efficiently. Ship delay in the port is attributal to the inefficient operation in the navigation aids, the cargo handling, the storage and transfer facilities, and to the inefficient allocation of gangs or to a bad service for ships. Among these elements the allocation of gangs is the predominating factor in minimizing ship's turn round time. At present, in the case of Pusan Port. the labour union and stevedoring companies allocate gangs in every hatches of ships by a rule of thumb, just placing emphasis on minimizing ship's turn round time, without applying the principle of allocation during the cargo handling. Owing to this the efficiency of the cargo handling could not be expected to be maximized and this unsystematic operation result in supplying human resources of much unnecessary surplus gangs. Therefore in this paper the optimal size and allocation of gangs for minimizing the ship's turn round time is studied and formularized. For the determination of the priority for allocation the evaluation function, namely $F=PHi^{n}{\times}(W+H)$, can be obtained; where, PHI : Principal Hatch Index W : Total Cargo Weight represented in Gang-Shifts H : Total Number of Ship's hatches and also for the optimal size of gangs the average number of gang allocated per shift (Ng), namely Ng=W/PHI, is used. The proposed algorithm is applied to Pusan Port and its validity is verified.

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Development of Pareto strategy multi-objective function method for the optimum design of ship structures

  • Na, Seung-Soo;Karr, Dale G.
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제8권6호
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    • pp.602-614
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    • 2016
  • It is necessary to develop an efficient optimization technique to perform optimum designs which have given design spaces, discrete design values and several design goals. As optimization techniques, direct search method and stochastic search method are widely used in designing of ship structures. The merit of the direct search method is to search the optimum points rapidly by considering the search direction, step size and convergence limit. And the merit of the stochastic search method is to obtain the global optimum points well by spreading points randomly entire the design spaces. In this paper, Pareto Strategy (PS) multi-objective function method is developed by considering the search direction based on Pareto optimal points, the step size, the convergence limit and the random number generation. The success points between just before and current Pareto optimal points are considered. PS method can also apply to the single objective function problems, and can consider the discrete design variables such as plate thickness, longitudinal space, web height and web space. The optimum design results are compared with existing Random Search (RS) multi-objective function method and Evolutionary Strategy (ES) multi-objective function method by performing the optimum designs of double bottom structure and double hull tanker which have discrete design values. Its superiority and effectiveness are shown by comparing the optimum results with those of RS method and ES method.

배선 및 선박운항일정계획에 관한 연구 -유조선의 운항일정계획을 중심으로- (A Study on Cargo Ships Routing and Scheduling Emphasis on Crude Oil Tanker Scheduling Problems)

  • 허일
    • 한국항해학회지
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    • 제14권1호
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    • pp.21-38
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    • 1990
  • This paper discusses the various modes of operations of cargo ships which are liner operations, tramp shipping and industrial operations, and mathematical programming, simulation , and heuristic method that can be used to solve ships routing and scheduling problems for each of these operations. In particular, this paper put emphasis on a crude oil tanker scheduling problem. The problem is to achieve an optimal sequence of cargoes or an optimal schedule for each ship in a given fleet during a given period. Each cargo is characterized by its type, size, loading and discharging ports, loading and discharging dates, cost, and revenue. Our approach is to enumerate all feasible candidate schedate schedules for each ship, where a candidate schedule specifies a set of cargoes that can be feasibly carried by a ship within the planning horizon , together with loading and discharging dates for each cargo in the set. Provided that candidate schedules have been generated for each ship, the problem of choosing from these an optimal schedule for each ship is formulated as a set partitioning problem, a set packing problem, and a integer generalized network problem respectively. We write the PASCAL programs for schedule generator and apply our approach to the crude oil tanker scheduling problem similar to a realistic system.

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A Study on Intention Exchange-based Ship Collision Avoidance by Changing the Safety Domain

  • Kim, Donggyun
    • 해양환경안전학회지
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    • 제25권3호
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    • pp.259-268
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    • 2019
  • Even if only two ships are encountered, a collision may occur due to the mistaken judgment of the positional relationship. In other words, if an officer does not know a target ship's intention, there is always a risk of collision. In this paper, the experiments are conducted to investigate how the intention affects the action of collision avoidance in cooperative and non-cooperative situations. In non-cooperative situation, each ship chooses a course that minimizes costs based on the current situation. That is, it always performs a selfish selection. In a cooperative situation, the information is exchanged with a target ship and a course is selected based on this information. Each ship uses the Distributed Stochastic Search Algorithm so that a next-intended course can be selected by a certain probability and determines the course. In the experimental method, four virtual ships are set up to analyze the action of collision avoidance. Then, using the actual AIS data of eight ships in the strait of Dover, I compared and analyzed the action of collision avoidance in cooperative and non-cooperative situations. As a result of the experiment, the ships showed smooth trajectories in the cooperative situation, but the ship in the non-cooperative situation made frequent big changes to avoid a collision. In the case of the experiment using four ships, there was no collision in the cooperative situation regardless of the size of the safety domain, but a collision occurred between the ships when the size of the safety domain increased in cases of non-cooperation. In the case of experiments using eight ships, it was found that there are optimal parameters for collision avoidance. Also, it was possible to grasp the variation of the sailing distance and the costs according to the combination of the parameters, and it was confirmed that the setting of the parameters can have a great influence on collision avoidance among ships.

상선의 최적속력 및 적화중량톤과 경제성에 관한 연구 ( 일반살적화물선에 있어서 해운운영상의 여건변동을 중심으로 ) (A Study on Ships Optimal Speed, Deadweight and Their Economy (On the Operations of Common Bulk Carriers Under the Various Managerial Circumstances of Shipping Companies))

  • 양시권
    • 한국항해학회지
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    • 제7권2호
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    • pp.65-113
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    • 1983
  • A lot of studies of ship's economy are on the traditional fields such asreducing propulsion resistance, raising cargo handling rates and lessening building consts, but there are few researches on the merchant ship's economy concerning their deadweights and speeds according to shipping companies managerial cercumstances. Contrary to the contemporary trend that "the bigger, the better, if the cargo handling rate could increased sufficiently to hold down port time to that rate of smmaler vessels", this paper demonstrates the existence of certain limits in ship's size and speed according to the coditions of the freight rates, voyage distances, cargo handing rates, prices of fuel oil, interst rates etc. Fom the curves of criteria contour for various ship's deadweights and speeds which are depicted from the gird search method, one can get the costs and the yearly profit rates under the conditiions of large volume with long term contracts for the transportation of bulk cargoes. In estimating ship's transportation economy, the auther takes the position that the profit rate method is properer than the cost method, and introduces the calculation table of the voyage profit rate index. The use of the criteria contours will be of help to ship owners in determining the size and speed of the ship which will be built or purchased and serve in a certain trade route.

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케미컬 탱커선 운항노선별 최적선형에 관한 연구 (An Investigation on the Optimal Ship Size for Chemical Tankers by Main Shipping Routes)

  • 김재호;김택원;우수한
    • 한국항해항만학회지
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    • 제39권6호
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    • pp.439-450
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    • 2015
  • 본 연구는 아시아 케미컬 탱커 시장을 구성하는 수요 및 공급적 특성을 알아보고 케미컬 탱커선의 주요 비용을 파악하여 탱커시장의 주요 노선별로 최적선형을 제시하는 것이다. 따라서 본 연구는 선박 운항 상 비용분석에 관한 선행연구사례를 파악하고 케미컬 탱커 관련 연구를 통해 케미컬 탱커선에 적용 가능한 비용모델을 파악하였다. 또한 각 비용요소에 해당하는 데이터를 수치해석(Numerical Analysis)하고 연구결과의 민감도를 최소화하기 위해 시나리오 분석을 시행하였다. 그 결과 다음과 같이 다섯 가지의 시사점을 도출할 수 있다. 첫째, 연구대상 선형에서 평균적인 마켓상황을 가정했을 때, '극동-중동 노선'에서는 12,000DWT급 선형, '극동-동남아시아 노선'에서는 9,000DWT급 선형, 극동지역 내 에서는 3,000DWT급이 비용측면에서 경쟁력을 보일 수 있다. 둘째, 케미컬 탱커의 선박 사이즈가 커질수록, 연료의 가격이 상승함에 따른 경쟁우위가 높아지고 작은 사이즈의 경우 연료가격이 하락할 경우 경쟁우위가 높아지는 것으로 나타났다. 셋째, 케미컬 탱커의 용선료 변동은 호황기와 불황기의 표준편차가 20%미만으로 시황의 영향을 덜 받는 것으로 나타났으며, 비슷한 비율로 상승 시 사이즈별 경쟁력에는 큰 차이가 없는 것으로 나타났다. 넷째, 케미컬 탱커의 Parcelling의 규모가 커질수록 큰 사이즈의 케미컬 탱커가 경쟁력을 가지며 반대의 경우 작은 탱커의 경쟁력이 상승하는 것으로 나타났다. 마지막으로, 케미컬 탱커의 재항시간은 선박의 비용측면에 큰 영향을 미치는데 재항시간이 감소할 경우 큰 사이즈의 선박 경쟁력이 더욱 상승하여 보다 짧은 루트에 투입하여도 경쟁력이 있는 것으로 나타났다.

Two-stage layout-size optimization method for prow stiffeners

  • Liu, Zhijun;Cho, Shingo;Takezawa, Akihiro;Zhang, Xiaopeng;Kitamura, Mitsuru
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제11권1호
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    • pp.44-51
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    • 2019
  • Designing sophisticate ship structures that satisfy several design criteria simultaneously with minimum weight and cost is an important engineering issue. For a ship structure composed of a shell and stiffeners, this issue is more serious because their mutual effect has to be addressed. In this study, a two-stage optimization method is proposed for the conceptual design of stiffeners in a ship's prow. In the first stage, a topology optimization method is used to determine a potential stiffener distribution based on the optimal results, whereupon stiffeners are constructed according to stiffener generative theory and the material distribution. In the second stage, size optimization is conducted to optimize the plate and stiffener sections simultaneously based on a parametric model. A final analysis model of the ship-prow structure is presented to assess the validity of this method. The analysis results show that the two-stage optimization method is effective for stiffener conceptual design, which provides a reference for designing actual stiffeners for ship hulls.