우리나라는 산업통상자원부를 통해 ‘LNG 벙커링(연료공급) 전용선 건조지원사업’을 한국가스공사를 중심으로 추진하고 있고, 동시 해양수산부는 부산신항내 LNG 벙커링 터미널 구축을 추진하고 있다. LNG 벙커링 전용선박은 LNG 연료를 터미널에서 대상 선박으로 공급하기 위한 필수 대상이고, 이에 따라 안정 운항에 대한 절차서의 필요성이 대두되고 있다. 따라서 본 연구는 연안선박용 LNG벙커 링 전용선박의 운항 절차서를 제안하기 위하여 부산 신항에서 부산항 정박지로 운항하는 연안선박용 LNG 벙커링 전용선박의 안정성을 평가하였다. 이를 위해 포텐셜 유동해석 기반의 운동해석을 수행하여 취득한 선체운동 응답진폭함수를 운항 해역의 5년간 관측된 실해역 자료와 부산 연안에 적합한 TMA스펙트럼과 합성하여 유의파고별 연안선박용 LNG 벙커링 전용 선박의 내항성능 평가를 수행하였다. 그 결과는 유의파고 2 m 이상에서 횡동요와 수평가속도가 내항성능에 주요 위험 요소가 됨을 알 수 있었다. LNG 벙커링 전용선박의 운항 가능 기간은 총 관측기간의 83.3 ~ 99.9 % 수준임을 알 수 있었다.
한국 연안의 각 항로에 취항하고 있는 대표적인 선형의 여객선들을 대상으로, 각 선형별로 선체운동 계산, 내항성능을 분석하여 선박의 안전성을 평가하였다. 이를 위하여 선박의 안전운항과 가장 밀접한 관련을 갖는 바람과 파랑을 주요 해역별로 비교 분석하였다. 이러한 기강정보를 입력요소로 하여 주요해역을 항행하는 대표적인 선형의 여객선들에 대하여 수치 시뮬레이션을 실시하여 여객선의 항해안정성을 평가하였다.
The wheelhouse front glass of a Fore-Bridge-Ship (Ro-Ro Ship) was broken by the shipping of water in rough seas, and then the flooding of seawater into the wheelhouse caused the uncontrollable condition of the ship. The hull which was entered into the floating condition rolled severely, and the heavy rolling caused secondary damage such as the collapse of a lot of cargo. It was an incredible accident because the height of bow freeboard was about 2.5 times higher than the standard height of minimum bow freeboard regulated by the International Load Line Convention(1966). And it would be also difficult for navigators to imagine a great deal of seawater flooding into the wheelhouse because the front glass was positioned at about 20m height above the sea surface. In this paper, we carried out the evaluation for the safety navigation of the Fore-Bridge-Ship numerically against ship's speed and encountering angle to the wave in each sea state of rough sea, by using the integrated seakeeping performance index (ISPI) which is able to evaluate synthetically the safety operation of ships. And then the problem on the application of the past criteria proposed as the safety navigation of a merchant ship was clarified by inquiring the dangerousness of the shipping of water at her bow deck, which caused the breakage of the wheelhouse front glass.
Generally, the navigational safety of a ship under various loading conditions is evaluated by a loading manual. However, the loading manual handles only statical factors such as weight and buoyancy of ship without including any wave conditions. Practically ship's safety is much concerned with the occurrences on the rough sea as propeller racing, rolling, deck wetness, vertical acceleration, lateral acceleration, slamming and so on. The purpose of this paper is to present a synthetic and practical evaluation method of navigational safety using the integrated seakeeping performance index(ISPI) under loading conditions of ship in seaways. The method is calculated by means of the ISPI by measuring only vertical acceleration. Judgement of dangerousness is carried out for four lading conditions : homogeneous full loaded, half loaded, heavy ballast loaded, and normal ballast loaded conditions. In developing the practical evaluation system of navigational safety, it is useful to solve the difficulties in measuring factors by sensors. And by applying the evaluation diagrames, navigators are able to avoid dangerousness by keeping away of the danger encountering angle of wave direction which the diagram shows.
최근 선박을 이용한 화물운송의 증대, 해양관광 및 레저 활동을 위한 연안 여객선의 운항 증가, 그리고 해양생태계 파괴와 사회적 문제로 확산된 서해안 기름유출 사고 등 해양에 대한 관심이 갈수록 고조되고 있는 상황에서 선박의 안전운항은 필수적인 요건이다. 이러한 상황에서 현재 운용되고 있는 선박의 출항통제기준에 대한 보다 정량적이고 객관적인 검토가 시급한 실정이다. 본 논문에서는 선박 운항 시 안전운항과 가장 밀접한 관련을 갖는 파랑을 분석하여, 우리나라 연안항로에 취항하고 있는 대표적인 선형의 여객선들을 대상으로 해상상태 및 선형에 따라 내항성능지표를 이용하여 선박의 항해안전성을 평가하였다. 이러한 결과는 선박출항통제 기준의 개선과 연안 여객선의 안전운항에 큰 도움이 될 것으로 판단된다.
최근에 선박이 대형화, 고속화되면서 선수 충격파 영향으로 인하여 선체 또는 화물에 잦은 손상을 초래하기도 하고, 극판적인 상황에서는 선박이 절단되기도 한다. 본 논문에서는 내항성능 평가요소 중 하나인 상하가속도 값을 선교에 설치된 선체감시장치를 이용하여 해상상태별 변화량을 계측하고, 이를 모형시험 및 이론계산 결과와 상호 비교하였다. 또한 ITTC에서 제시하는 내항성능 기준치와도 비교함으로써 실습선 한바다호의 내항성능을 확인하였다. 이러한 결과는 앞으로 경험할 수 있는 다양한 해상상태에서의 작업가능성 및 위험성 정도의 예측을 가능하게 함으로써 선박의 안전운항에 큰 도움이 될 것으로 판단되며, 또한 다양한 실선계측 자료를 통하여 조선소에서는 보다 우수한 성능의 선박 건조가 가능하리라 본다.
본 논문은 기상 예보 및 목측 관측의 파랑 정보를 이용한 운항 선박의 최적 항로 평가 시스템 개발에 관한 내용을 다룬다. 예로부터 선장 및 항해사는 경험적으로 기상과 선박 상태를 고려하여 최적의 항로를 선택하여 항해하여 왔다. 이는 선장의 경험을 바탕으로 해류나 파랑에 대한 기상 예보 정보를 활용하여 최적항로를 결정하는 것으로 아직까지 선상에서 항로 결정을 보조해주는 디지털화한 시스템은 그 사례를 찾아보기 힘들다. 본 논문에서는 선박의 운항 효율성과 안전성 관점에서 구성되어져 있는 선상 최전 항로 평가 시스템을 소개한다. 효율적인 항해를 위해서는 도착예정시긴 및 연료소모량을 최소로 하는 최적 항로를 구한다. 이는 선박의 파랑 중 부가저항에 기초를 둔 선속 저하 및 마력 증가를 고려하여 계산한다. 안전성 관점에서는 3D 판넬법에 기포를 둔 선박의 내항 계산을 본 시스템에서 구현하여 내항 평가를 수행한다. 기본적으로 기강 예보는 본 시스템을 구동하기 위해 우선적으로 준비되어져야만 한다.
본 연구의 목적은 항해하고 있는 선박의 항해안전성을 평가할 수 있는 탑재형 내항성능 평가시스템 개발을 위한 각 내항성능 평가요소에 대한 상대위험도 D/B를 구축하고자 한다. 탑재형 내항성능 평가시스템은, 선박에 설치하여 선체 운동에 의해 발생하는 상하방향의 가속도를 측정하는 상하가속도 측정기와, 선박의 항해 안전성을 평가하는 종합내항성능지표를 계산하는 컴퓨터 및 종합내항성능지표를 토대로 내항성능 평가도 및 경과도를 모니터 화상 처리 공간상에 표시되도록 구성되어진다. 본 논문에서는 이중에서 선박의 변환 평가치 및 한계 평가치를 사용하여 파랑 중 선박의 종합적인 항해안전성을 평가하는 종합내향성능지표를 계산하는데 필요한 내항성능 평가 프로그램의 알고리즘에서 중요한 역할을 담당하는 내항성능 평가요소의 상대위험도 D/B를 구축하는 방법을 제시한다. 그리고 모델 선박을 사용하여 구축된 상대위험도 함수가 주어진 화물 적재상태, 해상상태, 파향 및 선속에 대한 해당 조건을 토대로 내항성능 평가 프로그램에서 정확하게 구현될 수 있는지를 검토하였다.
This study aims to develop the information service system of integrated seakeeping performance for seagoing vessels. It has been successful in developing the intended system which has made possible to provide the following functions and capabilities: ⦁ immediate computation of the dynamic motions of a ship against the present and future weather conditions; ⦁ evaluation of the integrated seakeeping performance of a ship on a real time basis and providing the navigators with the seakeeping informations on the spot enabling them to take the most appropriate countermeasures; and ⦁ supporting the navigators in the selection of a safe sailing route by providing the integrateseakeeping performance.
From a ship's safe operation point of view, it is very important to estimate the navigational safety in a seaway. The seakeeping performance can be defined as the ability of a ship to go to sea, and to accomplish its missions successfully and safely even in adverse environmental conditions. There are several factors presently adopted for evaluating seakeeping performance. But a hardware of the system considering all these factors has not been developed since some of them can not be measured by sensors. In this paper, a synthetic method of evaluating navigational safety is developed by measuring the vertical and lateral acceleration. An experiment by using real measuring carried out on board the T/S 'HANNARA' The equipment was measured every 4 hours for more than 30 minutes the acceleration by accelerometer, analyzed its acceleration values and calculated navigational dangerousness. As the results of this on board experiment, the system is carried conviction to be useful as evaluating seakeeping performance.
There is a limitation for a ship which is sailing on sea to gather weather and seastate informations. To make up for this weakness, land organizations can gather wider variety of information and evaluate the seakeeping performanceon ship. And supply this information to the ship. In this study, calculated the response amplitude of shp motions with the weather information provided in real time, the nominal speed loss with obtaining increase of resistance caused by wave and stochastic process of the seakeeping performance elements. And the results have been achieved to develop a system which can evaluate the synthetic seakeeping performance. Using this system, the results have been studied to determine the feasibility of using simulation in actural operation onboard ship.
Several factors can be chosen for evaluating seakeeping performance, such as deck wetness, propeller racing, slamming, rolling, vertical acceleration and vertical bending moment, in consi-deration of the safety of human being, cargo and ship. In fact, there are few developments for an evalua-tion method of seakeepting performance correponding with each ship's characteristics. The purpose of this paper is to develop an quantitative evaluation method of seakeeping performance according to ship types. The scope and the method of this study are as follow. (1) Obtain each response amplitude of ship's motion in waves by Ordinary Strip Method and apply it to short-crested, irregular wave for random process of the factors on seakeeping performance. (2) Define the evaluation index, the dangerousness, the maximum dangerousness and the evaluation diagram. (3) Figure out the different characteristics according to ship types by computer simulation of evaluating seakeeping performance. (4) Adopt vertical acceleration and one of rolling or lateral acceleration as the factors on seakeeping performance by clarifying the correlation of stochastic process. This study developed an evaluation method coincident with each ship's characteristics, and suggested a device for application to actual ship. This method might be useful in developing the practical system of seakeeping performance in accordance with ship types. The ship models for computer simulation are 175m container ship types, 93m tranning ship HANARA as passenger ship type, 259m bulk-carrier type and 164m pure car-carrier type.
The recently-developed automated vessels require a system which evaluates the operating conditions of the ship at present position from weather information as well as sensors ; forecasting the operations condition in the state to come in foreseeable future ; and suggests the optimum course and speed for ship's safety. According to a study, deck wetness, propeller racing, slamming. rolling, vertical acceleration, lateral acceleration, vertical bending moment at midship etc. were chosen as the factors for evaluating seakeeping performance. As a matter of act, there is no developing the hardware of a system which could consider all the factors on seakeeping performance. This study introduces a theoretical method which makes it possible to evaluate the seakeeping performance by applying a theory from reliability engineering, and thereby establishing a safety space. The author adopts rolling and pitching as the factors on seakeeping performance by clarifying the correlation of stochastic processes the factors presently adopted for evaluation system in consideration of the safety of human being, cargoes and the ship. This method of evaluation shall be of much use in developing the practical system of seakeeping performance of a ship in waves.
In this paper, a synthetic method for evaluating the seakeeping performance of a ship in waves is studied. For the prediction and evaluation of irregular phenomena to be correlated each other, the multi-dimensional Rayleigh's joint probability density function and the cumulative distribution function are approximated. According to this approximated function, it is able to calculate easily the occurrence probability of the factors on seakeeping performance. We proposed an evaluation method and an index to be defined by the seakeeping performance reliability, that is considered as the dangerousness and the relative dangerousness of the factors on seakeeping performance in waves. The use of this method aid index will be effective to install the sensors which are necessary to evaluate the states of ships at sea. Some example of the calculations by this method for 175m length single screw container ship equipped with diesel engine are also presented.