• 제목/요약/키워드: Ship Speed

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수중모함에서 사출되는 고속 수중운동체의 초기 거동 모델링 및 시뮬레이션 (Modeling and Simulation for the Initial Dynamics of a High Speed Underwater Vehicle Ejected from a Submerged Mother Ship)

  • 윤현규;조현진
    • 한국군사과학기술학회지
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    • 제19권2호
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    • pp.227-235
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    • 2016
  • Heavy-weight high speed underwater vehicle(HSUV) is launched from the submerged mother ship. For the safety point of view, it is important to confirm whether the HSUV would touch the launching mother ship. In this paper, the hydrodynamic force and moment were modeled by the polynomials of motion variables and the simple lift and drag acting on a plate and cylinder which consist of the HSUV's several parts. The mother ship was assumed as the Rankine half body to consider the flow field near the moving ship. Such hydrodynamic force and moment were included in the 6 DOF equations of motion of the HSUV and the dynamic simulations for the various conditions of the HSUV until the propeller activation were performed. Developed simulation program is expected to reduce the number of expensive sea trial test to develop safety logic of the HSUV at the initial firing stage.

고속콘테이너선 선형개발 (Hull From Development for a High Speed Container Ship)

  • 홍순익;김철년;공도성;양승일;강국진
    • 대한조선학회지
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    • 제27권3호
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    • pp.1-10
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    • 1990
  • 본 논문에서는 얇은 배 이론, Hess & Smith방법, 유사실적자료 및 모형실험결과를 이용하여 고속콘테이너선의 선형을 개발한 연구결과가 소개도어 있다. 양력면이론에 의해 설계된 고효율 프로펠러는 캐비테이션과 변동압력에서 좋은 성능을 보였으며, 유한요소법에 근거한 최적설계기법으로 선체구조설계와 선체진동해석을 수행하였다. 끝으로, 새로이 개발된 본 고속콘테이너선의 성능을 실선 시운전결과와 비교, 검토하였으며, 이로부터 속력, 진동 및 기타성능에 있어서의 우월성이 확인되었다.

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항주자세를 고러한 세일링 요트의 선형기법 시험연구 (A Study on the Techniques for Sailing Yacht Model Tests with Sailing Condition)

  • 심상목;김동준;강병윤
    • 대한조선학회논문집
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    • 제43권1호
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    • pp.32-42
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    • 2006
  • This study aims at establishing a technique for sailing yachts model tests with sailing condition. It is very important to estimate a ship's potential speed performance before building a real ship. Several methods are used to estimate a ship's potential speed performance such as using parent ship data, standard vessel chart and model test. Model test is the most precise among these options. In korea. model testing is widely used with general vessels but not with sailing yachts. Because sailing yachts are propelled with heeling and leeway. using the wind. another method is needed to estimate their speed. The new model test. which is different from tests for upright general vessels, is in a great demand. In this paper. we describe a test method for the sailing yacht model test. based on Masuyama's equation of motion. And we describe choosing scale ratio. production process and materials of the model. Also. various ways of measuring instruments. attaching jigs and adjusting calibration are described so that they can be utilized as useful data for model testing.

쌍축선의 정적 횡경사각에 따른 조종성능 변화에 관한 실험적 연구 (An Experimental Study on the Change in Manoeuvring Performance According to the Static Heel Angle of a Twin-Screw Ship)

  • 권창섭;윤근항;여동진
    • 대한조선학회논문집
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    • 제58권6호
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    • pp.407-414
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    • 2021
  • The manoeuvrability of a ship with an unwanted heel angle due to a maritime accident is changed from the original characteristics. The purpose of this study is to quantitatively investigate the change in the manoeuvring performance of a twin-screw ship under various hee angles and speed conditions. A series of free running model test campaigns were performed in the Ocean Engineering Basin of Korea Research Institute of Ships & Ocean Engineering (KRISO) for a twin-screw car ferry vessel. Turning circle test and zig-zag 10/10 and 20/20 tests were carried out on the heel angles of 0, -10, and -19.5 degrees. In addition, two-speed conditions were considered to understand the effect of ship speed. In order to examine the effect of the bilge keel, a heel angle of -22 degree where the bilge keel is exposed outside the water surface, was considered. Finally, the change of manoeuvring characteristics according to the heel angle for a twin-screw and a single-screw vessel is discussed.

Design of Ship Thruster and Seabed Scouring due to Effects of Water Velocity

  • Choi, Byoung-Yeol;Lee, Sang-Gil
    • Journal of Advanced Research in Ocean Engineering
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    • 제3권3호
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    • pp.102-111
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    • 2017
  • This study considered the effects on the seabed of a harbor and quay wall from ship maneuvers in relation to the thruster jet flow and initial velocity. This study also included the engine capacity, RPM, and diameter and pitch of a ship's thruster for a required speed. The impact of a scour hole on the environment of a quay wall was investigated. Based on these results, a risk based analysis was conducted to evaluate different strategies and their consequences. There has been an increase in the loads on the bottom of a harbor during ship maneuvering. This increase is caused by the propeller loads of mooring and unmooring vessels. This indicates a greater number of arrivals and departures of vessels with larger drafts, larger thruster diameters, and larger available thruster power capacities. Another important cause could be an increase in the maneuverability of vessels from the use of bow thrusters. The increasing loads, which cause a higher jet flow above the bottom, can lead to undesirable scour holes.

A Study on Shape and Height of Shipwaves

  • Gang, Song-Jin;Kim, Mi-Kum;Kim, Chang-Je
    • 한국항해항만학회지
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    • 제33권2호
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    • pp.105-110
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    • 2009
  • Shipwaves am have harmful effects on ships working on the sea, in a harbour or navigational channel and caused beach erosion, seawall destruction. This study aims to investigate describe the characteristics of the wave pattern generated by an individual model ship tested at different velocities and hull forms for a given water depth and to investigate the variations at a given distance from the sailing line under the same conditions. As a result, the angles a's by model ship tests are smaller than those by real ship ones. Wave heights decreases with an increasing the mid-ship cross sectional area $A_s$. The maximum wave height and period increase rapidly in the subcritical speed, and beyond the critical speed the height and period decrease with increasing depth Froude number. And the period keeps constant with the distance from the sailing line.

Experimental Investigation of the Hydrodynamic Characteristics of a Ship due to Bank Effect

  • Vo, Anh Khoa;Mai, Thi Loan;Jeon, Myungjun;Yoon, Hyeon Kyu
    • 한국항해항만학회지
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    • 제46권2호
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    • pp.82-91
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    • 2022
  • When a ship moves in the proximity of the lateral bank, bank suction forces are generated due to bank effects. Thus, hydrodynamic forces can significantly impact the ship's maneuverability and navigation safety. In this study, model tests were performed to investigate the hydrodynamic forces exerted on a ship, especially suction forces caused by bank effects, using captive model and bank effect tests. A low-speed condition was selected in this study, because of the perilous situation as the ship moves close to the bank. The accuracy of the hydrodynamic forces exerted on the hull was verified, by comparing the results of the static drift test with the results obtained from other institutes at design speed. The straight simulation caused by bank effects was then implemented using estimated hydrodynamic coefficients.

쾌속여객선의 수중부유물과의 내충돌 안전성 평가 (Crashworthy Safety Assessment of High Speed Passenger Ship with Underwater Floating Matter)

  • 이상갑;이재석;백윤화;전승환
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2009년도 공동학술대회
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    • pp.30-31
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    • 2009
  • 본 연구의 목적은 쾌속여객선과 수중부유물과의 실선 충돌응답해석을 통하여 선체와 승객의 내충격 안전성 평가를 수행하는 것이다. 그동안 수중부유물과의 충돌사고로부터 발생하였던 선체와 승객들의 손상자료들을 면밀히 검토하고 평가하여 쾌속여객선 수중익 시스템의 수중부유물과의 충돌에 의한 손상구조를 철저히 파악함으로써 내충격 안전성 평가를 위한 다양한 충돌 시나리오를 작성할 수 있었다. 주변 유체를 고려하는 LS-DYNA 코드의 유체-구조 연성 해석기법과 국부 zooming 해석기법을 사용하여 쾌속여객선의 수중부유물과의 충돌응답해석을 수행하여 선체와 승객의 내충격 안전성 평가를 수행하였다.

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A Study on the Verification Method of Ships' Fuel Oil Consumption by using AIS

  • Yang, Jinyoung
    • 해양환경안전학회지
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    • 제25권3호
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    • pp.269-277
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    • 2019
  • Since 2020, according to the International Convention for the Prevention of Pollution from Ships (MARPOL) amended in 2016, each Administration shall transfer the annual fuel consumption of its registered ships of 5,000 gross tonnage and above to the International Maritime Organization (IMO) after verifying them. The Administration needs stacks of materials, which must not be manipulated by ship companies, including the Engine log book and also bears an administrative burden to verify them by May every year. This study considers using the Automatic Identification System (AIS), mandatory navigational equipment, as an objective and efficient tool among several verification methods. Calculating fuel consumption using a ship's speed in AIS information based on the theory of a relationship between ship speed and fuel consumption was reported in several examples of relevant literature. After pre-filtering by excluding AIS records which had speed errors from the raw data of five domestic cargo vessels, fuel consumptions calculated using Excel software were compared to actual bunker consumptions presented by ship companies. The former consumptions ranged from 96 to 123 percent of the actual bunker consumptions. The difference between two consumptions could be narrowed to within 20 percent if the fuel consumptions for boilers were deducted from the actual bunker consumption. Although further study should be carried out for more accurate calculation methods depending on the burning efficiency of the engine, the propulsion efficiency of the ship, displacement and sea conditions, this method of calculating annual fuel consumption according to the difference between two consumptions is considered to be one of the most useful tools to verify bunker consumption.

김 양식장 채취선의 운항거동과 수확조업에 관한 연구 (A study on the havesting process and operating behaviour of working ships for farming laver)

  • 김옥삼;민은비;황두진
    • 수산해양기술연구
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    • 제56권3호
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    • pp.223-229
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    • 2020
  • We analyzed the cutting mechanism of laver harvesting machine in the sea area near Gooam Port in Goheung, Jeollanam-do, and investigated the change and efficiency of laver collecting operation in the working ship. The laver working ship slides uniformly from the bow to the upper part of the laver collecting machine on the deck and cuts the wet laver attached to the bottom of the net at the blade of the havesting machine. The laver farming net, which was loaded with laver turrets on the deck by gravity and collected primitives, consisted of a ship structure that led to the stern side and into the sea. The working ship operation is in harvesting process while driving in a S-shape that is separated by one space to efficiently collect the laver net. During laver working ship operation, the speed was 0.51 m/s in the access stage, 0.56 m/s in the havesting stage, and 0.52 m/s in the exit stage. Considering the cutting edge life and production efficiency of the laver harvesting machine, it is appropriate to harvest 1.15 to 1.26 kg/rpm by operating at a rotational speed of about 700 to 800 rpm rather than forcibly harvesting the product at high speed. On the deck of the working ship, 959.7 kg of starboard and 1048.7 kg of center were 964.7 kg of port side. Based on the starboard, 9.3% of the central part and 0.5% of the port side appeared. The reason for this was due to the difference in harvest time according to the turning direction of the working ship.