Proceedings of the Korean Society of Marine Engineers Conference (한국마린엔지니어링학회:학술대회논문집)
The Korean Society of Marine Engineering
- 기타
Domain
- Machinery > Naval Architecture/Ocean Engineering
2012.06a
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2011년 IMA의 자료[1]에 의하면, 현재 251척의 부유식 생산설비가 운영되고 있으며, 이중 FPSO가 차지하는 비율은 64%에 이른다. 또한, 가장 각광을 받고 있는 부유식 생산설비의 유형인 FPSO는 현재 40여척을 건조 (New building) 및 개조(Conversion)를 하고 있다. 전체적인 FPSO의 개발 및 건조 프로젝트는 일반 선박 프로 젝트와는 다르게 환경적, 정치적, 상업적인 영향을 많이 받는다. 예를 들면, 같은 구역에 석유/가스 채굴을 위한 프로젝트를 승인받은 기업들은 각자의 기술력, 재정상태, 채굴구역의 정치적인 영향력에 따라서 프로젝트의 초기 개념설계부터 전혀 다른 방향으로 구축할 수 있다. 이러한 변수가 많은 프로젝트를 성공적으로 수행하기 위해서는 각 단계별 세부 계획도 동시에 이루어져야 한다. 본 연구에서는 이러한 세계적인 해양구조물의 대표 격인 FPSO의 특성을 보고하고 이와 관련되는 프로젝트의 다양한 수행 절차 및 시스템/장비에 대해 설명한다.
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이 프로그램의 중요한점은 기존 모든 선박이 가지고 있는 각종 에너지 손실 및 온실가스 배출관련 육상의 ECO-DRIVER에 준하는 해상의 ECO-SAILING 방식의 알고리즘으로 접근하여 IT융합을 기반으로 SW만으로 에너지 효율 최적화와 온실가스 저감을 구현한다고 할수 있다.
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The ignition quality in diesel engines is one of the most important factors influencing their performance. While the ignition quality of distillation fuels is judged with Cetane Number, Cetane Index, and Diesel Index, that of residual fuels blended with distillation fuels is done by using CCAI. Since the 1980s, because of the development in the blending technology and the complexity, it has been difficult to make a judgement on the ignition quality of the fuels with CCAI. Hence, in order to solve the problems, it is ECN that researchers are studying in depth. In this paper, After reviewing the values such as Cetane Number, Cetane Index, Diesel Index, CCAI, and CII, we will introduce ECn and predict the possibility of using it.
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Park, Chang-Dae;Lim, Byung-Ju;Lee, Hoo-Rock;Choi, Bong-Woo;Hwang, Seung-Jae;Chung, Kyung-Yul 119
In the various industry plant, it need a condition monitoring system for an active machine that used an detachable wireless sensors. In this paper, IEEE802.15.4 standard based detachable wireless sensor monitoring system configure results will be introduced. -
In this research, we studied on improvement of the attraction force of solenoid operated valve for normal operation in harsh environment like vessel. Attraction force of the solenoid valves is effected by the B-H characteristics of magnetic material and the size of coil. In order to specify impact of the affection, we performed the B-H characteristics test and attraction force. Test results show that magnetic flux densities of the materials are difference each other more than 2 times in same magnetic intensity, and attraction force of the solenoid valve is 1.7 times difference as changes of resistance and the number of coil winding of solenoid.
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Effervescent atomizer in which the liquid is ejected from nozzle with bubble caused by gas injection into the liquid is one of twin-fluid atomizers. Effervescent atomizer is operated with the lower injection pressure and the smaller air flow rate when compared with those of other twin-fluid atomizers. In this study, we attempted experiment study to investigate the atomization characteristics of effervescent atomizer related with the internal flow condition. The nozzle was made with acrylic material to investigate the nozzle internal flow. The macroscopic spray analysis was conducted with internal flow images and spray images. Furthermore, SMD was measured by using the laser diffraction method. According to this study, the internal flow condition changed from bubbly flow to annular flow as the air-liquid mass ratio(ALR) increases. At that time, the atomization characteristics were improved.
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The key issues for the reduction technologies of the exhaust gas from diesel engine being developed are to reduce particulate matters and NOx. Performance of NOx removal in SCR process depends on such various factors as catalyst factors(catalyst composition, shape, velocity, etc.), exhaust gas temperature and velocity distribution. In this study checked flow uniformity with the flow characteristics in the SCR reactor by using STAR CCM+. The pressure drop of experiment and simulation had similar result more than 90% at catalytic Cell. Also, flow uniformity calculated about 0.9036 ant 1st catalytic ind SCR reactor.
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Pumps are used widely in industry, the commercial sector and ships. A poorly selected pump or a pump that does not run at optimum design duty point is a classic symbol of wasted energy and money. It, therefore, becomes important to evaluate the efficiency of these pumps. This paper analyzes traditional technique and instrument to measure some parameters needed to calculate a pump efficiency. The pump efficiency measuring instrument (PEMI) was made and tested on real pump systems. It has been giver the accurate results compared with performance curve given by pump maker.
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In this paper, a temperature control for LED(Light Emitting Diode) lamp using a cooling fan is studied. An efficient temperature control scheme for the LED lamp using the fan wind at the lowest sound noise is studied. For the study, after measurement of the minimum sound noise of the fan and related temperature of the LED lamp through tests, experiments on temperature control of the LED lamp using the fan with various size of heat sinks was performed. To minimize the fan sound noise, optimal size of the heat sink was studied. Also, a teleoperting control of LED lamps using RF communication was studied.
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본 연구에서는 현재의 실내 위치인식시스템에 있어서 오차 발생 문제점을 초전센서를 이용하여 보완하였다. 기존의 CSS기술은 SDS-TWR(Symmetric Double-Sided Two-Way Ranging) 기반의 위치인식시스템을 구현하는 기술로 사용되고 있으나 전파의 반사 및 간섭에 의해 레인징의 오차가 크게 발생하고 수신 감도가 현저하게 떨어지는 현상이 발생한다. 따라서 본 논문에서는 환경적인 제약을 받는 공간에서 CSS을 이용한 SDS-TWR과 초전센서를 사용하여 수신불량과 오차를 줄여 사용자의 위치인식을 가능하도록 하였다.
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본 논문에서는 임의의 고정노드로부터 거리측정에 실패하였을 경우, 현재와 이전의 거리측정값으로부터 예측되는 벡터를 통하여 삼변측량법의 정확도를 높이는 알고리즘을 제안하며, 모의실험을 진행하였다. 그 결과, 수신율이 좋지 못한 상황에서 제안한 알고리즘을 적용 하였을 경우 기존의 삼변측량법에 비해 위치 추정의 정확도가 향상되는 것을 확인하였다.
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USN(Ubiquitous Sensor Network)을 이용한 실내 위치 인식 기술은 주요한 연구 분야이며 산업에 미치는 영향이 매우 크다. 좁은 복도 환경에서는 삼변측위를 이용하지 않고 이변측위만 이용하더라도 Mobile Node의 위치 측정이 가능하다. 하지만 이변측위를 이용할 경우 Reference Node 사이의 간격이 멀어 질수록 Mobile Node의 위치 정보 수신율이 떨어져 Mobile Node의 위치를 표시할 수 없게 된다. 따라서 본 연구에서는 관성센서 및 초음파 센서를 이용하여 위치 정보의 수신이 이루어지지 않는 상황에서도 Mobile Node의 위치를 표시할 수 있게 구성하고 실험을 통하여 검증하였다.
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While engine room arranging pipe which is used from the vessel, It measured the internal flow of 90 degree elbow which is used from the main condenser. Fluid flow in elbow of 90 degree is measured by PIV and Dewetron system. The Reynolds number adopts 50000 and experimental study of flow field in the elbow.
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Many suggestions is offered to resolve global warming. Tidal current generation is producing power by switched tidal difference sea water horizontal fluid flow produced by tidal difference using rotor and generator. So, change the angle of inflow condition due to the entrance of efficiency are considered. We therefore investigated three dimensional flow analysis and performance evaluation using commercial ANSYS-CFX code for horizontal axis turbine. Then We also studied three dimensional flow characteristics of a rotating rotor and blade surface streamlines around a rotor. As a result, Cp was highest at TSR 5.5, especially the larger changes in the angle of inflow condition decreased efficiency.
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In the modern age, as man's demand of energy is continuously grew, tidal becomes one of the sustainable energy sources that have been investigating thoroughly recently. Tidal turbine has proved high potential as a future power-generating device. To effectively capture tidal energy on site, a group of tidal turbines should be used and positioned in some formation with proper size and space so that energy can be absorbed from multiple point. Thus, the turbines together with the flow filed becomes a huge domain, a tidal farm. So, it becomes more convenient if a whole turbine farm is simulated by means of actuator discs since the time and cost for analysis can be reduced. This paper aims to evaluate the operating performance (power efficiency and energy restoration rate), mutual influence (for different longitudinal and lateral spaces), the influence of velocity profiles, turbulence intensity and the far wake characteristic of tidal turbines operating in farm formation. The results of this study help contributing to the present development of tidal turbine as the future potential energy conversion machinery.
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The Characteristics of the drag reduction of a square prism having a detached splitter plate at the wake side was investigated by measuring of fluid force on the square prism and by visualization of the field using PIV. The experimental parameters were the width ratios(H/B=0.5~1.5) of splitters to the prism width and the gap ratios (G/B=0~2) between the prism and the splitter plate. The drag reduction rate was increased with H/B, and was increased and decreased with G/B. The maximum drag reduction rate was represented by 24.2% at H/B=1.5 and G/B=0.5. The two vortices were generated by the splitter plate at the wake region of the prism. The direction of the vortex was clockwise at the upside of the splitter plate and counterclockwise at the downside.
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Byun, Jae-Gyu;Jun, Jae-Ho;Kim, Seung-Won;Lee, Jae-Hyeong;Ahn, Soon-Tae;Park, Cheol-Gyu;Jang, Jong-Hun;Jung, Byong-Ho;Cho, Sang-Myung 173
Duplex STS는 응력부식 저항이 큰 페라이트상과 우수한 내식성을 제공하는 오스테나이트상이 미세하게 1:1로 결합하여 강도가 오스테나이트 STS 보다 최소 1.7배 이상 높을 뿐 아니라 공식(pitting)과 응력부식 저항성이 우수해 최근에 주목받고 있는 고내식 고강도 재료이다. STS의 내식성을 평가하는 여러 지수 중 Pitting에 대한 내식성을 평가하는 지수로서 PREN (Pitting Resistance Equivalent Number)이 있다. PREN =%Cr + 3.3%(Mo + 0.5%W) + 16%N PREN이 30 이상이면 해안지역에서 사용가능하나, PREN이 40 이상인 경우에는 원자력발전소, 탈황 설비, 해수설비 및 화학Plant 등 고내식 환경에서 주로 사용가능하다. PREN이 40 이상인 Super Duplex STS은 다량의 Mo와 N을 첨가하여 만든 제품으로, 최근 10여 년 동안 해수 냉각 설비, 해수 담수화 설비, 탈황 설비, 석유화학 설비 및 원전용 CASK 등의 다양한 분야에 그 사용량이 꾸준히 증가하고 있는 상황이다. 본 연구에서는 Super Duplex STS의 TIG용접에서 실드가스 중의$N_2$ 의 첨가가 PREN에 미치는 영향을 검토하였다. 실드가스 중$N_2$ 가 용접금속으로 침입하는 메커니즘을 규명하고, 용접조건 변화에 따른 용접금속 내 N의 함량을 측정하여 PREN을 계산하고, 용접금속의 기계적 특성과 미세조직을 검토하였다. -
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Proper shaft alignment is one of the most important actions during the design of the propulsion system. The stiffness of recently designed marine propulsion shafting has been increasing remarkably, whereas hull structures have become more likely to deform as a result of optimized design of the scantlings and the high tensile steel. Therefore, to obtain the optimum status in shafting alignment at the design stage, it is strongly recommended that the change of bearing reaction force depending on ballast/load condition, the bending moment force occurred by propeller thrust, elastic deformation of bearing occurred by vertical load of shaft mass and etc., should be considered. This paper dealing with introduction of shaft alignment concerning long shaft for high speed vessel and review its reliability evaluation theoretically.
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As as result of development of new voyage route, especially Baltic seas, it is necessary for the design to meet ice class requirements as vessels continue to increase in this route. For this reason Finish-Swedish ice class has recently amended a regulation on the propulsion shafting design and engine output required for the ships which will be navigable in the brash ice channels broken by ice-breakers in Baltic seas. Therefore, this study shows the appropriate calculation methods for the design of engine output and propulsion shafting system based on ice class requirements.
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Recently, as a result of the application of large and multi-blade propellers with high efficiency for large vessels, the vertical bending stiffness of propulsion shafting system tends to be declined. For some specific vessels, the shaft arrangement leads to the forward stern tube bearing to be omitted, decreasing vertical bending stiffness. In this respect, decreased vertical bending stiffness causes the problem which is the blade order resonance frequency to be placed within the operational range of propulsion shafting system. To verify whirling vibration, the measurement should be carried out covering the range of MCR, however, the range is un-measurable. To resolve the measurement issue, this study shows the measuring method and the estimating method of whiling vibration by using resonance frequency of sub harmonic.
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고전단력을 갖도록 개발된 Homogenizer를 이용해 IFO 380cst Bunker-C 시료를 미립화 및 균질화하는 전처리를 시행하였다. 전처리된 시료의 슬러지 저감효과를 확인하기위하여 유청정기(oil purifier)를 이용하였고, 실험결과 약 13% 가량 슬러지 생성이 감소하는 것을 확인하였다. 또한, 전처리 후 유청정기를 통과한 시료를 실제 보일러 시스템에서 연소시켜 연소 성능 특성을 확인한 결과 CO가 감소하는 경향을 확인하였다. 선박운항비용 분석을 통해 U.L.C.C 기준 연 8,800만원 가량의 연료비 절감 효과가 있을 것으로 추정된다.
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Park, Dong-Hyun;Won, Jong-Pil;Oh, Min-Seok;Kim, Yun-Hae;Lee, Myung-Hoon;Lee, Syung-Yul;Moon, Kyung-Man 192
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Kim, Jin-Gyeong;Lee, Kyu-Hwan;Won, Chang-Wook;Na, Sung-Su;Yoon, Young-Gon;Kim, Yun-Hae;Lee, Myung-Hoon;Lee, Sung-Yul;Moon, Kyung-Man 193
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Test method and requirements of fixed water-based fire-fighting systems for Ro-Ro spaces and special category spaces were introduced for research engineer's reference.
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The Recovery facility, the scrubber is a collection device that injects liquid into the gas with the suspended particles using a spray nozzle. The liquid used is generally water. For the development of the design technology of a high efficiency scrubber, the spray characteristics according to the variation of the scrubber nozzle swirl vane was studied.
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선박에서는 화재안전목표를 달성하기 위해 선박을 방화구획화 함으로써 발화의 지점에서 화재를 차단하여 인근지역으로 확산 되지 않도록 하고 있다. 또한 방화구획을 관통하는 파이프, 덕트 및 전선관통부 등을 통하여 유독가스 및 화염이 순식간에 이동하게 되며, 한쪽 구역에서 발생한 화재의 영향이 다른 구역으로 영향을 미치게 되므로 화염에 의한 피해를 방지하고 불길을 차단하기 위하여 관통부재에 대하여 해당 방화구획과 동등한 성능을 요구하고 있다, 선박에 적용되고 있는 방화구획의 등급은 용도에 따라 일반 상선 등에는 "C ~ A"급, 해양플랜트에는 "C ~ H"급 등급이 요구되고 있다. 그러나 현재 국내 선박 기자재 제작 기술은 "A"급에 머물러 있고 최근 국내 조선소의 해양플랜트 수주 증가와 해양플랜트로의 사업전환으로 관련기자재기업에서 "H"급 기자재 개발에 많은 관심을 가지고 개발 시도를 하고 있다. 이에 본 논문에서는 "H" 급 방화구획에 적용되고 있는 탄화수소계(Hydrocarbon Fire) 내화시험기준과 "H"급 Fire Damper의 단열두께에 따른 탄화수소계(Hydrocarbon Fire) 내화성능실험을 통한 방화 댐퍼의 비 노출면에 대한 방열성능 확보방안에 대하여 언급하고자 한다.
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Hwang, Kwang-Il;Son, Byeung-Hun;Na, Wook-Jung;Ahn, Chang-Hwan;Hong, Won-Hwa;Lee, Soo-Ho;Koo, Jae-Hyeok;Jeon, Byeong-Cheong 206
여객선에서 불특정 일반 승선자의 피난성능 향상과 인명피해의 최소화를 위해 선박 내에서 피난자를 안전한 곳으로 유도하는 지능형 스마트카드 개발에 앞서 승선자의 피난특성을 연구해야 한다. 이에 비숙련 일반인을 대상으로 피난특성의 기본이 되는 보행속도 측정 데이터를 실측하였다. -
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Kim, Joon-Young;Ko, Sung-Hyub;Jeong, Sang-Ki;Sohn, Kyoung-Ho;Choi, Hyeung-Sik;An, Jinhyeong;Kim, Chanki 214
본 논문 만타형 무인잠수정을 이용한 실해역 자율주행 성능시험에 관한 내용을 다룬다. 만타형의 개발을 위해서 6자유도 운동방정식에 대한 시뮬레이션을 실시하였으며, 시뮬레이션 결과를 바탕으로 만타형 무인잠수정을 개발하여 실해역에서 성능시험을 실시하였다. 실해역 자율주행 시험은 가시선 방법(LOS, Line of Sight)방법을 이용하였으며, 제어에는 PD 제어기를 사용하였다. 목표반경을 10m로 하였을 때, 설정된 좌표로 이동하는 것을 확인하였다. -
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다수의 서보모터를 효과적으로 제어하기 위하여 I2C(Inter-Integrated Circuit)통신을 이용하는 네트워크기반의 서보모터에 적합한 프로토콜의 시퀀스를 설계하고 이에 대한 성능을 분석 및 실험 하였다. 그 결과 다수의 서보 모터로 구성된 네트워크 통신은 데이터 손실 없이 안정적인 통신이 이루어지고 원활하게 서보모터가 제어되는 것을 확인하였다.
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In this paper, sensor network for toxic gas detecting on shipboard has been implemented. Sensor node were used Zigbee Technology.
$Co_2$ gas is used as toxic gas, it was designed a sensor device for detecting. This sensor was detected a toxic gas, and send data to monitoring system on PC. -
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In planar angle diffuser, the increasement of cross-sectional area so rapidly cause possibly separate from the diffuser wall and forming areas of backflow. The flow characteristics of planar angle diffuser was investigated for three kind of inclined angle. Judging from the results, wide planar diffuser can be used as an effective means of improvement for diffuser performance and inclined angle of diffuser was through to be the best among three cases.
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It is expected that passenger ship will be large-scale and luxurious according to the needs of modern function. A passenger short of information on the ship, so that they may be injured at the occurrence of fire accident. This study has investigated a case related to fire accident and presented basic data ship to minimize damages and loss at the occurrence of fire accident.
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This study was performed to investigate wake flow and unsteady flow characteristics using a model for actual shape of a wind breaker and visualization of flow through the particle image velocity. three control angle of flap were selected and instantaneous velocity distributions and flow characteristics were experimently investigated. It is found that as the control angle increase, the flows are characterized by the appearance of the growth of recirculation region.
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일반적으로 한글 문서에 포함된 각종 언어 정보(형태소, 구묶음, 기반구의 품사나 의미 정보 등)를 일일이 수정하는 것에는 많은 어려움이 따른다. 또한 지금껏 개발된 언어 정보 수정 도구들은 이런 언어 정보를 쉽게 수정할 수 없다. 따라서 본 논문에서는 한글 문서의 각종 언어 정보를 쉽게 태깅하고 수정할 수 있도록 도와주는 TagBench를 제안한다.
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DME(Dimethyl Ether) is the one of the massive energy sources synthesized from natural gas. KOGAS has already developed the commercial-scale production plant of DME and has been doing to obtain overseas resources to meet the domestic needs. This paper presents an experimental study on the evaporation phenomena of DME in FPSO or cargo vessel. The various moving motions, along with heat intake cause the evaporation of low temperature liquids in vessel's storage tank. The experimental result shows that the evaporation rate was changed with rolling degree and cycle and liquid level. The rolling motion leads to evaporate about 30~35% of total evaporation quantity and the rest amount from heat intake.
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