• Title/Summary/Keyword: 선박배기가스

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특집:녹색선박 SCR시스템 기술개발 현황 - SCR시스템 적용 NOx sensor 현황

  • Jeong, Gyeong-Yeol;Park, Chang-Dae;Im, Byeong-Ju;Yang, Gyeong-Seong;Im, Hui-Jun
    • 기계와재료
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    • v.24 no.2
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    • pp.72-78
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    • 2012
  • 환경오염 문제로 인하여 질소산화물의 규제가 크게 강화되었으며 규제에 대응을 위한 연구가 활발히 진행되면 배기가스 후처리 기술 중의 SCR시스템이 연구되고 있다. 이러한 시스템의 개발에 있어 엔진 거동에 대한 NOx 제거효율을 높이고 장비가격을 낮추기 위하여 정확한 농도 측정이 필요하며, 이러한 측정에 들어가는 감시물질을 이용한 가스센서 방식의 반도체 감지 재료를 이용한 방식, SAW(surface acoustic wave)소자를 이용한 구동 방식, Micro / Nano 공진자를 이용한 방식과 광학방식을 이용한 가스센서의 적외선 흡광 방식, 광음향 방식의 기술소개 및 시장동향에 대하여 간략히 기술한다.

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Effect of nozzle diameter on the reduction of smoke emission from naval ship diesel engines (함정용 디젤엔진의 노즐 직경 변화가 매연 발생에 미치는 영향)

  • Son, Min-Soo;Choi, Jae-Sung;Cho, Kwon-Hae
    • Journal of Advanced Marine Engineering and Technology
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    • v.40 no.3
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    • pp.180-184
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    • 2016
  • Legislative and regulatory actions regarding the exhaust gas from ships are being strengthened by both international organizations and national governments, to protect human health and the environment. Exhaust gas traps are excluded from exhaust gas regulation applications, but, recently, the United States, Britain, and other developed countries have examined a variety of ways to improve the system, including the introduction of electric propulsion systems to prevent air pollution generated by naval ships. This study investigates a large number of smoke problems of naval diesel engines to verify the effect of improving the nozzle characteristics. An exhaust gas emission measurement method to determine the quality of pollutant exhaust gas generated during low-load operation is proposed through the research methodology of the smoke problem. It was confirmed that the emissions value is improved by decreasing the nozzle hole diameter and increasing the injection pressure. At the same time, the flow rate decrease equation and setting up a test memo based on the nozzle diameter confirmed that the fuel consumption, to which the nozzle diameter in the flow path is related, is reduced.

The Stream and Exhaust Gas Characteristics for Variation of Exhaust Gas Temperature of Marine Incinerator Ejector (선박용 소각로 이젝터의 배출온도 변화에 따른 유동과 배기특성)

  • 김태한
    • Journal of Ocean Engineering and Technology
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    • v.14 no.2
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    • pp.60-64
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    • 2000
  • An experimental study was performed to investigate the optimal ejector and operating condition of vessel incinerator. Exhaust gas temperature and secondary air which makes vacuum pressure at ejector throat regions were considered as an important factor. According to the measurement of pressure temperature and nitrogen oxides between non combustion and combustion we found the stream and exhaust gas characteristics of incinerator. This results can give us the exhaust gas temperature control system air pollutant reduction method and the optimum ejector design.

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CFD interpretation of gas flow around Ship's Funnel and Optimum Design Criterion (선박 연돌 형상이 배기가스 흐름에 미치는 영향과 연돌 설계)

  • Shin, Hyun-Joon;Park, Sang-Min;Kim, Jong-Hwa
    • Special Issue of the Society of Naval Architects of Korea
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    • 2011.09a
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    • pp.63-69
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    • 2011
  • Exhaust gases of a vessel from a main engine, a diesel generator and an incinerator contain very harmful substances like soot, $SO_2$ and NOx. Careful design of funnel shape is required to prevent those harmful exhaust gases from influencing on accommodation and a fan room. Meanwhile, the exhaust gases are also hot enough to damage electronic devices like radar. Therefore the funnel design should be considered so that electronic devices are not directly exposed to the exhaust gas in the strong stern wind. This study may propose guidelines of optimum design criterion for the anti-thermal damage design of the electronic devices and anti-recirculating design of harmful exhaust gas near the accommodation. From CFD analyses, we can understand that the major factors affecting the exhaust gas dispersion are the large scale mixing by separation vortices and the sluggish flow in the recirculation region. We hope that the funnel flow analysis around ship's funnel is used for practical optimum funnel design to minimize the exhaust gas dispersion by adjusting the funnel shape, the position of the exhaust pipe, the shape of bulwark, the exhaust direction of air ventilated an engine room and the angle of the exhaust pipe.

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Exhaust-Gas Heat-Recovery System of Marine Diesel Engine (II) - Exergy Analysis for Working Fluids of R245fa and Water - (선박용 디젤엔진의 배기가스 열회수 시스템 (II) - R245fa 및 Water 의 작동유체에 대한 엑서지 분석 -)

  • Choi, Byung-Chul;Kim, Young-Min
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.6
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    • pp.593-600
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    • 2012
  • The exergy characteristics for R245fa and water working fluids have been analyzed for an electric generation system utilizing the Rankine cycle to recover heat from the wasted exhaust gas from a diesel engine used for the propulsion of a large ship. The theoretical calculation results showed that the efficiencies of exergy and system exergy improved as the turbine inlet pressure increased for R245fa at a fixed mass flow rate. Furthermore, the exergy destruction rates of the condenser and evaporator were relatively larger than those in other components. The exergy efficiency of the system increased with increasing mass flow rate. For a water working fluid, although the exergy destruction rate of the evaporator was similar to that for R245fa, the exergy loss rate varied significantly in response to variations in the pressure and mass flow rates at the turbine inlet.

Exhaust-Gas Heat-Recovery System of Marine Diesel Engine (I) - Energy Efficiency Comparison for Working Fluids of R245fa and Water - (선박용 디젤엔진의 배기가스 열회수 시스템 (I) - R245fa 및 Water 의 작동유체에 대한 에너지효율 비교 -)

  • Choi, Byung-Chul;Kim, Young-Min
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.3
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    • pp.293-299
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    • 2012
  • The thermodynamic efficiency characteristics of R245fa and water as working fluids have been analyzed for the electricity generation system applying the Rankine cycle to recover the waste heat of the exhaust gas from a diesel engine for the propulsion of a large ship. The theoretical calculation results showed that the cycle, system, and total efficiencies were improved as the turbine inlet pressure was increased for R245fa at a fixed mass flow rate. In addition, the net work rate generated by the Rankine cycle was elevated with increasing turbine inlet pressure. In the case of water, however, the maximum system efficiencies were demonstrated at relatively small ratios of mass flow rate and turbine inlet pressure, respectively, compared to those of R245fa. The optimized values of the net power of the cycle, system efficiency, and total efficiency for water had relatively large values compared to those of R245fa.

Thermodynamic Analysis of Trilateral Cycle Applied to Exhaust Gas of Marine Diesel Engine (선박용 디젤엔진의 배기가스에 적용된 3 변 사이클의 열역학적 분석)

  • Choi, Byung-Chul;Kim, Young-Min
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.9
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    • pp.937-944
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    • 2012
  • The thermodynamic characteristics of a trilateral cycle with water as a working fluid have been theoretically investigated for an electric generation system to recover the waste heat of the exhaust gas from a diesel engine used for the propulsion of a large ship. As a result, when a heat source was given, the efficiencies of energy and exergy were maximized by the specific conditions of the pressure and mass flow rate for the working fluid at the turbine(expander) inlet. In this case, as the condensation temperature increased, the volume expansion ratio of the turbine could be reduced properly; however, the exergy loss of the heat source and exergy destruction of the condenser increased. Therefore, in order to recover the waste exergy from the topping cycle, the combined cycle with a bottoming cycle such as an organic Rankine cycle, which is utilized at relatively low temperatures, was found to be useful.

Exhaust Emission Characteristics from Heavy-duty Diesel Engine applicable to Prime Propulsion Engine for Marine Vessels (선박 주 추진기관으로 사용가능한 대형 디젤엔진의 배기가스 특성 분석)

  • Lee, Hyung-Min;Park, Rang-Eun
    • Journal of Advanced Marine Engineering and Technology
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    • v.36 no.4
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    • pp.484-489
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    • 2012
  • The objective of this work presented here was focused on analysis of particulate matter and nitrogen oxide characteristics in ESC test mode from heavy-duty diesel engine installed on-road vehicles applicable to prime propulsion engine for marine vessels. The authors confirmed that a large quantity particulate matter were emitted in high power density condition, nitrogen oxide characteristics were dependent on exhaust gas temperature. Particulate matters were reduced by 1/100~1/1,000 times in post DPF with test modes but filtration efficiency was decreased in the engine power fluctuation. In the case of the high speed and power condition, the exhaust level of particulate matters was increased according to increment of temperature of gas flowing into DPF. The orders of magnitude for particle concentration levels from the analysis of size distribution of particulate matters of test engine was different. Both emitting nano-sized particles below 100nm regardless of DPF and non-DPF.

특집:녹색선박 SCR시스템 기술개발 현황 - 촉매반응기 내부 유동특성에 관한 수치해석

  • Jeong, Gyeong-Yeol;Park, Chang-Dae;Im, Byeong-Ju;Lee, Jung-Seop;Seo, Jeong-Se;Yun, Ji-Hun
    • 기계와재료
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    • v.24 no.2
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    • pp.80-93
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    • 2012
  • 본 연구는 5,000PS급 선박용 SCR 촉매시스템에 관한 내부 유동특성을 전산유체역학(CFD)을 통해 예측하고 설계에 반영하기 위한 기초를 확보하기 위함이다. 따라서 SCR 촉매반응기 내부 유동특성을 수치해석하기 위한 기법을 소개하였고, 촉매 Cell에 대한 수학적 모델링을 제시한 후 SCR 촉매시스템에서 NOx를 환원시켜 주는 촉매담체에 대한 압력강하를 실험과 수치해석을 통해 비교하였다. 그 결과 수치해석 결과가 실험에 매우 근접함을 확인할 수 있었다. SCR 촉매반응기에 대한 유동특성을 수치해석을 수행하여 각 지점에 대한 압력과 속도분포를 확인하였다. 또한 촉매 담체로 배기가스가 유입되는 입구부의 유동균일도를 예측하기 위해 Inlet pipe의 $90^{\circ}$ 각도에서 유입길이를 변화시켜 수치해석을 수행하였다. 그 결과 각도와 길이에 영향을 받는 것으로 나타났다.

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AIS 데이터를 활용한 부산항 선박의 대기오염물질 배출량 추정

  • 장함;우동한;임남균
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2021.11a
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    • pp.13-13
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    • 2021
  • 최근 항만에서 기인한 대기오염물질에 대한 심각성이 고조되고 있다. 본 연구는 부산항 (북항, 감천항 및 다대포항)을 대상으로 6월 한달 간의 항내에서 발생하는 대기오염물질 배출량을 추정하였다. 신뢰성 있는 대기오염물질 배출량 추정을 위하여 AIS(Automatic Identification System) 데이터를 기반으로 한 계산 방신인 Bottom-up 추정 방식을 활용하였으며 연료소모총량과 연료소비의 결과로서 발생한 대기오염물질 총량을 함께 분석하였다. 또한, 추정 배기가스 량을 이용하여 부산항에서의 환경 비용을 계산하였다.

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