• 제목/요약/키워드: 디젤 배출 질소산화물

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Off-cycle에서 Euro 6a, 6b 및 6d 규제 만족 디젤 자동차의 NOx 배출 특성 (NOx Emission Characteristics of Diesel Passenger Cars Met Euro 6a, 6b and 6d Regulations on Off-cycles)

  • 김정환;김성우;김기호
    • 한국분무공학회지
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    • 제23권3호
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    • pp.136-148
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    • 2018
  • Major countries have tighten their NOx regulation of diesel passenger cars. In the case of the EU, the regulation has been toughen up to 6.25 times since 2000. Despite the regulation the NOx concentration of the ambient has not been reduced proportionally. As these issues, to reduce NOx emission practically, Korea and the EU introduced the real-world driving emission (RDE) regulation and the test method that will be applied after 2017. In this paper, for the regulation to make a soft landing in Korea, 6 diesel passenger cars which met Euro 6a~6d regulation and were equipped with LNT/SCR were tested at a chassis dynamometer with environmental chamber applying the off-cycles (FTP, US06, SC03, HWFET and CADC) and several ambient conditions (-7 and $14^{\circ}C$) as well as certification modes (NEDC, WLTC@ $23^{\circ}C$). The result of the test showed that the ambient temp. and the engine load as a test mode impacted the NOx emission of the cars while the vehicles with SCR emitted NOx lower than with LNT. Additionally, to propose an effective RDE test method, the above result was compared with the results of the other papers which tested RDE using the same cars.

환상 2단연소실을 갖는 직접분사식 디젤기관의 성능 및 배출물 특성에 관한 실험적 연구 (An Experimental Research on Performance and Emission Characteristics of Direct-Injection Diesel Engines with Annular Two-stage Combustion Chamber)

  • 김동호;배종욱
    • 동력기계공학회지
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    • 제7권4호
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    • pp.12-18
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    • 2003
  • Various measures have been tried to reduce the NOx emission from diesel engine, but with partial success because the mechanisms of NOx and PM formations appear to have trade-off relation between each other. Therefore it has been known to be difficult to reduce NOx emission and PM emission simultaneously. Two stage combustion method i,e. a combustion process which has rich combustion stage and lean combustion stage one by one, has been developed successfully to reduce NOx formation in the continuous combustion chambers such as in the boilers. But until yet it is not successful to apply the same method in intermittent combustion chamber like in the diesel engine cylinder, as it was, only several research works were carried out. In this study, devised was a uniquely shaped combustion chamber with reformed piston crown intended to keep fuel-rich condition during early stage of combustion and fuel-lean condition during next stage. It was found that the NOx emission decreased significantly at various conditions of operation with the two stage combustion type engines of PR20 type, but other values such as smoke, CO and specific fuel consumption deteriorated as usual.

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균질혼합압축점화기관의 배기가스재순환 특성에 관한 연구 (A Study on Exhaust Gas Recirculation of Homogeneous Charge Compression Ignition Engine)

  • 한성빈;김성모
    • 에너지공학
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    • 제18권3호
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    • pp.163-168
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    • 2009
  • 이 논문은 새로운 개념의 엔진으로 균질혼합압축점화기관(HCCI)에 대해서 이야기 하고 있다. HCCI 엔진은 디젤기관과 가솔린기관의 미래대체엔진으로 고려되고 있다. HCCI엔진은 부분부하에서 높은 지시열효율과 매우 낮은 질소산화물을 배출하는 잠재력 있는 엔진이다.이 논문의 목적은HCCI 엔진에서 의 배기가스재순환(EGR)의 효과를 분명히 하는데 있다. 이러한 연구목적을 위해서 4실린더 압축점화기관이 HCCI 기관으로 개조가 되었다.이 작업은 일정한 회전속도에서 프로판과 부탄의 연료를 사용하였다.

디젤엔진 배출가스의 질소산화물 저감을 위한 Solid SCR용 가스분사 시스템의 전산유체해석 연구 (CFD Analysis on Gas Injection System of Solid SCR for NOx Reduction of Exhaust Emissions in Diesel Engine)

  • 이호열;윤천석;김홍석
    • 한국자동차공학회논문집
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    • 제22권5호
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    • pp.73-83
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    • 2014
  • CFD(computational fluid dynamics) model is developed to simulate direct injection of ammonia gas phase from ammonia transporting materials into the SCR catalyst in the exhaust pipe of the engine with solid SCR. Configurations of one-hole and four-hole nozzle, circumferential type, porous tube type, and the effect of mixer configurations which commonly used in liquid injection of AdBlue are considered for complex geometries. Mal-distribution index related to concentration of ammonia gas, flow uniformity index related to velocity distribution, and pressure drop related to flow resistance are compared for different configurations of complex geometries at the front section of SCR catalyst. These results are used to design the injection system of ammonia gas phase for solid SCR of target vehicle.

하이브리드형 물혼합 에멀젼 연료의 버너 특성 (Burner combustion characteristics of hybrid type water mixing emulsion fuel)

  • 김철정;김동건;박권하
    • Journal of Advanced Marine Engineering and Technology
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    • 제37권4호
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    • pp.308-315
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    • 2013
  • 물혼합 에멀젼 기술은 물의 급속한 분리에 의하여 불안정한 연소를 나타낸다. 이러한 문제점을 해결하기 위하여 많은 연구가 진행되고 있는데, 본 연구에서는 연료펌프입구까지 혼합연료를 순환시킴으로써 물의 분리를 최소화하는 하이브리드형 혼합장치의 성능을 분석하였다. 원통형 실험용 보일러에 버너를 부착하였으며 연료와 물의 유량을 조절하고 흡기유량을 제어하면서 배기농도와 화염온도를 계측하였다. 실험결과 배기농도와 화염온도를 유사하게 유지하는 경우 연료 소모율이 12% 저감되었으며, 흡기 유량과 디젤유 유량을 동일하게 유지하는 경우 질소산화물이 45.5%, 일산화탄소가 98.5% 스모크가 97.2% 감소하였다.

예혼합 압축착화 엔진에서 가솔린-디젤 연료의 연소 및 극미세입자 배출 특성에 관한 실험적 연구 (An Experimental Study on the Combustion and Nanoparticle Emission Characteristics of Gasoline-diesel Fuel in a Premixed Charge Compression Ignition Engine)

  • 윤승현;이두진;이창식
    • 한국분무공학회지
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    • 제17권2호
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    • pp.71-76
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    • 2012
  • The aim of this work was to investigate the combustion and nanoparticle emission characteristics of premixed charge compression ignition (PCCI) combustion at various test conditions using a single cylinder common-rail diesel engine. In order to create the homogeneity of fuel-air mixture, the premixed fuel (gasoline) was injected into premixing chamber during the intake process and then the diesel fuel was directly injected into the combustion chamber as an ignition source for the gasoline premixture. From these results, it revealed that the ignition delays and combustion durations were gradually prolonged and the peak combustion pressure were increased because diesel fuel was injected early injection timing with the increase of premixed ratio. In addition, as the increase of premixed ratio, total particle number is generally decreased and particle volume also indicated low levels at the direct injection timing from BTDC $20^{\circ}$ to TDC. At further advanced injection timing, total particle number and volume were generally increased

연료성상 변화와 배기가스재순환 방법 적용에 의한 디젤기관의 성능 및 배기배출물 특성 연구 (A Study on Characteristics for Performance and Exhaust Emissions on Changes of Fuel Properties and Application of EGR Method in Diesel Engines)

  • 오영택;최승훈
    • 대한기계학회논문집B
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    • 제30권4호
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    • pp.358-363
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    • 2006
  • In this study, the effects of oxygenated fuel such as ethylene glycol mono-normal butyl ether(EGBE) was investigated both DI and IDI diesel engine. Because EGBE includes oxygen content approximately 27.1 %, it is a kind of oxygenated fuel that the smoke emission of EGBE blending fuel is reduced remarkably compared with commercial diesel fuel. The focus of this study was to investigate the effects of the addition of oxygenated fuel to diesel fuel on the engine-out emissions and the performance. Smoke emissions of all EGBE blends were reduced substantially in comparison with conventional diesel fuel. This study showed that remarkable reduction of smoke with oxygenate blending fuels in diesel engines including DI and IDI combustion method. Besides, this study showed that simultaneous reduction of smoke and NOx emissions could be achieved by oxygenated fuel and EGR method that was applied to decrease NOx emissions increasing with smoke emissions reduction.

가스엔진과 디젤엔진의 혼합 EGR시스템이 배기배출물에 미치는 영향 (Effects on Exhaust Gas Emission in Combined EGR System of Gas Engine and Diesel Engine)

  • 유동훈;서전수신;임재근
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권6호
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    • pp.896-902
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    • 2009
  • EGR is applied in order to lower temperature of combustion chamber by using the specific heat of carbon dioxide in engine exhaust gas. However, the problem of EGR system in diesel engine is high PM concentration. Combined EGR system can be reduced it by mixing exhaust gas of gas engine into the intake air of diesel engine. This experimental study was designed for EGR system for both engines use. The results of EGR experimental study by using diesel engine and gas engine are as follows. 1) The pressure of combustion and rate of heat release decreased. 2) The specific fuel consumption increased. But, up to middle load, it little increased. 3) NO concentration has decreased up to 50% in almost all combustion area. 4) The variation of the PM concentration at low load is not so seen. But at high load, PM increased rapidly when concentration of oxygen is decreased and most of it caused the increasing of Dry Soot.

분사기 형상 변경을 통한 저온 디젤 연소의 배기 배출물 저감 (Reduction of Exhaust Emissions Using Various Injector Configurations in Low Temperature Diesel Combustion)

  • 정용진;장진영;박정서;배충식;김득상
    • 한국자동차공학회논문집
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    • 제19권4호
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    • pp.16-23
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    • 2011
  • Low temperature combustion is one of the advanced combustion technology in an internal combustion engine to reduce soot and nitrogen oxides simultaneously. In present experiment three kinds of injector were used to investigate the influence of injection angle and number of nozzle holes on the low temperature combustion in a heavy duty diesel engine. Low temperature diesel combustion is realized from the exhaust gas recirculation rate of 60%. Indicated mean effective pressure of low temperature combustion corresponds to the 70% level of conventional diesel engine combustion. Reduction of hydrocarbon and carbon monoxide, which are produced in low temperature combustion because of the low combustion temperature and a deficit of oxygen, was achieved by using various injector configuration. The result of experiment with $100^{\circ}$ injection angle and 8 holes showed that reductions in hydrocarbon and carbon monoxide could be achieved 58% and 27% respectively maintaining the 7% increased indicated mean effective pressure in low temperature diesel combustion compared with conventional injector.

단기통 디젤엔진에서 다단 파일럿 분할 분사 전략이 연소 및 배기가스 특성에 미치는 영향 (Effects of Multi-stage Pilot Split Injection Strategy on Combustion and Emission Characteristics in a Single-Cylinder Diesel Engine)

  • 이형민
    • 한국산학기술학회논문지
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    • 제21권7호
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    • pp.692-698
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    • 2020
  • 본 논문은 커먼레일 단기통 디젤엔진에서 다단 파일럿 분할 분사 전략이 연소 및 배기가스 배출특성에 미치는 영향을 분석하는 데 초점을 두었다. 실린더 내부 최고 압력과 열발생률은 단일분사 조건에서 가장 높았으며, 파일럿 분사량이 균등하게 분할되어 분사 횟수가 증가할수록 감소하는 경향으로 나타났다. IMEP, 엔진 토크 및 연소 효율은 1단 파일럿 분사 조건에서 가장 낮게 나타나는 특성을 보였으나, 다단 파일럿 분할 분사 전략 적용 시 증가하는 경향으로 분석되었다. COVIMEP는 연소 효율이 가장 낮은 1단 파일럿 분사 조건에서 가장 높았으며, 이는 연소 안정성이 낮다는 것을 의미한다. 배기가스 중 산소농도는 단일분사 조건에서 가장 낮았고, 이산화탄소는 가장 높게 배출되는 특성을 보였다. 다단 분할 분사 전략 적용 시 저온 연소과정이 진행되기 때문에 일산화탄소의 산화율은 낮아지게 되고 배출수준은 증가하는 특성을 보였다. 탄화수소는 국부적으로 농후한 혼합기가 형성되는 단일분사 조건에서 가장 높은 결과를 보였다. 질소산화물은 다단 파일럿 분할 분사 전략 중 3단 파일럿 분사 조건에서 55.6%까지 감소하는 특성을 보였다.