• Title/Summary/Keyword: 미연 탄화수소

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Numerical Study on Auto-ignition and Combustion Emissions Using Gasoline/Ethanol Surrogates (휘발유/에탄올 혼합연료의 자연발화 및 연소배기가스 특성에 관한 수치적 연구)

  • Lee, Eui Ju
    • Fire Science and Engineering
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    • v.30 no.3
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    • pp.1-6
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    • 2016
  • More than five thousands transportation fires occurannually in Korea and the resulting destruction of property and loss of life is huge and results in traffic and environmental pollution. The recent development of automobile technology such as the hybrid concept and use of bio fuels makes fire protection even more difficult due to a lack of understanding of the new adapted system including vehicle engines. In this study, a numerical simulation was performed on a PSR (perfectly Stirred Reactor) to simulate an automobile engine and to clarify the effect of gasoline/ethanol surrogates as a fuel. The temperature, NOx and soot emissions were predicted to decrease with increasing ethanol content, but that of unburned hydrocarbons was found to increase dramatically. The result will provide not only the basic thermal characteristics for engines and their after-treatment systems, but also make it possible to assess the potential for fire events in these systems when an ethanol mixed fuel is used in gasoline vehicles.

Concentration of Particulate Matter in Korea (우리나라 일부 지역의 입자상 물질에 대한 농도)

  • Son, Bu-Sun;Gong, Mi-Yeon;Yang, Won-Ho;Park, Jong-An;Jang, Bong-Gi;Cho, Jun
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.05b
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    • pp.305-307
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    • 2003
  • 우리가 숨쉬고 있는 대기 중에는 많은 부유 먼지가 존재하고 있으며, 이는 산업활동의 증가와 도시화, 차량 수 등의 증가로 인하여 그 종류와 농도가 크게 변화하여 자연 생태계 및 인체 건강에 심각한 영향과 피해를 유발시키고 있다(1989; 1996). 이러한 부유 먼지는 거대먼지(coarse particle)와 미세먼지(fine particle)로 분류할 수 있다. 미세먼지에는 여러 가지 금속성분, 유기물질,virus, 조류 및 곰팡이 등이 포함되어 있으며, 다환 방향 족 탄화수소(polycyclic aromatic hydrocarbon, PAH) 등의 발암성 물질이 포함되어 있다. (중략)

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The Methods for Reducing NO Emitted from a Combusfor (연소로에서 방출되는 NO를 저감시키기 위한 방법)

  • 이기용;남태형
    • Journal of Energy Engineering
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    • v.9 no.4
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    • pp.288-294
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    • 2000
  • 본 논문은 1차와 2차 연료 라인을 설치한 실제 연소로에 형성된 프로판 난류화염으로부터 방출되는 NO의 생성변화를 연구하였다. 1차 연료는 버너의 노즐로 일정하게 공급되고, 추가적으로 2차 연료는 맥동되거나 또는 일정한 양이 첨가되었다. 2차 연료를 공급 튜브의 위치를 주 연료 튜브의 중심 또는 보염기 주위에 설치하였다. 연소로의 출구에서 화학종 $O_2$,CO, $CO_2$, NO와 HC(미연 탄화수소)의 평균 농도를 측정하였다. 당량비가 증가함에 따라, 후자의 방식에서의 NO 농도의 분포는 전자의 방식에서 보다 더 천천히 증가하였다. 당량비가 0.5에서 0.54 범위에서는 전자의 방식보다 후자의 방식이 NO 생성을 dir 35%까지 감소시켰다. 2차 연료의 맥동에 대한 NO에서도 변화의 영향은 2가지 방식에서 모두 나타나지 않았다.

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Low NOx Combustors in a Industrial Gas Turbine (산업용 가스터빈의 저NOx 연소기)

  • 신동신
    • Journal of the KSME
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    • v.34 no.12
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    • pp.929-939
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    • 1994
  • 최근 환경문제와 관련하여 정제된 석유 연료가 아닌 천연가스와 같은 연료의 사용이 증가하면서 산업용 가스터빈의 연소기술에 대한 관심이 집중되고 있다. 가스터빈 연소로 생성되는, 환경을 위협하는 오염물은 연기, 수증기, 일산화탄소(CO), 미연 탄화수소, $NO_{x}$, $SO_{x}$ 등이 있다. 수증기 및 일산화탄소는 지구 온실화에 영향을 미치고 있으나 그다지 심각한 정도는 아 니며, $SO_{x}$는 독성이 있으나 연료 정제시 제거되어질 수 있다. $NO_{x}$는 지구의 오 존층을 파괴하여 생태계를 위협하기 때문에 오염 배출물중 가장 심각하게 고려되어지고 있다. 미국에서는 법으로 산업용 가스터빈의 $NO_{x}$의 양을 규제하고 있는데 15% 산소배출농도에 대하여 1984년에 75ppm에서 1993년에 30ppm으로 낮추어 규제하고 있다. 일본도 미국과 비슷한 수준으로 규제하고 있으며, 따라서 최근의 가스터빈 연소기술은 저 $NO_{x}$연소기에 대한 것으로 저$NO_{x}$연소에 관한 개론 및 가스터빈 연소기의 저$NO_{x}$화 방법, 그리고 미 국과 일본의 최근의 저$NO_{x}$연소기 개발동향에 대하여 다루고자 한다.

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Effects of Fuel Injection Timing on Exhaust Emissions Characteristics in Marine Diesel Engine (선박용 디젤기관의 연료분사 시기가 배기배출물 특성에 미치는 영향)

  • 임재근;최순열
    • Journal of Advanced Marine Engineering and Technology
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    • v.26 no.3
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    • pp.307-312
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    • 2002
  • A study on the exhaust emissions of marine diesel engine with various fuel injection timing is performed experimentally .In this paper, fuel injection timing is changed from BTDC $14^{\circ}$ to $20^{\circ}$ by $2^{\circ}$ intervals, the experiments are performed at engine speed 1800rpm and from load 0% to 100% by 25% intervals, and main measured parameters are fuel consumption rate, Soot, NOx, HC and CO emissions etc. The obtained conclusions are as follows (1) Specific fuel consumption is indicated the least value at BTDC $18^{\circ}$ of fuel injection timing and it is increased in case of leading the injection timing. (2) Soot emission is decreased in case of leading fuel injection timing and it is increased in the form of convex downwards with increasing the load. (3) NOx emission is increased in case of leading fuel injection timing and it is increased in the form of straight line nearly with increasing the load. (4) HC and CO emissions are decreased in case of leading fuel injection timing and they are changed in the form of convex downwards with increasing the load.

Determination of Air Fuel Ratio According to Fuel Composition (II) -Compensation of Unburned Gas Concentration in Eltinge Chart- (연료 조성에 따른 공연비 산정 (II) -Eltinge 차트에서 미연 성분의 보상-)

  • Ohm, In-Yong;Park, Chan-Jun
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.27 no.11
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    • pp.1563-1571
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    • 2003
  • This paper is the second part of several companion papers which compare the method of Air-fuel ratio(AFR) determination. In the previous paper, Eltinge chart was applied to the arbitrary fuel composition and the charts for gasoline, diesel, methanol, M85, liquefied petroleum gas(LPG), natural gas(NG), propane and butane were illustrated. In Eltinge chart, however, unburned hydrocarbon (UHC) is not used for determination of AFR. For improving accuracy, Eltinge suggested UHC compensation after the AFR reading in the chart. This compensation reduced the difference between real and reading value. In the compensation, however, the correction of oxygen and carbon dioxide is uncertain and there might be a mistake in conversion of UHC reading value. Therefore, the error is overestimated comparing with Spindt one which is most widely used. In addition, there is no comparison of the value with other useful methods. In this paper, the compensation of unburned HC was performed in Eltinge chart and the compensated value was compared with Spindts formula over wide range of AFR. The objects of investigating fuel are gasoline, methanol, NG and LPG. The result shows that Eltinge and Spindt method is flawlessly compatible and the difference between the two methods is under 0.3% in a λrange from 0.9 to 1.7. The method fur debugging instrumentation error is also presented.

Troubleshooting of Combustor for Auxiliary Power Unit during Engine/System Test (엔진 및 체계시험 중 발생한 보조동력장치 연소기 문제해결과정)

  • Lim, Byeungjun;Park, Heeho;Lee, Seungjoon;Sung, Okseok
    • Aerospace Engineering and Technology
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    • v.11 no.2
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    • pp.57-64
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    • 2012
  • Although the APU combustors were developed successfully, it could face many unexpected hardships in an engine or a system operating under the severe environments. But, it is not easy to change the combustion field or combustor structure at the engine/system development stage. So we must suggest practical ways to optimize the value quantitatively by engine test and flow analysis, and verify those by the cyclic test. This paper describes reverse-annular type combustor troubleshooting processes for verifying and settling of the problems and issues occurred in various engine and system operation tests by experiment and analysis.

A Study on the Visualization Technique for Fuel Behavior and Fuel-Film Formation in the Intake Port of a S.I. Engine (가솔린 엔진 흡기 포트내의 연료 거동 및 벽류 생성 가시화 방법에 관한 연구)

  • Kim, B.G.;Lee, K.H.;Lee, C.S.
    • Journal of ILASS-Korea
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    • v.2 no.4
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    • pp.15-21
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    • 1997
  • In a gasoline engine with port injection system, the fuel behavior in the intake port has significant influence on the HC emission and the precise A/F control. That is to say, it is inevitable that the injection direction and behavior of fuel injected in the intake port have an effect on the generation of unburned HC within a cylinder. In this paper, we visualized fuel behavior in the intake port using micro CCD camera synchronized with the stroboscope and investigated the fuel-film characteristics formed at the wall of intake port by processing image captured with VCR in the transparent intake port made of acryl. Using these measuring methods, it was found that fuel behavior and the formation of fuel-film in the intake port could be evaluated qualitatively. And results obtained by these methods show that 2-spray injector minimizes the fuel-film formed in the intake port of a DOHC gasoline engine.

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THC Reduction through the Improvement of Exhaust System (배기계 형상 개선을 통한 THC 저감에 관한 연구)

  • 김기성;이용호
    • Journal of Advanced Marine Engineering and Technology
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    • v.24 no.5
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    • pp.111-118
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    • 2000
  • Experimental studies were performed to understand the flow characteristics in the exhaust system and improve the THC emission characteristics by optimizing the flow in the exhaust manifold and CCC in a SI engine. For this purpose, the flow characteristics in the exhaust systems with two types of exhaust manifolds(STD and New Type) were measured by using LDV technique under various engine condition. It was found that the flow characteristics in the New Type exhaust manifold was more desirable in a view point of heat loss reduction from the exhaust gases. The vehicle emission tests showed that the THC emission in the New Type exhaust manifold was decreased by 12%.

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The Misfire Detection by the Exhaust Pressure Ascent Rate (배기 압력 상승률에 의한 실화 검출)

  • 김세웅;최미호;심국상
    • Transactions of the Korean Society of Automotive Engineers
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    • v.11 no.2
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    • pp.1-7
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    • 2003
  • This paper proposes a method to detect misfired cylinders by the exhaust pressure ascent rate. The misfire is generated by faults of electric system or faults of fuel delivery system. It is one of the abnormal combustions. Therefore, it increases the unburned hydrocarbon and the carbon monoxide and affects a bad influence to the 3-way catalyst. The misfire causes to decrease the power of the engine and increase the consumption of the fuel. Early detection and correction of the misfired cylinders can prevent these unusual phenomena. The misfired cylinders can be detected by the comparison of exhaust pressure ascent rate during each cycle. The exhaust pressure ascent rate is defined as pressure rise per time. Our experimental results showed that the proposed method is effective in the detection of the misfired cylinders on a gasoline engine regardless loads and revolutions of the engine.