• 제목/요약/키워드: NOx quantity

검색결과 67건 처리시간 0.029초

커먼레일 직접분사(CRDi)용 고압 디젤인젝터의 구동방식별 Pilot Spray 특성비교 (I) - 실제 직접분사식 디젤엔진에서의 사전분사 특성 분석 - (Comparison of Pilot Spray Characteristics of HP Diesel Injectors with Different Driving Method for CRDi System (I))

  • 이진욱
    • 한국분무공학회지
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    • 제15권1호
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    • pp.25-30
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    • 2010
  • The capability of pilot injection with small fuel quantity at all engine operating conditions is one of the main feature of the common rail direct injection system. The purpose of the pilot injection is to lower the engine noise and to reduce the NOx emissions. This study describes the pilot spray structure characteristics of the common-rail diesel injectors with different electric driving characteristics, including solenoid-driven and piezo-driven type. Namely three common-rail injectors with different electric current wave were investigated in this study. The pilot spray characteristics such as spray speed, spray tip penetration, and spray angle were obtained by spray images, which is measured by the back diffusion light illumination method with optical system for high-speed temporal photography. As this research results, it was found that pilot injection of common-rail system was effected by rate of injection with different electrical characteristic for driving the injector.

연료조성에 따른 HCCI 엔진의 냉염 및 열염의 2단연소 특성에 관한 실험적 연구 (An Experimental Study on the Two Stage-Ignition of Cool Flame and Hot Flame in HCCI Engine According to Fuel Composition)

  • 김형민;류재덕;이기형;이창식
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 제26회 KOSCO SYMPOSIUM 논문집
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    • pp.13-19
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    • 2003
  • As the environmental pollution becomes serious global problem, the regulation of emission exhausted from automobiles is strengthen. Therefore, it is very important to know how to reduce the NOx and PM simultaneously in diesel engines, which has lot of merits such as high thermal efficiency, low fuel consumption and durability. By this reason, the new concept called as Homogeneous Charge Compression Ignition(HCCI) engines are spotlighted because this concept reduced NOx and P.M. simultaneously. However, it is well known that HCCI engines increased HC and CO. Thus, the investigation of combustion characteristics which consists cool and hot flames for HCCI engines were needed to obtain the optimal combustion condition. In this study, combustion characteristics for direct inject type HCCI engine such as quantity of cool flame and hot flame, ignition timing and ignition delay were investigated to clarify the effects of these parameters on performance. The results revealed that diesel combustion showed the two-stage ignition of cool flame and hot flame, the rate of cool flame increase and hot flame decrease with increasing intake air temperature. On the other hand, the gasoline combustion is the single-stage ignition and ignition timing is near the TDC. In addition mixed fuel combustion showed different phenomenon, which depends on the ratio of gasoline component. Ignition timing of mixed fuel is retarded near the TDC and the ignition delay is increased according to ratio of gasoline.

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울산항 선박으로부터의 대기오염 배출량 산정에 관한 연구 (A studies on the Air pollutant Emission Rate calculation from vessels in the Ulsan Port)

  • 정광현;김성주;박흥석
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2005년도 춘계학술발표회
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    • pp.111-118
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    • 2005
  • 국제해사기구(IMO)에서 1997년 9월 선박으로부터의 대기오염방지를 위한 협약(MARPOL 부속서VI)을 채택하여 U년 5월 19일 협약 발효를 앞두고 있다. 따라서 향후 선박으로부터 배출되는 배기가스 중에 포함된 아황산가스(SOx)와 질소산화물(No%)등 대기오염 물질의 배출 규제와 항만이나 터미널에서 유조선으로부터 휘발성유기화합물(VOCs) 배출금지 등의 규제가 강화될 것으로 예상된다. 본 연구는 이에 대한 대비와 관리방안을 모색하고자 외국에서 이용되는 선박의 배출오염물질 산정 방법을 이용하여 선박에서 배출되는 SOx, NOx의 배출량을 산정하였다. 또한 울산항 특성을 감안하여 액체화물 적$\cdot$양하시 발생되는 휘발성유기화합물(VOCs)의 양을 산정하는 방법에 대해 고찰하고 그 배출량을 산정하였다.

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연료조성에 따른 HCCI 엔진의 냉염 및 열염의 2단연소 특성에 관한 실험적 연구 (An Experimental Study on the Two Stage Ignition of Cool Flame and Hot Flame in HCCI Engine According to Fuel Composition)

  • 이기형;김형민;류재덕;이창식
    • 한국자동차공학회논문집
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    • 제12권1호
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    • pp.17-24
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    • 2004
  • As the environmental pollution becomes serious global problem, the regulation of emission exhausted from automobiles is strengthened. Therefore, it is very important to know how to reduce the NOx and PM simultaneously in diesel engines, which has lot of merits such as high thermal efficiency, low fuel consumption and durability. By this reason, the new concept called as Homogeneous Charge Compression Ignition(HCCI) engines are spotlighted because this concept reduced NOx and P.M. simultaneously. However, it is well known that HCCI engines increased HC and CO. Thus, the investigation of combustion characteristics which consists cool and hot flames for HCCI engines were needed to obtain the optimal combustion condition. In this study, combustion characteristics for direct injection type HCCI engine such as quantity of cool flame and hot flame, ignition timing and ignition delay were investigated to clarify the effects of these parameters on performance. The results revealed that diesel combustion showed the two-stage ignition of cool flame and hot flame, the rate of cool flame increase and hot flame decrease with increasing intake air temperature. On the other hand, the gasoline combustion is the single-stage ignition and ignition timing is near the TDC. In addition mixed fuel combustion showed different phenomenon, which depends on the ratio of gasoline component. Ignition timing of mixed fuel is retarded near the TDC and the ignition delay is increased according to ratio of gasoline.

이동형 배출가스 측정시스템(MEL)을 이용하여 디젤, CNG, LPG 시내버스에서 배출되는 입자상 물질 평가 (On-Road Investigation of PM Emissions of a City-Buses Fuelled by Diesel, CNG, and LPG Using a Mobile Emission Laboratory)

  • 이석환;김홍석;박준혁;윤준규
    • 대한기계학회논문집B
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    • 제35권4호
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    • pp.409-416
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    • 2011
  • 차량에 의한 대기오염을 실제 주행 조건에서 시간과 공간에 구애받지 않고 실시간으로 측정하기 위하여 이동형 배출가스 측정장치 (MEL)가 제작되었다. 미니밴 차량에 배출가스 측정을 위한 장비와 입자의 수 농도 및 입경분포 측정을 위한 FMPS, CPC가 탑재되었다. 차량 전단에 장착되는 흡입 샘플링 포트를 사용하여 여러 종류의 차량 추적 실험을 수행하였다. 본 연구에서는 MEL의 구축 과정 및 디젤, CNG, LPG 연료를 사용하는 버스를 추적 실험한 결과를 나타내었다. 배출가스의 희석비는 추적차량의 엔진 배기 NOx 및 MEL 차량에서 샘플링 되는 NOx의 비로 계산하였다. 디젤버스에서 배출되는 입자의 대부분은 300 nm 이하의 크기이며 입경분포의 피크값은 30~60 nm 사이에 위치하였다. 하지만, 가스연료인 CNG와 LPG를 사용하는 버스에서 배출되는 입자들은 극미세입자 영역인 50 nm 이하로 측정되었다.

태백시 소각로 내 NOx 제거를 위한 전산유체역학(CFD) simulation 연구 (Study on Computational Fluid Dynamics(CFD) Simulation for De-NOx in the incinerator at Taebaek city)

  • 김지현;박영구
    • 한국응용과학기술학회지
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    • 제30권2호
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    • pp.320-332
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    • 2013
  • 소각로 내 공기 주입은 연소가스의 체류시간, 미연분 제거 및 출구가스 온도 제어 등의 많은 영향을 끼친다. 이에 따라 2차 연소용 공기량을 변화시켜 충분한 체류시간을 확보하고 $850^{\circ}C$ 이상의 출구가스 온도를 유지하며, 높은 turbulent를 관리함으로써 안정적인 소각로 운영이 되어야만 한다. 본 연구에서는 현재 운영 중인 소각장의 소각로를 설계하고, 평균 일일 소각량을 바탕으로 1차 공기량을 산정한 후 2차 공기량을 변화하여 CFD 프로그램(Fluent)을 통해 이론적인 공기유동을 규명하였다. 또한 산정된 공기량을 바탕으로 실제 운영 중인 소각장에 적용함으로써 최적의 연소조건을 도출하였다. CFD simulation 결과 1.2차 공기비는 75:25가 최적의 결과로 나타났으며, 2차 공기 분사노즐 전 후면 유속 비는 1:3에서 가장 우수한 결과로 나타났다. 또한, 실제 운영 중인 소각로에 적용한 결과 적절한 소각로 출구온도는 질소산화물 제거 효율 및 일산화탄소 발생농도에 영향을 미치는 것으로 나타났다.

과급을 이용한 저온 디젤 연소의 운전영역 확장 및 배기 배출물 저감 (Expansion of Operating Range and Reduction of Engine out Emission in Low Temperature Diesel Combustion with Boosting)

  • 심의준;한상욱;장진영;박정서;배충식
    • 한국자동차공학회논문집
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    • 제17권5호
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    • pp.31-38
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    • 2009
  • Supercharging system was adopted to investigate the influence of boost pressure on operating range and exhaust emissions by using a supercharger at low temperature diesel combustion (LTC) condition in a 5-cylinder 2.7 L direct injection diesel engine. The experimental parameters such as injection quantity, injection timing, injection pressure and exhaust gas recirculation (EGR) rate were varied to find maximum operating range in LTC condition. As a result of adopting increased boost pressure in LTC, wider operating range was achieved compared with naturally aspirated condition due to increased mixing intensity. Increased boost pressure resulted in lower hydrocarbon (HC) and carbon monoxide (CO) emissions due to increased swirl rate and mixing intensity, which induced complete combustion. Moreover, increased boost pressure in LTC resulted in much lower soot emissions compared with high speed direct injection (HSDI) condition.

대체연료로서 가솔린-메타놀 혼합연료에 의한 가솔린 기관성능과 배출오염물에 관한 연구 (A study on engine performances and exhaust emissions using gasoline-methanol as an alternative fuel)

  • 김희철;용기중
    • 오토저널
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    • 제3권2호
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    • pp.18-26
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    • 1981
  • The purpose of this paper is to study the possibility of practical use of gasoline-methanol mixed fuel as an alternative fuel of gasoline engines in the light of engine performances and harmful exhaust emissions as well as mixings and separations of the mixed fuels. When the methanol of 99.8% purity is mixed with super or regular gasoline available on the market today, the experimental results obtained without modifying carburetor in this study are as follows; 1.The separation ratio depends upon the gasoline-methanol mixing ratio only, regardless of fuel temperature and fuel additives for preventing separation of phase. 2.The critical absorption ratio is affected by the gasoline-methanol mixing ratio, its temperature and the quantity of fuel additives. 3.Concerning the distillation temperature, the initial point of all sorts of fuels is almost same,but 10% point and 35-60% point of mixed fuels are lower than those of gasoline only. 4.In case of throttle valve opening set, engine output using the mixed fuels is decreased compared to gasoline, but thermal efficiency is increased as a consequence of decreasing specific energy consumption. 5.In case of fixed load test, thermal efficiency is increased at low engine speed even under low part-load as well as under comparatively high part-load including full load. 6.CO and NOx emissions are reduced remarkably with the mixed fuels.

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다른 구동방식을 갖는 고압 디젤 엔진용 인젝터의 Pilot 분무 특성 해석 (Analysis of Pilot Spray Characteristics of Different Driven Injectors for High Pressure Diesel Engine)

  • 배장웅;김하늘;이진욱;강건용;류정인
    • 한국연소학회:학술대회논문집
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    • 대한연소학회 2003년도 제27회 KOSCO SYMPOSIUM 논문집
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    • pp.251-256
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    • 2003
  • The capability of pilot injection with small fuel quantity at all engine operating conditions is one of the main feature of the common rail system. The purpose of the pilot injection is to lower the engine noise and to reduce the NOx emissions. This study describes the pilot spray structure characteristics of the common-rail diesel injectors, solenoid-driven and piezo-driven type, with different electric driving characteristics So, three common-rail injectors with different electric current wave were used in this study. The pilot spray characteristics such as spray speed, spray tip penetration, and spray angle were obtained by spray images, which is measured by the back diffusion light illumination method with optical system for high-speed temporal photography. Also the CFD analysis was carried out for fuel behavior under high pressure in between needle and nozzle of solenoid-driven injector to know the condition of initial injection at experiment test. It was found that pilot injection of common-rail system was effected by rate of injection and temperature of injected fuel and electrical characteristic of the driven injector.

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HSDI 디젤 엔진 연비 저감 개발에 대한 연구 (Study of HSDI Diesel Engine Development for Low Fuel Consumption)

  • 전제록;유준;윤금중
    • 한국자동차공학회논문집
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    • 제14권1호
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    • pp.138-143
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    • 2006
  • Modification of injector, oil ring tension reduction and oil pump rotor re-matching with optimization of relevant engine control parameters could drive fuel consumption reduction of HSDI diesel engine. A 5 holes injector was replaced with a 6 holes with smaller nozzle hole diameter and 1.5 k factor, and evaluated in a view of fuel economy and emission trade-offs. With introducing smaller nozzle hole diameter injector, PM(Particulate Matter) was drastically decreased for low engine load and low engine rpm. Modification of oil pump and oil ring was to reduce mechanical friction and be proved to better fuel economy. Optimization of engine operating conditions was a great help for the low fuel consumption. Influence of the engine operating parameters· including pilot quantity, pilot interval, air mass and main injection timing on fuel economy, smoke and NOx has been evaluated with 14 points extracted from NEDC(New European Driving Cycle) cycle. The fuel consumption was proved to $7\%$ improvement on an engine bench and $3.7\%$ with a vehicle.