• 제목/요약/키워드: engine rpm

검색결과 569건 처리시간 0.023초

CI기관에서 디젤산화촉매장치에 의한 배출가스 저감에 관한 연구 (A Study on Emission Reduction by Diesel Oxidation Catalyst in Diesel Engine)

  • 김경배;한영출;강호인
    • 한국자동차공학회논문집
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    • 제4권4호
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    • pp.164-170
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    • 1996
  • Among after treatment devices which reduce exhaust gas of diesel engine, diesel oxidation catalyst(DOC) with high reduction efficiency for gaseous matter and particulate matter is now being studied actively. In this study, an experiment was conducted to analyze the effects on factors of oxidaton characteristics and conversion efficiency of DOC. We tested to estimate change of engine performance whether a 11,000cc diesel engine equipps with DOC or not. We conducted test to estimate the reduction efficiency of exhaust gas in P-5 mode, in D-13 mode of heavy duty diesel regulation mode and in somoke opacity mode for two samples and also we conducted test to analyze the effects about both exhaust gas velocities 1,100rpm and 2,200rpm

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선체-프로펠러-주기관 사이의 맞춤에 의한 선박 추진 계통의 최적화 (Optimization of Ship Propulsion System by Hull-Propeller-Engine Interaction)

  • 안성수;이창섭
    • 대한조선학회논문집
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    • 제30권1호
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    • pp.20-29
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    • 1993
  • 본 논문에서는 선체-프로펠러-주기관 사이의 상호 작용을 해석함으로써, 선박의 추진 계통을 최적화하는 방안을 제시하였다. 프로펠러의 직경과 전개 면적비를 체계적으로 변화시켜 가면서, 캐비테이션을 고려하여, 주어진 선속에서의 최적의 회전수-소요 마력의 조합을 선정한다. 그리고, 이에 대응하는 주기관 후보를 찾아내어, 각 후보의 연료 소비율을 비교함으로써, 연료 소비율이 최소가 되는 주기관을 결정하고, 동시에 프로펠러의 주요 요목을 결정하는 프로그램의 개발과정을 설명하였다.

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배기열 회수장치 적용에 따른 SI 엔진의 웜업 성능에 미치는 영향 (Effects of Warm-up Performance on SI Engine with Exhaust Heat Recovery System)

  • 박경석;서호철;박선홍;김인태;장성욱
    • 한국자동차공학회논문집
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    • 제19권6호
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    • pp.53-60
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    • 2011
  • The effect of exhaust heat recovery system can be evaluated by two well known method. First method is to measure the time duration from engine start under cold coolant temperature till coolant get warmed. By this methodology coolant warming duration can be index of warm-up effect. Second method is to analyze heat balance of the engine during warm-up phase under steady engine operation so that wasted energy by losses such as cooling and exhaust can be index of warm-up effect. This study focused on evaluation of warming-up effect by both methodology above mentioned using 2L SI engine under from idle to 2000rpm steady condition. Results, idle operation showed low heat recovery efficiency but under higher engine speed condition, remarkable heat recovery efficiency improvement was observed. In 2000rpm steady condition, warm-up duration of engine is decreased by exhaust heat recovery system.

가변 안내익을 이용한 터보팬 엔진 압축기의 서지 제어 (Surge Control of Turbofan Engine Compressor with the Variable Inlet Guide Vane)

  • 배경욱;김상조;한동인;민찬오;이대우
    • 한국항공우주학회지
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    • 제41권7호
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    • pp.539-546
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    • 2013
  • 항공기용 터보팬 엔진에서 압축기 성능이 단 시간에 변화가 클 경우, 이를테면 항공기가 이륙하는 상황에서와 같이 엔진 회전속도(RPM)를 공회전(idle) 상태에서 최대로 증가 시킬 때, 항공기의 엔진 성능이 급격하게 변화하므로 압축기 내에서 서지현상이 발생할 수 있다. 본 연구에서는 서지현상 발생 방지를 그 목적으로 하였다. Simulink를 이용하여 특정 상황에서 압축기 내에 일어나는 동적 움직임을 모사하였다. 연료유량을 입력값으로 하고 그에 따른 RPM, 공기유량은 전달함수로 나타냈으며, NPSS를 통해서 획득한 압축기 성능 맵을 통해 서지마진을 출력하였다. 서지마진을 기준 값 10%와의 차이를 PD제어하여 IGV(Inlet Guide Vane)각을 변화시킴으로써 즉, VIGV를 이용하여 압축기 내의 서지라인과 운용점 사이의 마진을 증가시켜 서지현상이 발생하는 것을 방지하였다.

차축의 중량 분포와 타이어의 공기압이 트랙터 작업의 연료 효율에 미치는 영향 (Effects of Distribution of Axle Load and Inflation Pressure of Tires on Fuel Efficiency of Tractor Operations)

  • 이진웅;김경욱;김동현;최규정
    • Journal of Biosystems Engineering
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    • 제36권5호
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    • pp.303-313
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    • 2011
  • This study was conducted to investigate the effects of axle weight distribution and inflation pressure of tire on the fuel economy of tractors as well as operational range of tractor engine in terms of engine speed and power when a 4WD tractor of 38.2 kW rated power at 2500 rpm is used for plowing and flooded-field rotavating in paddy fields. (1) Plowing operation required an average engine power of 9.6~13.5 kW which equals 25~35% of rated PTO power. Engine speed ranged from 1,320.4 to 1,737.4 rpm, work velocity from 3.4 to 4.8 km/h, and fuel consumption from 3.2 to 4.2 L/h, respectively. (2) Flooded-field rotavating required an average engine power of 11.5~18.5 kW which equals 30~48.4% of rated PTO power. Out of this 6.2~12.2 kW was used for PTO power. Engine speed ranged from 1,557 to 2,067 rpm, work velocity from 2.5~5.4 km/h and fuel consumption from 3.2~5.5 L/h, respectively. (3) Axle weight distribution, inflation pressure of tire and moisture content of soil did not affect significantly the specific volumetric fuel consumption but affected significantly the fuel consumption per unit area of operation. Fuel savings amounted to 65% in plowing operation and 20% in flooded-field rotavating when the axle weight distribution and inflation pressure of tire were optimally adjusted. (4) Optimal adjustment of axle weight distribution and inflation pressure of tire are expected to save fuel consumption by 10~65% per unit area of operation in plowing and 10~20% in flooded-field rotavating.

TiAl 터빈을 적용한 과급 직분식 전기점화 엔진의 과도운전 성능특성 (Characteristics of Transient Performance in a Turbocharged GDI Engine with TiAl Turbine)

  • 박찬수;정진영;배충식
    • 한국자동차공학회논문집
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    • 제23권3호
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    • pp.299-306
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    • 2015
  • Turbocharged gasoline direct injection engine is one of promising technologies in the automotive industry. However, reduction in turbo-lag under transient operation is one of important challenging points to improve drivability. Engine transient performance was investigated in a 4-cylinder 2.0 L turbo-gasoline direct injection (T-GDI) engine using Inconel and TiAl (Titanium Aluminide alloy) turbine wheel turbochargers. The TiAl turbocharger performed superior transient boost pressure and torque rises under various engine transient operation conditions. These were mainly due to lower turbine rotational inertia of TiAl turbocharger. The Maximum boost pressure and torque build up were founded in 1500 rpm and 2000 rpm, instant load change from 20% to 100% of pedal position.

UTV용 SI엔진에서 가솔린과 LPG 사용에 따른 배출가스 특성 연구 (A Study on the Characteristics of Exhaust Gas According to the Use of Gasoline and LPG in SI Engine for UTV)

  • 장진영;우영민;신영진;고아현;정용진;조종표;김강출;표영덕;한명훈
    • 한국분무공학회지
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    • 제27권2호
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    • pp.94-100
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    • 2022
  • Even in non-road UTV (Utility Terrain Vehicle), spark ignition engines are often used to reduce emissions. In this study, gasoline and LPG (Liquified Petroleum Gas) fuels were applied to UTV engines, and the exhaust gas and combustion stability were compared through engine tests. A 0.8-liter two-cylinder SI engine was used in the experiment. Experiments were conducted while changing the IVO (Intake Valve Open) and EVC (Exhaust Valve Close) at 1500 rpm 14 N·m, 40 N·m, and 3000 rpm 17 N·m, 44 N·m conditions. As a result of the experiment, when the valve overlap increased according to the change of IVO and EVC, combustion stability decreased and THC emission increased, but NOx decreased. Comparing the LPG engine with the gasoline engine, the amount of CO2 and PN (Particulate Number) generation decreased in the LPG engine, and the combustion stability was good.

석유(石油)엔진의 흡기관내(吸氣管內)의 물 부가(附加)가 엔진성능(性能)에 미치는 영향(影響) (Effects of Inlet-Manifold Water Addition on the Performance of Kerosene Engines)

  • 이춘우;유관희
    • Journal of Biosystems Engineering
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    • 제8권1호
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    • pp.38-46
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    • 1983
  • This study was carried out to investigate the possibility of improving the performance of a kerosene engine with water addition. The engine used in this study was a single-cylinder, four-cycle kerosene engine with the compression ratio of 4.5. Water could be successfully added into the inlet manifold by an extra carburetor for the volumetric ratios of 5, 10, 20, and 30 percents. Variable speed tests at wide-open throttle were performed for five speed levels in the range of 1,000 to 2,200rpm for each fuel type. Volumetric efficiency and brake specific fuel consumption were determined, and brake thermal efficiency based on the lower heats of combustion of kerosene was calculated. To examine variation in fuel consumption, CO concentration, and cooling water temperature, part load tests were also performed. The results obtained are summarized as follow. (1) Brake torque increased almost in proportion to volumetric efficiency. But the ratio of increase in torque was greater than that of volumetric efficiency. Mean torque over the speed range of 1,000 to 2,200rpm increased 1, 3, 7, and 2 percents for 5, 10, 20, and 30 percents water addition, respectively. The increase in brake torque with water addition was greater at lower speeds. (2) Mean brake specific fuel consumption over the speed range of 1,000 to 2,200rpm decreased 1, 2, 3, and 3 percents for 5, 10, 20, and 30 percents water addition, respectively. (3) Mean temperature of cooling water over the speed range of 1,000 to 2,200rpm decreased 2, 4, 8, and 12 percents for 5, 10, 20, and 30 percents water addition, respectively. (4) The effects of decreasing CO concentration in the exhaust emissions with water addition were significant. At the speed range of 1,000 to 2,200rpm, CO concentration in the exhaust emissions decreased 2, 10, 23, percents for 5, 10, and 20 percents water addition, respectively. (5) Deposits were not discovered in the combustion chamber during the experiment. However, a little rust was formed in the water-supply carburetor.

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저 기화성 연료를 사용한 직접분사식 과급 가솔린엔진에서 전 부하 스모크 저감을 위한 시스템 최적화에 관한 연구 (An Experimental Analysis for System Optimization to Reduce Smoke at WOT with Low Volatile Fuel on Turbo GDI Engine)

  • 김도완;이승환;임종석;이성욱
    • 한국자동차공학회논문집
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    • 제23권1호
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    • pp.97-104
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    • 2015
  • This study is a part of the high pressure injection system development on the Turbo GDI engine in order to reduce smoke emission in case of using the low volatile(high DI) fuel which is used as normal gasoline fuel in the US market. Firstly, theoretical approach was done regarding gasoline fuel property, performance, definition of particle matters and its creation as well as problems of the high DI fuel. In this experimental study, 2L Turbo GDI engine was selected and optimized system parameter was inspected by changing fuel, fuel injection mode (single/multiple), fuel pressure, distance between injector tip and combustion chamber, start of injection, intake valve timing in engine dyno at all engine speed range with full load. In case of normal gasoline fuel, opacity was contained within 2% in all conditions. On the other hands, in case of low volatile fuel (high DI fuel), it was confirmed that the opacity was rapidly increased above 5,000 rpm at 14.5 ~ 20 MPa of fuel pressure and there were almost no differences on the opacity(smoke) between 17 MPa and 20 MPa fuel pressure. According to the SOI retard, smoke decrease tendency was observed but intake valve close timing change has almost no impact on the smoke level in this area. Consequently, smoke decrease was observed and 16% at 6000rpm respectively with injector washer ring installed. By removing injector washer to make injector tip closer to the combustion chamber, smoke decrease was observed by 46% at 5,500 rpm, 42% at 6,000 rpm. It is assumed that the fuel injection interaction with cylinder head, piston head, intake and exhaust valve is reduced so that impingement is reduced in local area.

다단연소 사이클 엔진의 파워팩 시동 모사를 위한 해석적 연구 (A Numerical Study on the Simulation of Power-pack Start-up of a Staged Combustion Cycle Engine)

  • 이성훈;조성휘;김홍집;김성룡;이승재
    • 한국추진공학회지
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    • 제23권3호
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    • pp.58-66
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    • 2019
  • 본 연구에서는 다단연소 사이클 로켓엔진의 구성 부품에 대한 관계식을 이용하여 통합 엔진 시스템 성능해석 프로그램을 구축하여 시동 특성을 해석하였다. 엔진의 시동 특성은 다단연소 사이클 엔진의 시동부터 정상상태에 도달하는 시간까지 엔진 시스템의 진행과정 전체를 고려하여 해석되었다. 엔진의 시동과정동안 엔진의 엔진 파워팩의 RPM, 예연소기의 O/F비와 압력, 추진제의 유량과 같은 엔진 구성품의 시동 특성을 도출하였다. 또한 엔진의 시동과정에서 도출된 엔진의 성능특성 데이터와 실제 엔진의 연소시험을 통한 성능 데이터를 비교하였으며, 비교결과 엔진 시동과정의 해석 프로그램이 타당한 것으로 확인하였다.