• 제목/요약/키워드: 흡기관

검색결과 84건 처리시간 0.027초

밸브 타이밍 지각과 과급에 의한 흡기관 분사식 수소기관의 고성능 실현 (The Realization of High Performance in a Hydrogen-Fueled Engine with External Mixture by Retarding Valve Timing and Super Charging)

  • 이광주;허상훈;이종태
    • 한국수소및신에너지학회논문집
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    • 제20권6호
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    • pp.464-470
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    • 2009
  • In order to analysis the possibility of high expansion and performance without backfire in a hydrogenfueled engine using external mixture injection, combustion characteristics and performance enhancement were analyzed in terms of retarding valve timing and increasing the boosting pressure. As the results, it was found that thermal efficiency increased by retarding intake valve timing with the same level of supplied energy is over 6.6% by the effect of high expansion including effect of combustion enhancement due to supercharging. It was also shown that the achievement of high power (equal to that of a gasoline engine), low brake specific fuel consumption and low emission (NOx of less than 16 ppm) without backfire in a hydrogen-fueled engine is possible around a boosting pressure of 1.5 bar, intake valve opening time of TDC and $\Phi$=0.35 in fuel-air equivalence ratio.

흡기관 분사 방식 수소 연료 기관의 성능 및 배출물에 관한 연구 (The Performance and Emission of the Intake Port Injection Type Hydrogen Fueled Engine)

  • 이형승;이석재;이종화;유재석;김응서
    • 한국자동차공학회논문집
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    • 제1권2호
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    • pp.27-33
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    • 1993
  • Using the solenoid driven gas injection valve, Hydrogen fuel supply system was made. It was attached to a single cylinder research engine and intake port injection type hydrogen fueled S.I. engine was constructed. Engine performance, emission characteristics, and abnormal combustion were studied through the engine test performed with the variations of fuel-air equivalence ratio and spark timing. Compared with gasoline, hydrogen burns so fast that cylinder peak pressure and temperature are higher and NO is emitted more at full load condition. IN the case of intake port injection type engine, COVimep becomes lower due to the well-mixing of air and fuel, and engine output is lower owing to the low volumetric efficiency. As fuel-air equivalence ratio goes up, the combustion speed increases, and COVimep decreases. NO emission peaks slightly lean of stoichiometric. As spark timing advances and fuel-air equivalence ratio goes up, the cylinder peak pressure and temperature become higher, so abnormal combustions take place easily.

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가솔린 엔진의 성능, 연비, 배출 가스를 동시에 고려한 시뮬레이션 기반 흡기 다기관 길이 최적화 (Simulation-based Intake Manifold Runner Length Optimization for Improving Performance, Fuel Consumption and Emission of a Gasoline Engine)

  • 강용헌;최동훈
    • 한국자동차공학회논문집
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    • 제18권5호
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    • pp.62-67
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    • 2010
  • Exhausting fossil fuel and increasing concern of air pollution have brought on the change of the focus of developing new vehicles from performance to fuel economy and emission. The gasoline engines adopting the naturally aspirated way use the throttle-body for engine load control. Therefore, its pumping loss increases more than that of the diesel engine, and also mostly operating in a partial load condition has bad influence on fuel economy and emission. In these days, the continuous variable valve timing system and variable induction system are adopted in order to improve fuel consumption and emission. In this study, we optimize the runner length and operate region of variable induction system to simulataneously improve the performance, fuel economy, and emission of gasoline engine with employing GT-Power as a CAE tool for engine analysis and PIAnO as PIDO tool for process integration and design optimization.

전자제어 디젤엔진의 흡기 다기관 및 연료분사장치 정비에 따른 매연 배출특성에 관한 연구 (Study on the Characteristics of Exhaust Emissions in accordance with the Intake Manifold and Fuel Injector Maintenance of the Electronic Control Diesel Engine)

  • 강현준;김태중
    • 한국산학기술학회논문지
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    • 제17권9호
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    • pp.196-205
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    • 2016
  • 자동차로부터 배출되는 배기가스는 오존 및 미세먼지 등의 농도를 증가시켜 인체의 건강을 위협할 뿐만 아니라 지구 온난화 물질인 이산화탄소를 다량 배출하고 있어 지구 온난화에도 지대한 영향을 미치고 있다. 그래서 정부는 자동차에서 배출되는 배기가스를 효율적으로 규제하기 위한 제도로 운행차 배출가스 정밀검사 제도를 시행하고 있다. 자동차 배출가스를 줄이려는 연구는 다방면으로 이루어지고 있으며, 자동차의 배출가스 중 HC, NOx, $CO_2$ 등의 발생을 줄이기 위한 연구가 이루어지고 있다. 그러나 노후된 자동차에 대한 배출가스 저감에 대한 연구는 부족한 실정이다. 노후된 디젤자동차들이 운행차 배출가스 정밀검사를 만족하기 위해서는 흡기 다기관(manifold)과 인젝터의 카본퇴적물(Carbon sediment)을 세척하여 출력향상 및 배출가스 저감에 대한 연구가 필요하다. 따라서 본 연구에서는 차령 5년 이상, 주행거리 80,000 km 이상의 디젤자동차에 흡기 다기관 클리닝과 인젝터 클리닝을 동시에 수행하여 매연 발생에 미치는 영향을 비교 분석하였다. 실험결과, 흡기다기관 클리닝과 인젝터 클리닝을 동시 수행한 결과는 각각 수행한 결과보다 매연을 75.2% 감소시켰다. 또한, 흡기다기관 클리닝과 인젝터 클리닝을 동시 수행한 결과는 검사 후 8.5초부터 배출허용 기준 30%이하를 만족하였다.

공리적 접근을 이용한 자동차 경량화 설계 - 통합 흡기시스템의 개발(I) (Weight Reduction in automobile Design Through Axiomatic Approach -Developed of Integrated Air Fuel Module(I)-)

  • 문용락;차성운;윤풍영
    • 한국자동차공학회논문집
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    • 제7권6호
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    • pp.106-114
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    • 1999
  • Today, one of the most important objective in automobile development is to reduce the weight of automobile . The eventual depletion of petroleum and environmental regulations brought considerable emphasis to this area on increasing fuel efficiency. Conventional intake air-fuel system is very heavy because it is composed of numerous parts. The bulky size caused increase in the amount of metal being used to build automobile chassis and this became a serious weight problem. The size also caused difficulties in optimization of fuel supply system which in turn decreased engine efficiency. Currently , there are efforts to integrate several intake system modules into one. The purpose of this paper is to evaluate the directions of such development.

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흡기관 복합공진을 위한 기관의 시뮬레이션 연구 (A Study on the Multi-Tuning for Intake Manifold Using Engine Simulation)

  • 이응석
    • 대한기계학회논문집
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    • 제18권12호
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    • pp.3315-3325
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    • 1994
  • To study the variation of charging efficiency in the engine intake, the method to change the natural frequency of intake system using the intake control valve was studied and it has been used in actual engine to increase the intake air. In this paper, the method of characteristics was used to analyze the non-steady state and compared with the experimental data of the 6-cylinder diesel engine showing the effectiveness of the method theoretically.

소형엔진 기화기의 유동해석 (Flow Simulation of a Small Engine Carburettor)

  • 배봉기;박성영
    • 한국산학기술학회:학술대회논문집
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    • 한국산학기술학회 2009년도 추계학술발표논문집
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    • pp.511-514
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    • 2009
  • 현재 일반적으로 사용되는 300cc 소형엔진 기화기의 최적화 및 성능 향상을 위하여 유동해석을 수행하였다. 베르누이의 정리를 기본으로, 성능을 발휘하는 주요 설계인자인 기화기 내부의 벤튜리 튜브의 각도, 길이 등을 변수로 하여 유동해석을 수행하였다. 그 결과를 분석하여 최적화된 모델을 제시하였다. 결론적으로, 유동 해석을 바탕으로 기존 사양 대비 향상된 성능의 모델을 제시하였다. 유동해석을 통해 기화기 내부의 벤튜리관에 곡면(Rounding)처리를 적용함으로 기화기에서 소모되는 흡기저항을 줄여 펌핑로스를 저감활수 있음을 확인하였다. 펌핑로스의 저감은 엔진 연비의 향상과 엔진토크에 긍정적 효과로 작용할 것으로 기대된다. 벤튜리관의 출구 각도를 감소시킴으로 박리를 개선하여 Dead Volume을 줄임으로서 기존 모델에 대비하여 원활해진 유동의 흐름을 얻을 수 있었다. 이는 흡기유량을 증대시키고 엔진출력을 상승시키는 효과로 작용할 것으로 예상된다.

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단기통 엔진의 흡.배기계의 압력 변동에 관한 연구 (Pressure Variations in Intake and Exhaust Manifold of a Single Cylinder Engine)

  • 최석천;이용훈;이상철;정한식;이광영;정효민
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 추계학술대회
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    • pp.775-780
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    • 2003
  • In this study, a computer analysis has been developed for predicting the pipe pressure of the intake and exhaust manifold in a single cylinder engine. To get the boundary conditions for a numerical analysis, one dimensional and unsteady gas dynamic calculation is performed by using the MOC(Method Of Characteristic). The main numerical parameters are the variation of the exhaust pipe diameters to calculate the pulsating flow when the intake and exhaust valves are working. As the results of numerical analysis, the shapes and distributions of the exhaust pipe pressures were influenced strongly on the cylinder pressure. As the exhaust pipe diameter is decreased, the amplitude of exhaust pressure is large and the cylinder pressure was showed low in the region of intake valve opening time.

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단기통 가솔린 기관의 배기단의 압력 예측 (Pressure Predictions in Exhaust Pipe of a Single Cylinder Gasoline Engine)

  • 최석천;이해종;김세현;고대권;정효민;정한식
    • 동력기계공학회지
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    • 제8권1호
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    • pp.24-29
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    • 2004
  • In this study, a computer analysis has been developed for predicting the pipe pressure of the intake and exhaust manifold. To obtain the boundary conditions for a numerical analysis, one dimensional and non-steady gas dynamic calculation is performed by using the MOC(Method Of Characteristic). The main numerical parameters are the variation of the engine revolution to calculate the pulsating flow which the intake and exhaust valves arc working. The comparison of exhaust pressure in case of numerical results is quite matched with in case of experimental results. When engine revaluation is increased, the pressure amplitude showed a high value, but the pressure frequency was decreased.

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흡기관내(吸氣管內) 액막류(液膜流) 거동(擧動)에 관(開)한 연구(硏究) (I) - 흡기계통(吸氣系統)의 품질개선(品質改善)을 위(爲)하여 - (A Study on the Behavior of Liquid Film Flow in Intake Manifold - On the improvement of intake manifold system -)

  • 전흥신;이규영;박경석;양옥용;성환태
    • 품질경영학회지
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    • 제9권2호
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    • pp.15-25
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    • 1981
  • This paper deals with the experimental study on the behavior of fuel flow in intake manifold of gasoline engine. The main purpose of this study is an analysis of air stream velocity, behavior of liquid film flow, generation of atomization and atomization rate by using the basic apparatus which is manufactured the visible, straight tube type model of intake manifold. As the result, we have found factors which influenced on the behavior of liquid film flow in intake manifold.

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