• 제목/요약/키워드: Intake and exhaust systems

검색결과 64건 처리시간 0.024초

CRDI시스템을 갖는 천연가스/디젤 혼소차량의 개발에 대한 연구 (Research of Natural Gas/Diesel Dual Fuel Vehicle)

  • 이상민;임옥택
    • 한국자동차공학회논문집
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    • 제20권5호
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    • pp.13-18
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    • 2012
  • This research is about the exhaust gas and driving performance test which are for CNG-Diesel dual fuel engine. The CNG-Diesel dual fuel engine converted from 2500cc diesel has two steps of injection systems; small amount of diesel is injected to mixture CNG in cylinder to ignite before CNG is injected into each intake manifold to form mixture. The amounts of output power and emission in duel fuel consumption were measured by engine dynamometer and exhaust gas analyzer. Over 90% of diesel consumption reduction, similar driving performance to current diesel engine and reduced emission on $CO_2$ and PM, respectively, were indicated through the measurements. The two steps of system were applied to vehicle to investigate exhaust gas characteristics and driving performance via NEDC mode and real driving test. Additional oxidation catalyst was applied to reduce emission on the test vehicle and the NEDC mode test showed the reduction of Co, $CO_2$, Pm and THC.

GDI 엔진의 밸브리프트 변화에 따른 연소실내 흡기유동 및 연료분포에 대한 수치 해석적 연구 (A Numerical Study on the In-cylinder Flow and Fuel Distribution with the Change of Intake Valve Lift in a GDI Engine)

  • 김경배;송미지;김구성;강석호;이영훈;이성욱
    • 한국분무공학회지
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    • 제18권2호
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    • pp.100-105
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    • 2013
  • While variable valve actuation or variable valve lift (VVL) is used increasingly in spark ignition (SI) engines to improve the volumetric efficiency or to reduce the pumping losses, it is necessary to understand the impact of variable valve lift and timing on the in-cylinder gas motions and mixing processes. In this paper, characteristics of the in-cylinder flow and fuel distribution for various valve lifts (4, 6, 8, 10 mm) were simulated in a GDI engine. It is expected that the investigation will be helpful in understanding and improving GDI combustion when a VVL system is used. The CFD results showed that a increased valve lift could significantly enhance the mixture and in-cylinder tumble motion because of the accelerated air flow. Also, it can be found that the fuel distribution is more affected by earlier injection (during intake process) than that of later injection (end of compression). These may contribute to an improvement in the air-fuel mixing but also to an optimization of intake and exhaust system.

터보 차져 DI 디젤엔진에 있어서 성능 및 배기배출물에 미치는 흡기 포트 선회 유동 및 연료 분사계의 성능 (Effects of Intake Port Swirl and Fuel Injection System on the Performance and Exhaust Emissions in a Turbocharged DI Diesel Engine)

  • 윤준규;차경옥
    • 한국분무공학회지
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    • 제10권3호
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    • pp.45-53
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    • 2005
  • The purpose of this study is to analyze that intake port swirl and fuel injection system have an effect on the engine performance in a turbocharged D.I. diesel engine of the displacement 9.4L. As result of steady flow test, when the valve eccentricity ratio moved to cylinder wall, the flow coefficient and swirl intensity is increased. And as the swirl is increased, the mean flow coefficient is decreased, whereas the Gulf factor is increased. Through this engine test, it can be expected to meet performance and emissions by the following applied parameters; the swirl ratio is 2.43, injection timing is BTDC 13oCA and compression is 15.5.

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분사조건에 따른 LPG 인젝터의 분무특성에 관한 연구 (A Study on the spray characteristics according to injection conditions for LPG injector)

  • 류재덕;윤용원;이기형;이창식
    • 한국분무공학회지
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    • 제6권3호
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    • pp.17-22
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    • 2001
  • Recently LPG engine is developed to fulfill such new requirements as improved fuel efficiency in additional to further reduced exhaust emission. This experimental study is conducted to analyze spray characteristics for pintle type injector used in a LPLi (Liquid Phase LPG injection) engine. Since spray parameters including penetration length and spray angle make a role to design injector and engine intake system, spray visualization experiment is performed under atmosphere ambient and charging condition using Mie scattering method. From the experimental result under various LPG formation, the increased propane component decreases penetration length because boiling point of propane is lower than butane. To simulate intake charging condition in MPI engine, spray visualization is performed under high pressure condition. As a result, as ambient pressure is increased from atmosphere to 3.0 bar, penetration length is decreased. However, as ambient pressure is increased from atmosphere to 3.0 bar, spray angle is increased.

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4기통 디젤기관의 체적효율 예측에 관한 수치해석 및 실험적 연구 (A Theoretical and Experimental Study on the Prediction of Volumetric Efficiency for 4-Cylinder Diesel Engine)

  • 이재순;윤건식;심현수;박상기
    • 대한기계학회논문집
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    • 제16권10호
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    • pp.1928-1939
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    • 1992
  • 본 연구에서는 흡.배기관내에서의 상태변화를 계산하기 위하여 벽면과의 마찰 과 열전달, 단면적 및 엔트로피 변화를 고려하는 일반화된 특성곡선법을 채택하여 관 내 각 위치에서의 크랭크각에 따른 상태량의 변화를 계산하였으며, 실린더내의 연소과 정은 예혼합연소와 확산연소 각각을 나타내는 Wiebe의 연소함수를 조합한 Double Wie- be's Function을 이용하여 열발생률을 계산하였다.

직접분사식 디젤엔진에서 아산화질소의 생성에 관한 실험적 연구 (A Experimental Study on Nitrous Oxide Formation in Direct Injection Diesel Engine)

  • 유동훈
    • 해양환경안전학회지
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    • 제21권2호
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    • pp.188-193
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    • 2015
  • 일반적으로 선박용 디젤엔진의 아산화질소($N_2O$)배출률은 이산화황($SO_2$)배출률과 밀접한 상관성을 갖고 있고, 선박에서 사용되는 연료의 다양성은 $N_2O$배출특성에 영향을 미친다고 받아들여져 왔다. 최근의 연구보고에 의하면 연료 연소에서 발생한 충분한 일산화질소(NO)가 존재할 경우, 배기의 $SO_2$배출률이 $N_2O$생성에 미치는 영향은 NO의 영향보다 막대하게 크다. 그러므로 $SO_2$성분으로부터 기인하는 $N_2O$생성은 NOx저감을 위한 배기가스 재순환(EGR) 시스템에서 중요한 인자로 작용한다. 본 실험적인 연구의 목적은 $SO_2$유량 증가를 갖는 디젤엔진의 흡기가 배기의 $N_2O$배출률에 미치는 영향에 대하여 조사하는 것이다. 실험에 사용된 테스트 엔진은 2600rpm에서 12kW의 출력을 갖는 4행정 직접분사식 디젤엔진이고, 운전조건은 75% 부하에서 실시되었다. 0.499%($m^3/m^3$)의 $SO_2$표준가스는 흡기의 $SO_2$농도를 변화시키기 위해 사용되었다. 결과적으로 황 성분을 포함하지 않는 연료는 $SO_2$를 배출시키지 않았고, 흡기 중에 $SO_2$표준가스의 증가에 따른 배기의 $SO_2$배출률은 $SO_2$흡입률과 비교하여 거의 같은 비율이었다. 또한, 흡기의 $SO_2$유량 상승은 $N_2O$배출률을 상승시켜 배기 중의 $N_2O$는 흡기의 $SO_2$혼합기에 의해 생성되었다. 결국 황 성분을 함유한 연료는 연소 중에 $SO_2$를 형성하고 배기 중의 $N_2O$는 연소실에 존재하는 NO와 $SO_2$의 반응에 의해 발생된다고 할 수 있다.

압축착화기관용 가변밸브 듀레이션(VVD)시스템의 제어전략에 따른 유동 및 연소성능 해석 (Flow and Combustion Characteristics according Control Strategy of Variable Valve Duration System for Compression Ignition Engine)

  • 조인수;김우택;이진욱
    • 한국분무공학회지
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    • 제25권2호
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    • pp.45-50
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    • 2020
  • Recently, global warming and environmental pollution are becoming more important, and fuel economy is becoming important. Each automobile company is actively developing various new technologies to increase fuel efficiency. CVVD(Continuously Variable Valve Duration) system means a device that continuously changes the rotational speed of the camshaft to change the valve duration according to the state of the engine. In this paper, VVT(Variable Valve Timing) and CVVD were applied to a single-cylinder diesel engine, and the characteristics of intake and exhaust flow rate and in-cylinder pressure characteristics were analyzed by numerical analysis. In order to analyze the effect of CVVD on the actual engine operation, the study was performed by setting the valve control and injection pressure as variables in two sections of the engine operating region. As a result, In the case of applying CVVD, the positive overlap with the exhaust valve is maintained, thus it is possible to secure the flow smoothness of air and increase the volumetric efficiency by improving the flow rate. The section 2 condition showed the highest peak pressure, but the pressure rise rate was similar to that of the VVT 20 and CVCD 20 conditions up to 40 bar due to the occurrence of ignition delay.

경유-천연가스 이종연료 엔진의 저부하 영역에서 혼합기 형성을 통한 배기배출 저감 (Emission Reduction by Mixture Formation in a Diesel-Natural Gas Dual-Fuel Engine at Low Loads)

  • 박현욱;이준순;오승묵;김창업;이용규;배충식
    • 한국분무공학회지
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    • 제24권4호
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    • pp.194-202
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    • 2019
  • A mixture preparation strategy was proposed and evaluated in a diesel-natural gas dual-fuel engine to reduce hydrocarbon (HC) and carbon monoxide (CO) emissions under low load conditions. An experimental investigation was conducted in a single-cylinder compression-ignition engine. Natural gas was supplied with air during the intake stroke, and diesel was injected directly into the combustion chamber during the compression stroke. First, effects of diesel start of energizing (SOE) and natural gas substitution ratio on the combustion and exhaust gas emissions were analyzed. Based on the results, the mixture preparation strategy was established. A low natural gas substitution ratio and a high exhaust gas recirculation (EGR) rate were effective in reducing the HC and CO emissions.

고상식 돈사내에서 환기시스템별 환경조사 및 육성비육돈 사육 효과 (Effects of Different Ventilation Systems on Rearing Growing-finisher and Indoor Environment in a High Rise Hog Building)

  • 유용희;정종원;박규현;송준익;고응규;김상우;이인복
    • 한국축산시설환경학회지
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    • 제16권3호
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    • pp.193-204
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    • 2010
  • 본 연구는 국내 여건에 적합한 돈사시설과 분뇨처리가 일체형으로 조합된 고상식 돈사에 적합한 환기시스템을 찾고자 수행하였다. 덕트입기${\rightarrow}$ 측벽배기 (처리 V1), 처마입기 (측벽천장)${\rightarrow}$측벽배기 (처리 V2), 천장입기${\rightarrow}$측벽배기 (처리 V3) 3종류의 환기시스템을 설치하였다. 시험 시기는 겨울철과, 여름철부터 가을철에 실시하였다. 환기시스템별 고상식 돈사내 온도, 공기유속, 암모니아, 황화수소, 돼지성장 등을 조사하였다. 그 결과는 다음과 같다. 겨울철 동안 온도는 덕트입기에서 온도가 약간 높은 경향을 보였으며, 외기온도에 영향을 받지 않았다. 여름철부터 가을철 동안 최고온도는 $33.4{\sim}33.8^{\circ}C$ 처리간에 큰 차이를 보이지 않았으며,외기온도에 영향을 받는 것으로 나타났다. 가을철 일일 연속적 온도 변화에서 처마입기가 다른 환기시스템보다 낮은 온도를 유지와 온도의 편차가 큰 것으로 나타났다. 겨울철 동안 돈사내 공기유속은 덕트입기와 처마입기는 0.02~.21 m/s 로 비슷한 경향이었으며 천장입기는 0.04~.15 m/s 이었다. 여름철부터 가을철동안 돈사내 공기유속은 덕트입기 0.10~.41 m/sec 처마입기 0.10~83m/sec 천장입기 0.11~.26 m/sec의 공기유속을 보였다. 가을철 일일 연속적 공기유속변화에서 처마입기가 공기유속의 변화가 다른 환기시스템보다 큰 것으로 나타났다. 겨울철 동안 돈사내 $NH_3$ 발생 최고 농도는 덕트입기 7.0 ppm, 마입기 3.5 ppm,천장 입기 8.7 ppm 검출 되었으며,$H_2S$는 검출되지 않았다. 여름철부터 가을철 동안 돈사내 $NH_3$ 발생 최고농도는 덕트입기 6.1 ppm, 처마입기 2.8 ppm, 천장입기 5.6 ppm 검출되었다. 돼지 성장에서 환기시스템 간 통계적인 유의성은 없었으나, 겨울철 동안 일당증체량은 덕트입기와 천장입기가 처마입기보다 약 4% 높은 증체를 보였으며, 사료섭취량/증체량은 덕트입기에서 사육되는 돼지가 효율이 약 4% 높은 것으로 나타났다. 여름철부터 가을철 동안 덕트입기와 천장입기에서 사육되는 돼지의 일당증체량이 처마입기에서보다 약 3% 정도 높은 경향을 보였으며, 사료섭취량/증체량은 덕트입기에서 사육되는 돼지가 효율이 약 2% 높은 것으로 나타났다. 이상의 결과를 종합하여 볼 때 고상식 돈사용 환기시스템으로 처마입기 (측벽천장) 측벽배기 적용은 비효율적이라 판단된다.

가변밸브 작동기구를 적용한 가솔린 기관의 잔류가스분율, 체적효율, 펌핑손실 예측을 위한 해석적 연구 (Numerical Analysis for Prediction of the Residual Gas Fraction, Volumetric Efficiency and Pumping Loss with Continuous Variable Valve Lift System in an SI Engine)

  • 조용석;이성욱;장익규;박정권;윤여빈;박영준;김현철;나병철
    • 한국자동차공학회논문집
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    • 제18권2호
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    • pp.7-13
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    • 2010
  • To satisfy the needs on fuel economy and engine performance, continuous variable valve lift systems are applying to engines. In the CVVL system, fuel economy can be improved by reducing pumping loss during the induction process, and engine performance can be also improved by controlling volumetric efficiency and the residual gas fraction. Because the residual gas fraction directly affects volumetric efficiency, engine performance, combustion efficiency and emissions in SI engines, controlling residual gas fraction is one of the important things in engine development process. This analysis investigates the residual gas fraction and volumetric efficiency with changes of intake valve lifts and intake valve timings. In this study, unsteady state solutions were solved during exhaust and induction processes. Results show variation of the residual gas fraction and volumetric efficiency by changing intake valve timing and lift. Decreasing intake valve lift leads to increase the residual gas fraction and to decrease volumetric efficiency.