• 제목/요약/키워드: LPG 자동차

검색결과 221건 처리시간 0.018초

LPG충전업계 현황 및 과제

  • 한국엘피가스공업협회
    • LP가스
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    • 통권73호
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    • pp.6-11
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    • 2001
  • 올해 LPG충전업계는 LPG가격자유화 실시, 판매업계-석화사의 용기충전업 진출, LPG용기관리 문제, 부탄 특소세 인상, 신규업소의 급증 등 제반 정책적변화와 함께 사업한경이 급변할 것으로 예상되어 그 어느때보다 중요한 시기가 될 것으로 예상된다. 이에 우리 협회는 LPG용기.자동차 충전업계의 현황 및 과제를 알아보고 우리 업계가 나아갈 방향성을 제시해본다.

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2.0 리터급 LPG 하이브리드 엔진 및 차량의 배출가스 및 연비성능 비교에 관한 연구 (A Study on the Comparison of Emissions and Fuel Efficiency Performance of 2.0 Liter LPG Hybrid Engine and Vehicle)

  • 권석주;구본석;강재훈;김강면;오세두;서영호
    • 한국분무공학회지
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    • 제28권4호
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    • pp.191-197
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    • 2023
  • LPG direct injection (LPDi) technology is a method of improving the weaknesses of existing LPG vehicles by directly injection into the combustion chamber. This study was conducted on the comparison of emissions and fuel efficiency performance of the engine and vehicle by applying LPDi technology. The LPDi hybrid engine's maximum output and maximum torque were measured at an equivalent level of less than 1% compared to conventional gasoline fuel. The fuel amount was corrected using the LCU controller, and the THC, CO, and NOx emissions were reduced to 90% in the operating range of the three-way catalyst through air-fuel ratio control. The analysis of THC+NOx and CO emissions in FTP-75 (CVS-75) driving mode satisfied the US LEV III SULEV30 regulation.

LPG 엔진 모델링 및 ECM 설계에 관한 연구 (Development of An Engine Modeling and an Engine Control Module for an LPG Engine)

  • 심한섭;선우명호
    • 한국자동차공학회논문집
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    • 제7권9호
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    • pp.1-9
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    • 1999
  • Liquid Petroleum Gas (LPG) has been widely used for commercial light-duty vehicles worldwide. Since LPG has a higher octane number and a lower maximum combustion temperature than gasoline , it becomes more popular fuel for reducing exhaust emissions. In tihs study, mathematical models of air intake and fuel delivery system are presented, and a PI-controller is designed for air-fuel ratio control. Hardware and software of an engine control module (ECM) are designed for an LPG engine. The ECM is built using a Motorola MC68HC05. In order to control the air-fuel ratio at stoichiometry, the PI-control algorithm is implemented in the ECM. The experiment results show the proto LPG ECM and its control scheme perform well to meet the stoichiometric air-duel ratio requirement.

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다양한 분사조건과 LPG 액상분사엔진의 연료량 제어 (Various Injection Conditions and Fuel Control of an LPG Liquid Injection Engine)

  • 심한섭
    • 한국자동차공학회논문집
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    • 제13권1호
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    • pp.28-35
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    • 2005
  • Fuel injection rate of an injector is affected by various injection conditions such as injection duration, fuel temperature, injection pressure, and voltage in LPG liquid injection systems for either a port-fuel-injection(PFI) or a direct injection(DI) in a cylinder. Even fuel injection conditions are changed, the air-fuel ratio should be accurately controlled to educe exhaust emissions. In this study, correction factor for the fuel injection rate of an injector is derived from the density ratio and the pressure difference ratio. A voltage correction factor is researched from injection test results on an LPG liquid injection engine. A compensation method of the fuel injection rate is proposed for a fuel injection control system. The experimental results for the LPG liquid injection system in a SI-engine show that this system works well on experimental range of engine speed and load conditions. And the fuel injection rate is accurately controlled by the proposed compensation method.

액상 LPG 인젝터의 유량 모델 개발 (Development of Flow Rate Model of a Liquid Phase LPG Injector)

  • 조성우;민경덕
    • 한국자동차공학회논문집
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    • 제11권5호
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    • pp.22-28
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    • 2003
  • Flash boiling mechanism in the injector interferes with fine fuel metering in a liquid phase LPG injection engine. This study presents a mathematical model to precisely predict an injection quantity. A calibration procedure of injection quantity, which is very prompt and precise in measuring, is developed using a gas analyzer. According to this procedure, injection quantity can be obtained under various fuel compositions, temperatures and injection pressures. The release pressure of liquid phase LPG is estimated based on these experimental data. Although the release pressure is much lower than the saturation pressure, it is linearly proportional to the saturation pressure.

LPG/DME 혼합연료를 사용하는 직접분사식 디젤 엔진의 부분부하 성능 및 배기특성에 관한 연구 (Performance and Emission Characteristics of a DI Diesel Engine Operated with LPG/DME Blended Fuel)

  • 이석환;오승묵;최영;조준호;차경옥
    • 한국자동차공학회논문집
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    • 제17권5호
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    • pp.53-60
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    • 2009
  • In this study, LPG-blended DME fuel was experimentally investigated in CI(compression ignition) engine. In particular, performance, emissions characteristics (including hydrocarbon, CO, and NOx emissions), and combustion stability of engine fueled with LPG-blended DME fuel were examined. The extent of LPG fuel in the blended fuel was 0-40 wt%. Results showed that stable engine operation was possible in a wide range of engine loads on DME blended with maximum 30% of LPG by mass in a CI engine. Considering the results of the engine power output and exhaust emissions, blended fuel up to 30% of LPG by mass can be used as an alternative to diesel in a CI engine. LPG blended DME fuel is expected to have potential for enlarging the DME market.

LPG자동차충전소에서 증기운폭발로 인한 인명피해예측에 관한 연구 (A Study on the Estimation of Human Damage Caused by Vapor Cloud Explosion(VCE) in LPG Filling Station)

  • 임사환;허용정
    • 한국가스학회지
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    • 제14권2호
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    • pp.15-21
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    • 2010
  • 환경친화적인 에너지원으로서 가스의 수요가 날로 급증하고 있다. 이와 함께 LPG 자동차 충전소가 점진적으로 늘어나고 있다. 본 연구에서는 LPG 충전소에서 발생하는 증기운폭발 과압의 피해를 Hopkinson의 삼승근법을 이용하여 계산하고, 인체에 미치는 영향을 프로빗 모델에 적용하여 피해예측을 평가하였다. 현재 국내에서 가장 많이 운용하는 20ton 저장탱크를 대상으로 누출량 10%를 프로빗 모델에 적용하여 계산하면 LPG 충전소에서의 이격 거리는 각각 인체에 손상가능거리는 36.5m, 고막파열 손상가능거리는 290m이다.

LPG-DME 혼합연료를 사용하는 전기점화 기관의 성능 및 배기특성에 관한 연구 (Performance and Emissions of a SI Engine Operated with LPG-DME Blended Fuel)

  • 이석환;오승묵;강건용;최원학;차경옥
    • 한국자동차공학회논문집
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    • 제16권2호
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    • pp.175-182
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    • 2008
  • In this study, a spark ignition engine operated with LPG and DME blended fuel was studied experimentally. Performance and emissions characteristics of a LPG engine fuelled by LPG and DME blended fuel were examined. Results showed that stable engine operation was possible for a wide range of engine loads within 20% mass content of DME fuel. Also, engine output power within 10% mass content of DME fuel was comparable to pure LPG fuel operation. Exhaust emissions measurements showed that hydrocarbon and NOx were increased with the blended fuel at low engine speed. Engine output power was decreased and break specific fuel consumption (BSFC) was severely increased with the blended fuel since the energy content of DME was much lower than that of LPG. Considering the results of engine output power and exhaust emissions, the blended fuel within 20% mass content of DME could be used as an alternative fuel for LPG.

터빈방식 연료펌프로 구성된 LPi 연료공급 시스템의 LPG 조성비에 따른 토출성능 및 엔진적용성에 관한 연구 (The Study of Flow Rate Performance and Engine Application with LPG Composition Rate for LPi Fuel Supplying System Consisted of Turbine Type Pump)

  • 임무창;명차리;박심수;박정남;김성근
    • 한국자동차공학회논문집
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    • 제15권3호
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    • pp.99-105
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    • 2007
  • Currently, BLDC fuel pump was applied on LPi vehicle using 3rd fuel supply system as liquified phase LPG injection method had already shown better performance than others. Its cost, however, is rather expensive because of drawbacks such as complicated structure, a fault of localization of system. In this work, demonstration system for a developed turbine type fuel pump to replace BLDC system was setup and investigated. This study results that fuel mass flow rate of turbine type pump and injection performance of injector were better compared to BLDC type. Comparing flow rate of summer LPG with that of winter LPG, the flow rate decreased about 25% using winter LPG. Performance applying turbine type LPi fuel pump to engine is confirmed.

중형상용차량용 LPG엔진의 개발에 관한 연구 (Development of an LPG Engine for Medium-Duty Commercial Vehicles)

  • 서영호;강우
    • 한국자동차공학회논문집
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    • 제8권5호
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    • pp.1-11
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    • 2000
  • This study is aimed to develop a proto-type LPG engine for medium-duty commercial vehicles in order to substitute for conventional diesel engine. Recently, it is recognized that diesel engines are main cause for smoke pollution in urban site. So, it is expected to reduce this environmental emission by developing and substituting LPG engine which has the advantage of practical use in a short development period in aspects of infrastructures. For that, after analysing the specifications and performance characteristics of a base diesel engine, parts of combustion chamber, intake system, fuel supply and ignition systems suitable for LPG combustion were re-designed and manufactured. And and engine controller for fuel supply and ignition distributions was matched by feedback mapping based on the speed-load conditions. The torque and power of LPG engine were increased by 6∼12% on the overall driving conditions compared to the base diesel engine, and fuel consumption rate marked the similar level based on the fuel price. Exhaust emissions such as THC, CO, NOx recorded the same order with conventional LPG engine for passenger car.

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