• Title/Summary/Keyword: LPG

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Estimation and utilization of transport LPG demand function (수송용 LPG 수요함수의 추정 및 활용)

  • Lee, Seung-Jae;Han, Jong-Ho;Yoo, Seung-Hoon
    • Journal of Energy Engineering
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    • v.21 no.3
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    • pp.301-308
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    • 2012
  • This paper attempts to estimate the demand function for the transport LPG and to analyze long-run and short-run price and income elasticities. In addition, the paper measures consumer surplus and economic value ensuing from the transport LPG consumption by utilizing the estimated long-run price elasticity. The price and the income data are the monthly real transport LPG price and the monthly composite index adjusted by real transport LPG price from 2003 to 2012. Unit root test, co-integration test and error correction model are to take the procedure of estimation of demand curve. The demand for transport LPG is considered to be inelastic and the long-run demand is more elasticity than that of short-run. Price elasticity of demand estimate here is -0.422, and the estimated consumer surplus and economic value in 2010/03 are 966 and 1,781 billion won, respectively.

Air-Fuel Ratio Control Characteristics of an LPG Engine at Idle (LPG 엔진의 공회전 영역에서 공연비 제어 특성)

  • 심한섭
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.8 no.5
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    • pp.30-35
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    • 1999
  • Since LPG has a higher octane number and a lower maximum combustion temperature than gasoline it is getting more popular for reducing emissions from the vehicle This paper when an LPG engine works in the range of idle analyzed the operating range preciously an provides reducing method of emissions for the LPG engine. An electronic control unit(ECU) for the LPG engine using a feedback mixer is presented. The ECU is built by using a microcontroller MC68HC05. A PI-controller is imple-mented in the ECU in order to handle to handle Air/Fuel ration control. The experimental results exhibit that the required engine performance are satisfied at idle.

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SPRAY CHARACTERISTICS OF DIRECTLY INJECTED LPG

  • Lee, S.W.;Y. Daisho
    • International Journal of Automotive Technology
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    • v.5 no.4
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    • pp.239-245
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    • 2004
  • It has been recognized that alternative fuels such as Liquid Petroleum Gas (LPG) show less polluting combustion characteristics than diesel fuel. Furthermore, engine performance is expected to be nearly equal to that of the diesel engine if direct-injection stratified-charge combustion of the LPG can be adopted in the spark-ignition engine. However, spray characteristics of LPG are quite different from those of diesel fuel. understanding the spray characteristics of LPG and evaporating processes are very important for developing efficient and low emission LPG engines optimized in fuel injection control and combustion processes. In this study, the LPG spray characteristics and evaporating processes were investigated using the Schlieren and Mie scattering optical system and single-hole injectors in a constant volume chamber. The results show that the mixture moves along the impingement wall that reproduced the piston bowl and reaches in ignition spark plug. LPG spray receives more influence of ambient pressure and temperature significantly than that of n-dodecane spray.

Comparison of Spray and Combustion Characteristics between LPG and Gasoline Fuels in RCEM (급속압축팽창장치 내에서 LPG 연료와 가솔린 연료의 분무 및 연소특성 비교)

  • Jo, Gyu-Baek;Jeong, Dong-Su;Jeong, Yong-Il
    • 연구논문집
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    • s.29
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    • pp.29-38
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    • 1999
  • In comparison with gasoline engine, LPG direct injection engine has some advantages not only in emission and fuel efficiency but also in prevention of power decrease and back fire etc. which are disadvantages of conventional LPG engine. In this study, comparision tests of the incylinder spray and combustion characteristics between of LPG and gasoline fuels were performed in the RCEM as a basic research for the development of future LPG engine with low emission and high fuel efficiency During the direct injection of LPG fuel and gasoline into the inside of RCEM, spray development characteristics according to the injection condition have been photographed by the high speed shadow graph methods. The conditions for the optimum mixture distribution of LPG and gasoline fuels are achievable at the selected ignition timing, respectively.

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Fundamental Study on Liquid Phase LPG Injection System for Heavy-Duty Engine (I) (대형엔진용 액상분사식 LPG 연료공급 방식에 대한 기초연구 (1))

  • 김창업;오승묵;강건용
    • Transactions of the Korean Society of Automotive Engineers
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    • v.9 no.4
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    • pp.85-91
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    • 2001
  • LPG has been well known as a clean alternative fuel for vehicles. As a fundamental study on liquid phase LPG injection (hereafter LPLI) system application to heavy-duty engine, engine output and combustion performance were investigated with various operating conditions using a single cylinder engine equipped with the LPLI system. Experimental results revealed that no problems were occurred in application of the LPG fuel to heavy-duty engine, and that volumetric efficiency and engine output, by 10% approximately, were increased with the LPLI system. It was resulted from the decrease of the intake manifold temperature through liquid phase LPG fuel injection. These results provided an advantage in the decrease of the exhaust gas temperature, in the control of knocking phenomena, spark timing and compression ratio. The LPLI engine could normally operated under $\lambda$=1.5 or EGR 30% condition. The optimized swirl ratio for the heavy duty LPG engine was found around R_s$ = 2.0.

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LPG Spray Behavior Near Injection Nozzle (분사노즐 근처의 LPG 분무거동)

  • Jo, H.C.;Oh, S.W.;Lee, G.H.;Bae, Y.J.;Park, K.H.
    • Journal of ILASS-Korea
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    • v.7 no.2
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    • pp.16-21
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    • 2002
  • Liquefied petroleum gas (LPG) has been used as motor fuel due to its low emissions and low cost. This study addresses the analysis of the LPG spray behavior near injection nozzle. The LPG spray photographs are compared with sprays of diesel fuel at the same conditions. The LPG spray photos show that the dispersion characteristic depends very sensuously on the ambient pressure soon after injection. The spray angle is very wide in a low ambient pressure condition until the saturated pressure at this test condition, but the angle value is quickly reduced at the condition over the pressure.

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LPG Dispensing Control System (LPG 충전 제어시스템)

  • 이상훈;최병철;박남철
    • Proceedings of the KAIS Fall Conference
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    • 2000.10a
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    • pp.113-113
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    • 2000
  • LPG 및 석유류는 온도에 따라서 유량의 변화가 LPG의 경우는 ±0.23%/℃, 무연은 ±0.11%/℃, 등유는 ±0.10%/℃, 경유의 경우는 ±0.09%/℃로 특히 LPG의 경우가 그 변화가 심하므로 정확한 충전량을 계량하는 것이 중요하다. 이는 공정거래 확립의 차원에서 공급자와 소비자 입장에서 반드시 요구되는 사항이다. 이를 위해 본 논문에서는 LPG 충전기의 충전제어 및 자동 온도 보정의 알고리즘을 개발하고 이를 프로그래밍한 후 온도센서와 16-bit 마이크로프로세서(intel 80C196)로 자동 온도 보정이 가능한 LPG 충전기의 충전제어 시스템을 설계 및 제작하였다. 설계 제작된 시스템은 프로세서부, I/O 입ㆍ출력부, VFD(vacuum fluorescent display) 디스플레이 구동부로 구성된다. 충전제어 동작은 LPG 유량계의 encoder로부터의 유량(유속)신호와 기차 보정값 및 15℃를 기준으로 한 온도 센서부의 온도 보정값을 입력받아 솔레노이드 밸브를 제어하여 충전을 제어하게 된다. 온도 보정은 80C196 프로세서의 내부 10-bit A/D 변환기를 사용하여 0.5℃ 분해능으로 온도제어를 할 수 있다. VFD 디스플레이는 유량, 금액, 단가가 표시되며 그 값을 누적시켜 일계, 월계를 알 수 있게 하였다. 그 외에 시스템 진단기능 및 컴퓨터통신, POS 통신이 가능하도록 하였다. 제작된 시스템을 LPG 충전기에 실장하여 시험한 결과 목표한 정확도로 유량이 제어됨을 알 수 있었다.

The Deterioration of Lubricants in LPG Engine (LPG엔진에서의 윤활유 열화)

  • 류재곤;문우식
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 2000.11a
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    • pp.100-106
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    • 2000
  • Recently, the population of vehicles using LPG as fuel has been increasing due to relatively low fuel price and low tax. Although gasoline engine oils we usually used to lubricate LPG engines, some troubles such as oil thickening and TBN depletion were found in them under severe operating condition. In order to investigate the deterioration mechanism of lubricants in LPG engine, field trials were performed. The results from the field trials showed that the deterioration of oils in LPG engine is different from that in normal gasoline engine. LPG engine oil was deteriorated mainly through oxidation and nitration at high temperature rather than contamination of fuel combustion products.

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LPG/CNG Interface Box Hardware Design (LPG/CNG Interface Box 제품 Hardware 설계)

  • An, Jeong-Hoon;Jung, Jae-Min
    • Transactions of the Korean Society of Automotive Engineers
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    • v.15 no.6
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    • pp.23-29
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    • 2007
  • In Korea, the number of LPG vehicles is increasing continuously because LPG is cheaper than Gasoline. Also in Europe, the CNG fuel is a good solution to meet $CO_2$ regulation. In order to use LPG/CNG fuel, new EMS ECU must be developed for every type of vehicles and it requires huge development cost. In order to reduce development cost and time, SIEMENS VDO has developed an Interface Box. It supports EMS ECU in the car and manages LPG/CNG fuel injection system. Basically the Interface box can be used with any kind of EMS ECU. The Interface Box controls LPG/CNG injector through the injection command of gasoline EMS ECU. It calculates required amount of based on the fuel temperature and pressure and sends feedback signal to ECU for fuel correction. Also, it controls LPG/CNG specific actuator such a Shut off valves and LPG switch inputs.

A Study on the Combustion Characteristics and the Control on the Fuel Flow Rate of LPG Intake Port Injection Engine (흡기포트 분사식 LPG 엔진의 연료량 제어 및 연소 특성에 관한 연구)

  • 김우석;이종화;정창현
    • Transactions of the Korean Society of Automotive Engineers
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    • v.8 no.6
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    • pp.31-39
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    • 2000
  • In this paper, characteristics of a port injection type LPG fuel system were investigated to adopt the system to a spark ignition engine through rig test. Engine combustion characteristics for limited conditions and the precise control method of LPG fuel supply were also studied. As a basic experiment, the effects and the relationships of parameters such as orifice area, fuel delivery pressure, fuel temperature and flow coefficient were established. From this, one dimensional compressible flow equation can be applied to control gaseous fuel flow rate by setting pressure difference between vaporizer and manifold to a certain range, for example about 1.2 bar in a naturally aspirated engine. The combustion analysis results of LPG engine were also compared with those of gasoline engine according to spark timing and load change. At part load and stoichiometric condition, the MBT spark timing of LPG fueled engine is retarded by 2$^{\circ}$ - 4$^{\circ}$CA compared to that of gasoline engine. On the contrary, the spark timing of LPG fueled engine can be advanced by 5$^{\circ}$- 10$^{\circ}$ CA at WOT, which results from higher Octane Number and burned fraction of LPG fuel compared to gasoline.

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