• 제목/요약/키워드: Liquefied Petroleum Gas(LPG)

검색결과 144건 처리시간 0.027초

이중관 삼중흐름 열교환에 의한 LNG 기화시스템의 열적 해석 (Thermal Analysis of Double-tube Triple-flow LNG Vaporization System)

  • 윤상국
    • Journal of Advanced Marine Engineering and Technology
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    • 제27권7호
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    • pp.839-844
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    • 2003
  • As sea water is being used as only heat source of LNG open rack vaporizer, serious problem has been risen in LNG terminal by the lack of heating energy source for LNG vaporization due to the temperature drop of sea water in winter. In this paper the new double-tube triple-flow(TRIDEX) vaporizer was suggested to solve the problem and the system was thermally analysed. LPG(liquefied petroleum gas) and sea water were introduced as the heat sources for LNG TRIDEX vaporizer. The flow patterns of TRIDEX vaporizer are as follows: LNG flow in the annular space, PG(petroleum gas) flow in the inner tube, and sea water flow in the outside of the double pipe. The overall LNG vaporization system was consisted of TRIDEX vaporizer, LPG vaporizer and PG heater. LPG in TRIDEX was directly dispersed in the sea water desalination unit, so that LPG turns to be gas phase for the reuse in TRIDEX vaporizer. New TRIDEX vaporizer system for LNG evaporation was analysed as much more effective than the present single tube one in the case of colder temperature of sea water in winter.

가솔린과 LPG 예혼합 압축 착화 엔진의 노킹 특성 (Knock Characteristic Analysis of Gasoline and LPG Homogeneous Charge Compression Ignition Engine)

  • 염기태;배충식
    • 한국자동차공학회논문집
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    • 제15권3호
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    • pp.54-62
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    • 2007
  • The knock characteristics in an engine were investigated under homogeneous charge compression ignition (HCCI) operation. Liquefied petroleum gas (LPG)and gasoline were used as fuels and injected at the intake port using port fuel injection equipment. Di-methyl ether (DME) was used as an ignition promoter and was injected directly into the cylinder near compression top dead center (TDC). A commercial variable valve timing device was used to control the volumetric efficiency and the amount of internal residual gas. Different intake valve timingsand fuel injection amounts were tested to verify the knock characteristics of the HCCI engine. The ringing intensity (RI) was used to define the intensity of knock according to the operating conditions. The RI of the LPG HCCI engine was lower than that of the gasoline HCCI engine at every experimental condition. The indicated mean effective pressure (IMEP) dropped when the RI was over 0.5 MW/m2and the maximum combustion pressure was over 6.5MPa. There was no significant relationship between RI and fuel type. The RI can be predicted by the crank angle degree (CAD) at 50 CA. Carbon monoxide (CO) and hydrocarbon (HC) emissions were minimized at high RI conditions. The shortest burn duration under low RI was effective in achieving low HC and CO emissions.

소형 SI 기관용 연료로서 가솔린과 LPG의 특성 비교에 관한 연구 (A Study in on the Comparison of Characteristics of Gasoline and LPG for a Small SI Engine)

  • 조기현;백태실;정형길
    • Journal of Advanced Marine Engineering and Technology
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    • 제25권4호
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    • pp.809-816
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    • 2001
  • This is a fundamental study to improve the performance of the LPG engine. The result were summarized as followed. 1. The measured torque and power on the fuel of LPG were indicated about 8% lower than those on gasoline with the same compression ratio. 2. In the case of LPG, BSFD at compression ratio of 9.7 was about 5% lower than that of 8.3 at 3,000ppm 3. HC and CO concentrations of the LPG were lower about 53%, 35% than those of gasoline

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농용 석유기관의 LPG 이용에 관한 연구 (Study on the LP Gas as a Fuel for Farm Kerosene Engine)

  • 조기현;이승규;김성태;김영복
    • Journal of Biosystems Engineering
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    • 제22권2호
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    • pp.189-198
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    • 1997
  • In order to find out the potential of LP gas as a substitute fuel for small fm engine, experiments were carried out with a four-stroke spark-ignition engine which was modified from a kerosene engine mounted on the power tiller. Performance characteristics of kerosene and LP gas engine such as torque, volumetric efficiency fuel consumption rate, brake thermal efficiency, exhaust temperature, and carbon monoxide and hydrocarbon emissions were measured and analyzed under various levels of engine speed and compression ratio. The results were summarized as follows. 1. It showed that forque of LPG engine was 41% lower than that of kerosene engine with the same compression ratio, but LPG engine with compression ratio of 8.5 it was showed similar torque level to kerosene engine with compression ratio of 4.5. 2. Fuel consumption of LPG engine was reduced by about 5.1% and thermal efficiency was improved by about 2% compared with kerosene engine with the same compression ratio. With the incrasing of compression ratio in LPG engine fuel consumption rate decreased and thermal efficiency increased. 3. Exhaust temperature of LPG engine was about 15% lower than that of kerosene engine. Concenrations of emissions from LPG engine was affected insignificantly by compression ratios, and carbon monoxide emissions from the LPG engine was not affected by engine speed so much. The carbon monoxide and hydrocarbon emissions from LPG engine were about 94% and 66% lower than those of kerosene engine, respectively.

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Exhaust Gas Recirculation Control in a Spark-Ignition LPG Engine Using Neural Networks

  • Cui, Hongwei;Liu, Vifang;Zhai, Yujian
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2002년도 ICCAS
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    • pp.68.3-68
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    • 2002
  • This paper presents a neural network approach to control exhaust gas recirculation(EGR) in a Liquefied Petroleum Gas(LPG) engine. In order to meet Increasingly stringent automotive exhaust emission regulations, alternative fuels such as LPG engines have been developed in many countries. HC&CO emissions of LPG engines can be easily reduced through air-fuel ratio control, but the control effect on NOx reduction is not good enough. Consequently EGR system is introduced to achieve a significant reduction in NOx emissions. Conventional EGR control uses the mapping method. The calibration time is long and the work is complex when adopting this mapping method. However neural networks are suitable f...

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자동차용 LPG 펌프의 성능특성에 관한 연구 (A Study on the Performance Characteristics of a Fuel Pump in LPG Engine)

  • 박철웅;김창업;최교남
    • 한국가스학회지
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    • 제11권4호
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    • pp.29-34
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    • 2007
  • 근래들어 강화되는 배출가스 규제에 대응하기 위한 대책으로 LPG 차량에 적용되고 있는 제3세대 LPG 연료공급방식인 LPLi(Liquid Phase LPG Injection)는 LPG 연료를 펌프를 이용해서 고압의 액상연료를 공급하는 것이 가장 핵심적인 기술이다. 그러나 LPG 연료의 경우 저점도, 저비등점의 물리적 특성을 갖는 가스연료로서 기존의 가솔린 또는 디젤용 펌프를 사용할 경우 성능 및 효율이 달라질 수 있다. 본 연구에서는 가솔린 연료 펌프의 임펠라 방식을 응용 변형시켜서 LPG연료용으로 개발된 펌프를 이용하여 다양한 온도와 운전 조건에서 성능 및 효율을 파악하고, 펌프의 성능에 영향을 줄 수 있는 캐비테이션에 대하여 살펴보고자 한다.

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Fabrication and characterization of a small-sized gas identification instrument for detecting LPG/LNG and CO gases

  • Lee Kyu-Chung;Hur Chang-Wu
    • Journal of information and communication convergence engineering
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    • 제4권1호
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    • pp.18-22
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    • 2006
  • A small-sized gas identification system has been fabricated and characterized using an integrated gas sensor array and artificial neural-network. The sensor array consists of four thick-film oxide semiconductor gas sensors whose sensing layers are $In_{2}O_{3}-Sb_{2}O_{5}-Pd-doped\;SnO_2$ + Pd-coated layer, $La_{2}O_{5}-PdCl_{2}-doped\;SnO_2,\;WO_{3}-doped\;SnO_{2}$ + Pt-coated layer and $ThO_{2}-V_{2}O_{5}-PdCl_{2}\;doped\;SnO_{2}$. The small-sized gas identification instrument is composed of a GMS 81504 containing an internal ROM (4k bytes), a RAM (128 bytes) and four-channel AD converter as MPU, LEDs for displaying alarm conditions for three gases (liquefied petroleum gas: LPG, liquefied natural gas: LNG and carbon monoxide: CO) and interface circuits for them. The instrument has been used to identify alarm conditions for three gases among the real circumstances and the identification has been successfully demonstrated.

LPG와 가솔린 연료의 차량 배출가스 특성에 대한 비교 연구 (A Study on the Exhaust Emission of LPG and Gasoline Vehicle)

  • 정성환;한상명
    • 한국자동차공학회논문집
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    • 제10권5호
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    • pp.23-28
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    • 2002
  • As the interest on the air pollution is gradually rising up at home and abroad, automotive industries have been working on the exhaust emission reduction from vehicles through a lot of approaches, which consist of new engine design, innovative aftertreatment systems, and using clean fuels. Methanol, ethanol, LNG, LPG, H2, reformulated gasoline are generally recognized as the clean fuel. Since the low price policy of government on LPG has expanded its vehicle market recently, there is concern of the exhaust emission of LPG vehicle. In this paper, we studied the value of LPG fuel as a clean fuel by comparing the results of the exhaust emission from LPG and Gasoline fueled vehicles, and discussed its limitation of LPG vehicle with mixer type as a fuel supply system. FTIR was used to understand the difference of exhaust emission components of LPG and Gasoline fueled vehicles.

혼합 액체 프로판 표준가스 개발 (Development of Primary Reference Gas Mixtures for Liquid Propane)

  • 정윤성;김진석;배현길;강지환;이승호;김용두
    • 한국가스학회지
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    • 제25권4호
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    • pp.49-56
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    • 2021
  • 액화석유가스(Liquefied Petroleum Gas)는 Propane(C3H8)과 Butane(C4H10)을 주성분으로 한 가스를 액화한 것으로 구분된다. LPG는 혼합 성분에 따라 품질의 차이가 커 성분 함량을 정확하게 측정하는 것이 중요하다. 이와 같은 물질은 혼합물의 성분별로 상온에서는 액체와 기체가 같이 공존해 정확한 측정이 까다롭다. 따라서 탄화수소의 성분별 농도의 측정 불확도가 높아 실제 함량 기준과 많은 차이가 발생하는 문제점을 안고 있다. 그러므로 탄화수소 물질의 조성과 정확한 농도 측정을 위해 혼합 액체 프로판 표준가스의 개발이 필요하였다. 혼합 액체 프로판 표준가스는 ISO-6142(2015)의 중량법으로 벨로즈형 정압실린더에 제조되었다. 제조한 4병의 표준가스에서 균질성이 GC-FID로 확인되었다. 제조 상대확장불확도는 0.01 % - 0.30 %, 균질성은 0.03 % - 0.25 %이었다. 이 혼합 액체 프로판 표준가스에서 중량법, 제조 일치성, 실린더 흡착 여부 및 장기 안정성에 대한 상대확장불확도는 0.26 % - 1.39 %(신뢰도 약 95 %, k=2)이내로 개발되었다.

LPG 강재용기의 응력강도 안전성에 미치는 코너반경의 영향 (Effects of Corner Radius on the Stress Strength Safety of LPG Steel Cylinder)

  • 김청균
    • 한국가스학회지
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    • 제19권1호
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    • pp.18-22
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    • 2015
  • 본 연구는 LPG 강재용기에서 상단반구와 하단반구의 코너반경이 응력강도 안전성에 미치는 영향을 FEM으로 해석한 것이다. FEM 해석결과에 의하면, 응력강도 안전성에 큰 영향을 미치는 요소는 용기의 두께보다 상단반구 및 하단반구의 코너반경이다. 그러나 강재용기의 두께는 경량화에 직결되기 때문에 간과해서는 안 되는 중요한 설계요소이다. LPG 강재용기의 강도안전성 검사에서 최고시험압력이 3.04MPa임을 감안할 때, 20kg용 LPG 강재용기의 두께는 2.3~2.6mm, 상단반구와 하단반구의 코너반경은 157mm 이상으로 최적화 설계하는 것이 바람직함을 알 수 있다.