• Title/Summary/Keyword: 오토 사이클 기관

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The Prediction of Volumetric Efficiency Considering Gas Exchange Process in Spark Ignition Engine (전기점화기관에서 흡배기과정을 고려한 체적효율의 예측 및 실험)

  • Soh, S. G.
    • Journal of the korean Society of Automotive Engineers
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    • v.9 no.4
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    • pp.77-85
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    • 1987
  • 본 논문은 단기통 4사이클 전기점화기관에서 가스교환 과정이 체적효율에 미치는 영향에 대하여 연구한 것이다. 가스교환 과정의 수학적 모델을 설정하고 수치해석을 수행한 결과 체적효율은 가스교환과정과 관련되는 밸브 개폐시기(1,2)보다는 흡배기관의 압력에 의하여 더 큰 영향을 받는 다는 것을 알 수 있었다. 실험에 있어서는 각각 밸브 개폐시기가 다른 3종류의 캠을 사용하였 으며 수치 해석결과와 실험결고가 비교적 잘 일치하였다.

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Study on the simulation of a spark ignition engine using BOOST (상용 소프트웨어를 이용한 스파크 점화 기관의 시뮬레이션에 관한 연구)

  • Jeong, Chang-Sik;Woo, Seok-Keun;Ryu, Soon-Pil;Yoon, Keon-Sik
    • Journal of Advanced Marine Engineering and Technology
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    • v.40 no.9
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    • pp.733-742
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    • 2016
  • In recent years, gas engines fueled with LNG or synthetic gas have been attracting considerable attention for marine use owing to their potential to facilitate better fuel economy and to reduce emissions. It has been confirmed that gas engines using the Otto cycle, which involves premixed combustion, can satisfy Tier III regulations without the EGR or SCR system. The objective of this study is to acquire simulation technologies for predicting gas engine performances in industrial fields. Using the commercial software BOOST, the simulation is conducted on a gasoline engine rather than a marine engine due to the gasoline engine's easier accessibility. This study consists of two stages. In the first stage published previously, the optimal modeling techniques for representing the behavior of the gas in the intake and exhaust systems were determined. In the current study, we formulated a method to evaluate the combustion and heat transfer processes in the cylinder and to ultimately determine the major performance parameters, given that the analytical model derived from the previous stage has been applied. Through this study, we were able to determine a combustion and heat transfer model and a valve discharge coefficient that are less reliant on empirical data: we were also able to formulate a methodology through which relevant constants are decided. We confirmed that the values of transient cylinder pressure variation, indicated mean effective pressure, and air supply can be successfully predicted using our modeling techniques.

The Performance Analysis of Otto Cycle Engine by Thermodynamic Second Law (오토 사이클 기관의 열역학 제 2법칙적 성능 해석)

  • 김성수;노승탁
    • Transactions of the Korean Society of Automotive Engineers
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    • v.9 no.6
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    • pp.94-102
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    • 2001
  • The thermodynamic second law analysis, which means available energy or exergy analysis, for the indicated performance of Otto cycle engine has been carried out. Each operating process of the engine is simplified and modeled into the thermodynamic cycle. The calculation of the lost work and exergy through each process has been done with the thermodynamic relations and experimental data. The experimental data were measured from the test of single cylinder Otto cycle engine which operated at 2500 rpm, WOT(Wide Open Throttle) and MBT(Minimum advanced spark timing for Best Torque) condition with different fuels: gasoline, methanol and mixture of butane-methanol called M90. Experimental data such as cylinder pressure, air and fuel flow rate, exhaust gas temperature, inlet gas temperature and etc. were used for the analysis. The proposed model and procedure of the analysis are verified through the comparison of the work done in the study with experimental results. The calculated results show that the greatest lost work is generated during combustion process. And the lost work during expansion, exhaust, compression and induction process follows in order.

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Technological Development of Engine for Automobiles (자동차 기관의 최신기술)

  • 조진호
    • Journal of the korean Society of Automotive Engineers
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    • v.9 no.4
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    • pp.15-22
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    • 1987
  • 이상 최근 10년 사이 현저하게 보여준 엔진관계의 신기술과 그 배경 등을 돌아 보았을 때 발전하 는 가운데 특히 4륜차용 2사이클 엔진의 몰락이나 엔진의 주요 부품인 기화기의 쇠태는 그 어느 것이나 시대의 요구에 대한 기술의 한께 혹은 신기술의 개발 템포에 추종키 여려웠던 때문인 것 으로 생각된다. 2사이클 엔진은 비출력이 높고 밸브기구가 없어서 구조가 간단한 등의 장점이 있는 반면 배출가스대책(특히 HC), 경부하시의 부정연소 등의 문제를 가지고 있어 4륜차용으로 서는 배출가스규제를 계기로 SAAB(스웨덴), DKW(서독)의 2사이클 엔진이 자취를 감추게 되었 고 현재 남아있는 것은 일본의 경트럭용 엔진에 지나지 않는다. 또 기화기에 대해서도 배출가 스규제에 대한 대응에 밀려 공연비의 제어성, 고도에 대한 보정성, 내열신뢰성, 제어성, 고도에 대한 보정성, 내열신뢰성, 운전성 등의 요구에 엄해진 반면 흡기포트내(PI), 혹은 흡기관 중양부 내(SPI) 가솔린분사방식에 눌려서 가변벤투리식 등도 미국(1982), 일본(1983)에서 발표되었으나 1985년형의 미국차 엔진에는 기화기의 정착율이 50%에 지나지 않는등승용차용 분야에서는 그 사용이 점차 줄어두는 추세에 있다.

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Performance of a Single-Cylinder 4-Stroke C.I. Engine Obtained from Cycle Simulation (단기통 4사이클 압축점화기관의 시뮬레이션에 의한 성능해석)

  • 이태원;유병철
    • Journal of the korean Society of Automotive Engineers
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    • v.7 no.3
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    • pp.74-82
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    • 1985
  • Using single-zone heat release model and quasi-steady model, computer program for calculating the compression ignition engine cycle was composed. The properties in the cylinder were calculated in terms of crank angle and the effects of various operating conditions on rate of heat release and on engine performance were studied. The predicted values for the engine under consideration have shown good agreement with published data.

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Simulation of a power cycle for a single-cylinder 4-stroke cycle spark ignition engine (단기통 4사이클 스파아크 점화기관 동력사이클의 시뮬레이션)

  • 조양수;유병철
    • Journal of the korean Society of Automotive Engineers
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    • v.5 no.4
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    • pp.47-61
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    • 1983
  • In this paper the simulation of a thermodynamic power cycle for a 4-stroke, single-cylinder, spark-ignition engine was studied. In this simulation the cylinder volume was restricted to two zones, a burnt and an unburnt zone, and the convective heat transfer from cylinder contents to surroundings was considered. The chemical species in burnt gas considered was 12 species including H$_{2}$O, H$_{2}$, OH, H, N$_{2}$, NO, N, CO$_{2}$, CO, $O_{2}$, O and Ar. Using this model, computer program for compression, ignition and expansion processes was composed and pressure, temperature and composition of cylinder gas at each crank angle were computed. The composition of CO$_{2}$, CO, $O_{2}$ in the burnt gas when exhaust valve opens, the maximum temperature, the maximum flame speed and the combustion duration were also computed as a function of equivalence ratio. The relation between burnt mass fraction and burnt volume fraction was also computed.

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Capabilities of heat insulated diesel engine for future fuel requirement (디이젤 기관의 단열화에 의한 연료사정에의 대응)

  • 조진호
    • Journal of the korean Society of Automotive Engineers
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    • v.3 no.2
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    • pp.10-17
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    • 1981
  • 연료의 가격이 높아지고 대체연료의 개발이 급속동로 진전되고 있는 오늘날 디이젤기관은 열효율 의향상과 장래연료에의 대응이 중요한 과제로 되어있다. 대체연료로서 유망시되고있는 석탄약화 연료, 알코호르 쉘오일(Shell Oil)등이 앞으로 싱용화되면 제업이나 플랜트의 규모에 따라서는 가격뿐만 아니라 그질에도 큰 차이가 있게되고 정도나 비중의 변화등으로 대표적인 세탄가의 저화가 예상되어서 현상 디이젤기관의 연소방식 그대로는 이에 대응 할 수 없게될 가능성이 높다. 이들에 대응하기의한 하나의 방법으로서 기관을 단열화함으로써 냉각손실을 저장시키고, 높아진 배기에너지를 축출력으로서 다시 회수하는 단열터어보 컴파운드엔진의 개념이 있다. 이 렇게 하면 열효율의 대표적인 개성과 아울러 단열화하여서, 연소실의 벽온이 높아지므로 저세 탄가 연료의 연소도 가능하게 된다. 단열기관의 착상은 1940년대 융커어스사의 2-사이클 수평 대향기관에 이미 일부 채용되었었고, 또 터어보 컴파운드에 의한 배열의 회수도 Lycoming사 R3350 엔진등에서 실용화되었던 예가 있다. 그러나 이들을 동시에 채용하여 대돌적인 연비저 강효과를 추구한 실제의 예로서는 근년 미국 육군의 위탁으로 Cummis사가 연구성과를 발효하고 있는것 뿐이다. 그리고 일본의 Komatsu사가 또한 독자적으로 단열터어보 컴파운드기관의 연 구를 하고 있다. 다음은 그 기관을 소개하고 또한 다종연료성등 단열엔진의 특성에 대하여 설명 한다.

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Simulation of the gas exchange process for single-cylinder 4-stroke cycle spark ignition engine (단기통 4사이클 스파아크 점화기관 흡.배기 과정의 시뮬레이션)

  • 윤건식;유병철
    • Journal of the korean Society of Automotive Engineers
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    • v.7 no.1
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    • pp.24-34
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    • 1985
  • The study of unsteady gas exchange processes in the inlet and exhaust systems of the single-cylinder 4-stroke cycle spark ignition engine is presented in this paper. The generalized method of characteristics including friction, heat transfer, change of flow area and entropy gradients was used for solving the equations defining the gas exchange process. The path line calculation was also conducted to allow for calculation of the gas composition and entropy change along the path lines, and of the variable specific heat due to the change of temperature and composition. As the result of the simulation, the properties at each point in the inlet and exhaust pipe, pressure and temperature in the cylinder, and charging efficiency were obtained. Pumping loss and residual gas fraction were also computed. The effect of engine speed, exhaust and inlet pipe length on the pumping loss and charging efficiency were studied showing that the results were in agreement with what has been known from experiments.

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Measurement and analysis of the cyclic combustion variability in as SI engine (전기점화기관에서 연소의 사이클 변화 측정 및 해석)

  • 이종화;김응서
    • Journal of the korean Society of Automotive Engineers
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    • v.14 no.3
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    • pp.90-101
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    • 1992
  • An experimental study was carried out to investigate the characteristics of cyclic variability of combustion in a single cylinder spark ignition engine. Cylinder pressure of 240 consecutive cycles were measured for various engine operating conditions. From these data, a thermody-n amic analysis was performed for the typical cases in order to identify the cause and effect re -lation of the cyclic variation. In determining the number of cycles required for estimating the coefficient of variation of IMEP and so on, the oprating conditions must be cosidered to fit the objective of the analysis. It is thought that the variation in early flame stage is amplified through the flame propagation and results in the phase change between pressure and volume, which can be the major reason of cyclic variation of IMEP in case of lean operation.

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