• Title/Summary/Keyword: 오일 소모

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A Study on Engine Oil Consumption (엔진 오일 소모에 관한 연구)

  • Chun, Sang-Myung
    • Tribology and Lubricants
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    • v.21 no.6
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    • pp.296-301
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    • 2005
  • 피스톤-실린더-링 틈새를 통해 일어나는 오일소모와 브로바이가스 증가는 최소화되어야 하며, 한편으로는 연료저감 및 성능증가 개선 측면에서 피스톤 링 팩의 마찰 손실도 줄일 필요가 있다. 이러한 두 가지 측면에서, 피스톤 링 팩의 최적 설계에 대한 연구가 수행되어야 한다. 따라서 오일소모 및 브로바이가스의 앙은 엔진개발과정 및 필드에서의 엔진운전 중에 엔진의 상태가 좋은지 나쁜지를 판단하는 중요한 요인이 된다. 본 연구의 목적은 연소실 내로의 오일 흐름 량과 피스톤 링 팩을 지나 아래로 내려가는 가스흐름을 계산하여 엔진오일 소모 및 브로바이가스를 예측하는 컴퓨터 프로그램을 개발하는 것이다. 향 후 본 프로그램을 이용하여 엔진의 상태를 미리 예측할 수 있을 것으로 본다.

The effect of cylinder wear on the oil consumption (엔진시린더의 마모가 오일 소모에 미치는 영향)

  • 강석춘
    • Journal of the korean Society of Automotive Engineers
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    • v.13 no.4
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    • pp.18-25
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    • 1991
  • 디젤엔진에서 윤활오일의 소모량이 점진적으로 증가하는 것은 비정상적인 시린더 마모 때문이다. 시린더 라이너의 작동기구를 L-link 피스톤운동 측정장치로 조사하여 피스톤 top-land의 탄소분 축적이 비정상시린더 마모의 주요 원인임이 증명되었다. 또 피스톤 top-land의 축소는 마모 방지의 유용한 방법인 것으로 이론과 실제에서 입증되었다. 오일 소모와 시린더 마모에 영향을 미치는 다른 요소들에 관해서도 살펴보았다.

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On-line Measurement of Oil Consumption Using Oil Consumption Meter (오일소모 측정센서를 이용한 오일소모량의 실시간 측정)

  • 김기대;이재곤
    • Journal of Advanced Marine Engineering and Technology
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    • v.26 no.6
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    • pp.688-694
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    • 2002
  • Several methods were developed for on-line measuring oil consumption in gasoline engine using an oil consumption meter. The oil consumption meter indicates the oil quantity by real-time-measuring the oil level in the sump. In order to measure the oil consumption, the oil consumption meter proposed in this paper requires shorter time, less additional procedures, and shows better results than the traditional drain method. Under steady-state engine-operating conditions, the results obtained through the regression or the difference method show an good agreement with those through the drain method. Under transient engine-operating conditions, on the other hand, good results can be obtained through the reference method.

Effect of rotational motion of piston ring on the oil consumption -2'nd report: Relationship between phase angle of ring end gap and oil consumption (피스톤링의 회전운동이 오일소모에 미치는 영향-제2보: 링갭의 위상각과 오일소모와 의 관계-)

  • 민병순;김중수;오대윤;최재권;진준하
    • Transactions of the Korean Society of Automotive Engineers
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    • v.7 no.5
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    • pp.81-88
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    • 1999
  • In order to understand the relationship between the phase angle of piston ring and oil consumption was measured by analyzing $CO_2$concentration in exhaust gas. The use of hydrogen fuel not gasoline makes this possible because all of the carbon component in exhaust gas can be assumed to be produced from oil. As a result of experiment, it is known that the oil consumption varies periodically and a specific location of ring end gap was found at each peak of oil consumption. Therefore, it was found that the oil consumption was not constant even at the same operating conditions and this is because the relative locations of top and 2'nd ring end gap change arbitrarily.

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An Analysis on Charateristics of Separate Oiling to Reduce Oil Consumption for a 2 Stroke Free-Piston H2 Engine (오일 소모 저감을 위한 역단류 2행정 프리피스톤 수소기관의 분리 윤활 특성 해석)

  • Byun, Cahng-Hee;Baek, Dae-Ha;Lee, Jong-Tae
    • Transactions of the Korean hydrogen and new energy society
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    • v.22 no.6
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    • pp.794-799
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    • 2011
  • In order to reduce the oil consumption for a 2 stroke free piston hydrogen fueled engine, the behaviors of residual lubricant oil of the cylinder wall surface were visualized and oil mass emitted into exhaust port was measured by using research engine with cross-head and eccentric crankshaft. As the results, it was shown that characteristics of residual lubricant oil such as oil thickness and distribution were remarkably different from a conventional 4 stroke engine. It was also analyzed that these tendencies relied on the configuration and installed position of the exhaust port, piston pin boss and so on.

Performance Analysis of Oil Separators for Gasoline Engine Using CFD Simulation (전산유동해석을 통한 가솔린 엔진용 오일분리기의 성능분석)

  • Kim, Chang-Su;Park, Sung-Young
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.2
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    • pp.516-521
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    • 2012
  • Computational simulation has been conducted to analyze the oil separation performance of gasoline engine oil separators. Two models are compared to select a proper oil separator for the engine. To analyze oil separation characteristics, d50 and separation efficiency have been calculated for each separator. As a result, model A shows excellent d50 and separation efficiency, and model B shows good pressure-drop characteristics. Model B is recommended for the general gasoline engine with low crank-case pressure and low oil consumption. Model A is recommended for the engine with high crank-case pressure and high oil consumption, especially equipped with special exhaust gas treatment system, that is critical to the oil contamination.

청결하고 건조하게 해주자 -여름철 돼지 사양을 중심으로

  • 이용빈
    • KOREAN POULTRY JOURNAL
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    • v.7 no.6 s.68
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    • pp.111-114
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    • 1975
  • 여름철은 모든 가축에 있어 질병이 만연하기 쉬운 계절이다. 날씨가 더워짐에 따라 돼지의 질병예방에 더욱 신경을 써서 질병에 걸리지 않도록 각별히 유의해야 할 것 같다. 또한 영양면에서 부족된 성분을 충분히 공급하여 더위에서 오는 영양소모를 막아야 할 것이다.

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The Change Rate of Fuel Consumption for Different IRI of Paved Roads (포장도로의 거칠기 변화에 대한 차량 연료소모량 변화율)

  • Ko, Kwang-H.
    • International Journal of Highway Engineering
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    • v.12 no.1
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    • pp.55-59
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    • 2010
  • High VOC(Vehicle Operating Cost) is the main reason for the rehabilitation of paved road and VOC is composed of fuel consumption, lubricant oil consumption, parts consumption, etc. Fuel consumption is one of the largest components of VOC and the roughness of road represents the deterioration level of the road. For these reasons, the fuel consumption is measured for different IRI(International Roughness Index) in this study. The fuel consumption was measured by processing the voltage signal of fuel injector of vehicle and the speed was measured with GPS. The change rate of fuel consumption for different IRI can be calculated with the results of this test. It's concluded that fuel consumption(L/100km) of medium and large passenger car increases 7 times fast of the increase of IRI(m/km) around 3.5m/km in the speed range of 40 ~ 100km/h, and fuel consumption is the best at 60km/h.

Effect on the Vehicle Fuel Economy by Highway with Gradient (경사를 갖는 고속도로가 자동차 연비에 미치는 영향)

  • Choi, Seong-Cheol;Oh, Tai-Il;Kwon, Mann-Jun;Ko, Kwang-Ho
    • Proceedings of the KAIS Fall Conference
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    • 2011.05b
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    • pp.599-601
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    • 2011
  • 최근의 차량 연비는 고가의 연료 가격과 환경 규제 등으로 인하여 중요한 문제로 대두되었다. 전기, 전자, 반도체, 기계 등의 기술 발달은 연비 개선에 많은 공헌을 하였다. 그러나 연비 측정은 현재도 주어진 모드(LA-4, FTP-75 등)에서 컴퓨터 모의시험 및 다이나모에서 수행한다. 이렇게 측정한 연비는 실제 도로 주행 연비와 차이가 발생하는데, 그 주요 원인중의 하나는 도로의 경사를 고려하지 않았기 때문이다. 본 논문에서는 경사가 심한 영동고속도로를 정속 주행하여 연료 소모량을 측정하고 연비를 계산한다. 또한 같은 도로를 경사가 없다고 가정하여 주행한 연비와 비교 분석한다. 이때 두 경우를 비교하여 경사에 의해 소모된 연료량 차이를 계산하고, 이 타이어 구동력과 엔진에서 소모된 연료량과의 관계를 검증한다.

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Propellant Consumption Estimation of Reaction Control System During Flight of KSLV-II (한국형발사체 추력기 자세제어시스템 비행 중 추진제 소모량 추정식)

  • Kang, Shin-jae;Oh, Sang-gwan;Yoon, Won-jae;Min, Byeong-joo
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.48 no.7
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    • pp.529-536
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    • 2020
  • Reaction Control System of the third stage of the Korean Space Launch Vehicle II conducts roll control and 3 axis control throughout third stage engine start, satellite separation, and collision and contamination avoidance maneuver. Reaction control system consumes its propellant in each thruster operation. Hence, loading of proper amount of the propellant is important for mission success. It is needed to have a rough estimation method of propellant consumption during the flight. In this paper, we developed a energy equation using pressure and temperature data which are acquired in the on-board reaction control system. We constructed a test system which is similar with the on-board reaction control system to verify the energy equation. Test results using deionized water were compared with estimated propellant consumption. We also conducted an error analysis of the energy equation. We also presented the propellant consumption result of a system level operation test.