• 제목/요약/키워드: internal combustion engine

검색결과 461건 처리시간 0.033초

열역학적 물성치 모델에 의한 스파크 점화기관의 연소특성에 관한 연구 (A Study on the Combustion Characteristics of Spark Ignition Engine by the Thermodynamic Properties Model)

  • 한성빈
    • 에너지공학
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    • 제23권1호
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    • pp.75-80
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    • 2014
  • 지난 최근 몇 년 동안 내연기관 엔진의 여러 가지 타입의 성능, 효율, 배기가스 특성을 잘 설명해 줄 수 있는 흥미있는 수학적인 모델이 다양하게 제시되고 있다. 이러한 다양한 양상의 엔진 작동의 모의실험에 있어서 주요한 요소가 엔진 연소 과정의 모델이다. 연소모델은 주로 세 가지 분류로 세분화 되어지고 있다. 즉, 제로 차원적, 유사 차원적, 다차원 모델로 나눌 수 있다. 제로 차원모델은 열역학 제1법칙에 근거하여 만들어졌고, 시간은 단지 독립 변수이다. 본 연구는 제로 차원 모델에 의하여 스파크 점화 기관의 연소 특성을 제시하려는 그 목적이 있다.

HUGE DIRECT NUMERICAL SIMULATION OF TURBULENT COMBUSTION - TOWARD PERFECT SIMULATION OF IC ENGINE -

  • Tanahashi, Mamoru;Seo, Takehiko;Sato, Makoto;Tsunemi, Akihiko;Miyauchi, Toshio
    • 한국전산유체공학회지
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    • 제13권4호
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    • pp.114-125
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    • 2008
  • Current state and perspective of DNS of turbulence and turbulent combustion are discussed with feature trend of the fastest supercomputer in the world. Based on the perspective of DNS of turbulent combustion, possibility of perfect simulations of IC engine is shown. In 2020, the perfect simulation will be realized with 30 billion grid points by 1EXAFlops supercomputer, which requires 4 months CPU time. The CPU time will be reduced to about 4 days if several developments were achieved in the current fundamental researches. To shorten CPU time required for DNS of turbulent combustion, two numerical methods are introduced to full-explicit full-compressible DNS code. One is compact finite difference filter to reduce spatial resolution requirements and numerical oscillations in small scales, and another is well-known point-implicit scheme to avoid quite small time integration of the order of nanosecond for fully explicit DNS. Availability and accuracy of these numerical methods have been confirmed carefully for auto-ignition, planar laminar flame and turbulent premixed flames. To realize DNS of IC engine with realistic kinetic mechanism, several DNS of elemental combustion process in IC engines has been conducted.

Huge Direct Numerical Simulation of Turbulent Combustion-Toward Perfect Simulation of IC Engine-

  • Tanahashi, Mamoru
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년도 학술대회
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    • pp.359-366
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    • 2008
  • Current state and perspective of DNS of turbulence and turbulent combustion are discussed with feature trend of the fastest supercomputer in the world. Based on the perspective of DNS of turbulent combustion, possibility of perfect simulations of IC engine is shown. In 2020, the perfect simulation will be realized with 30 billion grid points by 1EXAFlops supercomputer, which requires 4 months CPU time. The CPU time will be reduced to about 4 days if several developments were achieved in the current fundamental researches. To shorten CPU time required for DNS of turbulent combustion, two numerical methods are introduced to full-explicit full-compressible DNS code. One is compact finite difference filter to reduce spatial resolution requirements and numerical oscillations in small scales, and another is well-known point-implicit scheme to avoid quite small time integration of the order of nanosecond for fully explicit DNS. Availability and accuracy of these numerical methods have been confirmed carefully for auto-ignition, planar laminar flame and turbulent premixed flames. To realize DNS of IC engine with realistic kinetic mechanism, several DNS of elemental combustion process in IC engines has been conducted.

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Huge Direct Numerical Simulation of Turbulent Combustion - Toward Perfect Simulation of IC Engine -

  • Tanahashi, Mamoru
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년 추계학술대회논문집
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    • pp.359-366
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    • 2008
  • Current state and perspective of DNS of turbulence and turbulent combustion are discussed with feature trend of the fastest supercomputer in the world. Based on the perspective of DNS of turbulent combustion, possibility of perfect simulations of IC engine is shown. In 2020, the perfect simulation will be realized with 30 billion grid points by 1EXAFlops supercomputer, which requires 4 months CPU time. The CPU time will be reduced to about 4 days if several developments were achieved in the current fundamental researches. To shorten CPU time required for DNS of turbulent combustion, two numerical methods are introduced to full-explicit full-compressible DNS code. One is compact finite difference filter to reduce spatial resolution requirements and numerical oscillations in small scales, and another is well-known point-implicit scheme to avoid quite small time integration of the order of nanosecond for fully explicit DNS. Availability and accuracy of these numerical methods have been confirmed carefully for auto-ignition, planar laminar flame and turbulent premixed flames. To realize DNS of IC engine with realistic kinetic mechanism, several DNS of elemental combustion process in IC engines has been conducted.

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신개념 로터리 엔진의 개발 (I) - 개념과 이론적 성능 분석 - (Development of A New Concept Rotary Engine (I) - Concept and theoretical performance analysis -)

  • 오문근;이규승;박원엽
    • Journal of Biosystems Engineering
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    • 제28권1호
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    • pp.27-34
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    • 2003
  • Present combustion engines have reached almost at the limit of development due to the fundamental structural problems. This study was carried out to propose a new concept internal combustion engine which has great potential advantages to the conventional engines. Proposed new concept engine is a kind of rotary engine. A rotor is rotating concentrically in a cylinder which is divided into two partitioning valves. and it makes four compartments in the cylinder. The volumes of each of four compartments are changing continuously with the rotor movement, and performs the functions of intake, compression. expansion and exhaust simultaneously. The results of this study can be summarized as follows. 1. Expected theoretical thermal efficiency is 44.9 percent at the condition of 1000rpm and compression ratio of 8.0. which is almost the same as that of the conventional engines. i.e., piston and Wankel rotary engine. 2. The new concept engine has 2. working strokes in every revolution. Therefore. the new concept engine can reduce the specific weight and volume than four-stroke piston engine. 3. The torque variation is very small. therefore minimal noise and vibration are expectable. 4. The new concept engine can reduce mechanical energy loss than piston engine because neither crank mechanism nor eccentrical motion exists.

LPG 직분사 엔진과 마일드 하이브리드 시스템 적용 차량의 CO2배출 특성 연구 (A Study of CO2 Emission Characteristics on the Vehicle with LPG Direct Injection and Mild Hybrid System)

  • 안영국;양병규;박진일
    • 한국분무공학회지
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    • 제27권4호
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    • pp.211-218
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    • 2022
  • Recent vehicle regulations have become increasingly stringent in order to reduce greenhouse gases. Then not only movement to replace internal combustion engine vehicles with hybrid vehicles, but also studies of replacing internal combustion engine fuels with low-pollution fuels are increasing. In this study, the characteristics of a vehicle with LPG fuel engine and mild hybrid system is investigated. To avoid shortage of maximum power on LPG engine, a direct injection system of LPG is applied. In addition, P0 mild hybrid system is adopted to enhence the efficiency of the vehicle. The vehicle model is developed in order to predict fuel economy and CO2 emission of LPDi MHEV.

어선 기관실의 연기 거동에 관한 수치해석 연구 (A Numerical Study on Smoke Behavior of Fishing Vessel Engine Room)

  • 장호성;지상원
    • 해양환경안전학회지
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    • 제27권5호
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    • pp.683-690
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    • 2021
  • 선박 기관실 통풍 설계조건 및 계산 기준에 관한 국제 표준(ISO 8861)을 만족해야 하는 선박 기관구역의 환기시스템은 일반적으로 내연기관에 필요한 연소공기의 공급과 기관구역에서 발생한 열원을 제거하기 위해 설치되며 화재감지기가 포함된 환기시스템의 응답지연은 구역 내부에 형성된 기류와 화재감지기의 설치 위치에 영향을 받는다. 어선에서 발생하는 화재는 상선과 비교하여 인명피해 가능성이 높으므로 화재 조기 감지가 무엇보다 중요하다. 따라서 본 논문에서는 어선에 설치되는 화재 감지기의 초기 화재감지 응답속도 향상과 설치된 감지기의 감도 유지를 위해 기관구역 내부에서 발생한 정량적 연기량에 따른 공기 유동장, 내연기관 연소 공기량 및 기관 구역 내부 압력을 변수로 연기 거동 시뮬레이션이 가능한 해석모델을 구성하여 선박 기관구역 내부의 연기 거동을 시뮬레이션하였다. 시뮬레이션 결과를 통해 기관실 내부 압력을 감소시키고 연기커튼 설치를 통해 공기 유동장에서의 유속을 감소시키고 와류를 증가시키면 연기 성분의 천장 상승이 가속화되어 연기감지기 응답속도 및 환기시스템이 개선될 수 있을 것으로 해석되었다.

국내 LPG 충전소 내 수소 융·복합충전소 구축 가능 부지 연구 (A Study on Site to Build Hydrogen Multi Energy Filling Station in Domestic LPG Station)

  • 박지원;허윤실;강승규
    • 한국수소및신에너지학회논문집
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    • 제28권6호
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    • pp.642-648
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    • 2017
  • The use of fossil is causing enviromental all over the world. So hydrogen energy is attracting attention as one of the alternative. The government announced that 30% of the air pollution is because of the Internal Combustion Engine Vehicle. In addition, they plans to reduce Internal Combustion Engine Vehicles by 2030 and increase (electric vehicles, EV) or (fuel cell vehicle, FCV). The FCV is evaluated as a next-generation green car because it has a long driving distance and short charging time. However, the hydrogen industry is not able to expand due to the lack of refueling infrastrucutre. This paper predicts the site of hydrogen refueling stations for the expansion of the hydrogen industry and proposes a method to supply hydrogen multi energy filling stations.

중질 잔사유의 연소성 분석과 보조 분사에 의한 연소성 향상에 관한 검토 (Examination on Combustion Quality Analysis of Residue Heavy Fuel Oil and Improvement of Combustion Quality Using Pre-injection)

  • 유동훈
    • 동력기계공학회지
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    • 제18권6호
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    • pp.113-119
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    • 2014
  • Due to the development of the petroleum refining technology and continuously increased demand from markets, a quantity of gasoline and diesel oil produced from a restricted quantity of crude oil has been increasing, and residual fuel to be used at marine diesel engines has been gradually becoming low quality. As a result, it was recently reported that trouble oils which cause abnormal combustion such as knocking with extreme noise and misfire from internal combustion engines were increasing throughout the world. In this study, an author investigated ignitability and combustion quality by using combustion analyzer with constant volume(FCA, Fuel Combustion Analyzer) and middle speed diesel engine about MDO(Marine Diesel Oil), HFO(Heavy Fuel Oil), LCO(Light Cycle Oil) and Blend-HFO which was blended LCO of 1000 liters with HFO of 600 liters. Moreover, for betterment of ignitability and combustion quality of injected fuels, multi-injection experiment was carried out in the diesel engine using Blend-HFO. According to the results of FCA analysis, ignitability and combustion quality was bad in the order of MDO

분사기 형상 변경을 통한 저온 디젤 연소의 배기 배출물 저감 (Reduction of Exhaust Emissions Using Various Injector Configurations in Low Temperature Diesel Combustion)

  • 정용진;장진영;박정서;배충식;김득상
    • 한국자동차공학회논문집
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    • 제19권4호
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    • pp.16-23
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    • 2011
  • Low temperature combustion is one of the advanced combustion technology in an internal combustion engine to reduce soot and nitrogen oxides simultaneously. In present experiment three kinds of injector were used to investigate the influence of injection angle and number of nozzle holes on the low temperature combustion in a heavy duty diesel engine. Low temperature diesel combustion is realized from the exhaust gas recirculation rate of 60%. Indicated mean effective pressure of low temperature combustion corresponds to the 70% level of conventional diesel engine combustion. Reduction of hydrocarbon and carbon monoxide, which are produced in low temperature combustion because of the low combustion temperature and a deficit of oxygen, was achieved by using various injector configuration. The result of experiment with $100^{\circ}$ injection angle and 8 holes showed that reductions in hydrocarbon and carbon monoxide could be achieved 58% and 27% respectively maintaining the 7% increased indicated mean effective pressure in low temperature diesel combustion compared with conventional injector.