• 제목/요약/키워드: Combustion Mode

검색결과 393건 처리시간 0.025초

램 가속기 탄체 형상에 따른 데토네이션파와 가속 특성에 관한 연구 (The Formation of Detonation Wave and Acceleration Characteristics with the Ram Accelerator Projectile Shapes)

  • 전용희;이재우
    • 한국추진공학회지
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    • 제3권2호
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    • pp.82-91
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    • 1999
  • 초폭굉 램 가속기의 탄체 형상은 탄체 주위에 형성되는 충격파의 구조 및 데토네이션파의 생성, 그리고 탄체의 가속 특성에 커다란 영향을 주게 된다. 본 연구에서는 초폭굉 모드의 기본 탄체 형상인 원추-원퉁-원추의 전.후면 반 꼭지각의 변화와 이중 원추, 그리고 Power-Law 형상 등의 탄체 전면 형상의 변화가 탄체 주위의 유동장, 데토네이션파의 형성 과정, 그리고 탄체 가속 특성에 미치는 영향을 수치적으로 해석하였으며, 이중 원추면의 높이와 각도를 변화시킴으로써 전.후면 반 꼭지각이 $10^{\cire}$인 ISL의 기본 형상에 비하여 약 31.0%의 향상된 가속 성능을 갖는 램 가속기 탄체 형상을 도출하였다. 이러한 탄체 가속 특성 연구 결과는 향후 램 가속기에 대한 설계 최적화 연구에 유용한 자료로 이용 될 것이다.

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커먼레일 디젤기관에서 BDF 20%에 대한 내구특성 (The Durability Characteristics for BDF 20% in a Common Rail Diesel Engine)

  • 최승훈;오영택
    • 한국자동차공학회논문집
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    • 제19권4호
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    • pp.32-37
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    • 2011
  • Biodiesel fuel is already remarkable alternative fuel in many countries. So, many studies are performed on the environmental or economic effects as well as the characteristics of diesel engine fueled biodiesel in combustion and emission. In this study, an CRDI diesel engine used to commercial vehicle was fueled with diesel fuel and 20% biodiesel blended fuel (BDF 20%) with city mode in excess of 300 hours. Engine dynamometer testing was completed at regularly scheduled intervals to monitor the engine performance and exhaust emissions. The engine performance and exhaust emissions were sampled at 1 hour interval for analysis. To check the engine parts (valve and injector), the engine was inspected after test. It was concluded that there were no unusual deteriorations of the engine, or any unusual changes in engine power and exhaust emissions in spite of operation of 300 hours with BDF 20%.

이중램제트(이중연소/이중모드)엔진을 위한 램제트/스크램제트의 작동영역분배 및 성능민감도분석 Part II. 성능민감도 (Performance Load Balancing and Sensitivity Analysis of Ramjet/Scramjet for Dual-Combustion/Dual-Mode Ramjet Engine Part II. Performance Sensitivity)

  • 김선경;전창수;성홍계;변종렬;윤현걸
    • 한국항공우주학회지
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    • 제38권6호
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    • pp.596-604
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    • 2010
  • 이중램제트(이중연소 및 이중모드) 추진기관의 작동특성 및 주요 설계인자를 파악하기 위하여 램제트/스크램제트 추진기관에 대한 공기 및 열역학적 관점에서 이론적인 분석을 수행하였다. 엔진의 효율계수를 적용한 열역학 사이클 해석을 수행하여 각 추진기관의 성능특성을 파악하고, 흡입구 성능 특성, 연소기 입구 마하수, 연소기 형상 및 당량비(연료분사량)에 따른 성능민감도를 분석하였다. 이를 바탕으로 이중램제트 추진기관의 성능설계방향을 제안한다.

상변환 물질을 이용한 자동차 냉각 성능 향상에 대한 연구 (Automotive Engine Cooling Using a Phase Change Material)

  • 김기범;문병헌;최경욱;이기형
    • 한국자동차공학회논문집
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    • 제21권3호
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    • pp.24-29
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    • 2013
  • An automotive cooling system is designed sufficiently large enough to endure the excessive heat load. In general driving condition, the cooling systems are too large to operate optimally. An experimental study was performed to evaluate a novel automotive cooling strategy using the latent heat of a phase change material (PCM). The strategy is expected to reduce the cooling system size up to around 35% and the engine warm-up time around 60%. The strategy will help improve fuel economy and emissions characteristics of vehicles as a result of reduced total body weight and shortened engine warm-up time by a smaller radiator, as well as more stable combustion mode due to constantly maintained coolant temperature.

초고속 순항 추진기관(램제트/스크램제트)의 성능인자에 대한 해석적 연구 (Analytical Study on Performance Parameters of High Speed Propulsion (Ramjet/Scramjet))

  • 변종렬;성홍계;윤현걸
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제25회 추계학술대회논문집
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    • pp.141-146
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    • 2005
  • 본 논문은 램제트/스크램제트 엔진에 대한 이론적인 해석 결과를 보여준다. 본 연구의 주요 목적은 램제트/스크램제트 엔진의 성능변수에 대하여 해석적 연구를 통해 물리적인 이해와 기초를 제시하는 것이다. 램제트/스크램제트 성능에 있어서 비행 마하수와 흡입구, 연소특성 등의 영향에 대하여 해석적 연구를 수행하였으며, 일정한 압력 또는 일정한 단면적을 가진 연소기에 대하여 사이클 해석을 통해 비교/분석하였다. 또한 연소기 입구에서의 최적 마하수에 대하여 연구하였다.

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파일롯 화엄에 의해 고정된 관내 예혼합 화염의 진동 특성 (Vibration Characteristics of Lean Premixed Flame Anchored by a Hydrogen Pilot Flame in a Tube)

  • 곽영태;오광철;신현동
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2004년도 제28회 KOSCO SYMPOSIUM 논문집
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    • pp.42-48
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    • 2004
  • Lean laminar premixed propane and methane flames which were anchored by a hydrogen-pilot flame in a tube were investigated experimentally. The flame shapes were observed by varying mean velocity from 10cm/s to 140cm/s and equivalence ratio from 0.45 to 0.8. In this study, behaviors of flames are divided into five regions such as tail-out, flash-back, flickering, stable and vibrating flames with respect to the mean velocity and the equivalence ratio. Although the flames are unstable in both the flickering and the vibrating region, they have different characteristics such as the frequency, sound generation and creation process of flame curvature. The flickering region exists near the flammability limit and the flame flickers in a frequency of about 10Hz. When flame front is bended, the propane flame front is straightened and the methane flame front is bended more by thermo-diffusive instability. In the vibrating region, the flame vibrates emitting audible sound in a frequency of about 100Hz. In the boundary of vibrating region, the vibration of flame changes between two modes such as single frequency vibration and dual frequency vibration. Increase and decrease of vibration in each mode are determined by thermo-acoustic instability.

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A Study on the Calculation Model for the Emissivities of Carbon Dioxide and Water Vapor

  • Kim, Chong-Bo;Hur, Byung-Ki;Kim, Nam-Jin;Seo, Tae-Beom
    • Journal of Mechanical Science and Technology
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    • 제15권2호
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    • pp.248-258
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    • 2001
  • The main mode of heat transfer of combustion gases at high temperature is thermal radiation of the participating gases, which are mainly carbon dioxide and water vapor. Therefore, the information of the emissivities of carbon dioxide and water vapor would be very important in the thermal performance analysis of a furnace. In this study, an exponential model for the emissivities of carbon dioxide and water vapor is derived as a function of the product of the partial pressure and characteristic length and a polynomial of reciprocal of temperature. Error analysis of the calculated values from the present model is performed for the temperature ranges of 555.6∼2777.8K and the partial-pressure-length product ranges of 0.09144∼609.6 cm-atm. For carbon dioxide, the difference between the values from the present model and the Hottels chart is less than 2.5% using a polynomial in 1/T of degree of 4. For water vapor, the model can predict the emissivity within 2.5% difference using a polynomial in 1/T of degree of 3.

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소형디젤산화촉매의 배출가스 성능평가 (The evaluation of diesel emission reduction characteristics by DOC in light-duty vehicle)

  • 엄명도;류정호;임철수
    • 한국자동차공학회논문집
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    • 제7권8호
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    • pp.34-42
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    • 1999
  • In late 1997, the portion of registered light-duty diesel vehicle was 25.3% and its emission rate was 17.1% in Korea. Especially, diesel particulate matters(DPM) and NOx are hazardous air pollutants to human health and environment in urban area. The reduction technologies of exhaust emissions from diesel engines are improvement of engine combustion, fuel quality and development of diesel exhaust after treatment , In this study , a light-duty diesel oxidation catalyst(DOC) that is one of the diesel exhaust after treatment was made for performance evaluation and the emission characteristics were tested on CVS-75 mode. And the analysis of the particle size distribution with scanning mobility particle 100, 67.6% and 66.7, 10.0% for Pt and Pt-V catalyst .And for Pt catalyst, the PM increased 7.8% because of increasing sulfate but Pt-V catalyst reduced the PM to 23.0% . Test results of particle size distribution showed that peak values of number and mass densities are respectively 100∼200nm their distribution trend independent of vehicle speed.

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노후 차량의 배기가스 측정을 이용한 산소센서, 인젝터, 점화2차파형의 파형분석 연구 (A Study on Waveform Analysis of Oxygen Sensor, Injector and Secondary Waveform through Emission Characteristics by a Decrepit Vehicle)

  • 유종식;김철수
    • 한국자동차공학회논문집
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    • 제21권5호
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    • pp.151-156
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    • 2013
  • The experiment was done on cars travelling at the speeds of 20km/h, 60km/h and 100km/h using the performance testing mode for chassis dynamometer. In this experiment, the relativity between the secondary waveform coming from ignition coil and exhaust emissions were measured in case of cars with failures, in oxygen sensor, spark plugs. The following results obtained by analysis of the relativity between the secondary waveform and exhaust emissions. 1) When the oxygen sensor is failure, the average value of CO emission measured was 6.8 times higher than the standard CO emission value and the average value of HC emission measured was 2.3 times higher than the standard emission level. 2) When engine parts are in failure, more fuel enters the cylinder due to longer opening duration of injector, and it tended to make CO and HC emission values increase. 3) Combustion duration, the shape of flame propagation during spark line, and the size of the discharge-induced energy were the three main elements that directly cause variations in CO and HC emission values.

휘발유와 LPG 자동차의 연료분사방식에 따른 극미세입자 배출 특성 (Emission Characteristics of Ultrafine particles According to Fuel Injection Type in Gasoline and LPG Vehicle)

  • 박경균;권상일;이우석;홍지형
    • 한국분무공학회지
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    • 제14권4호
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    • pp.184-189
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    • 2009
  • Recently, ultrafine particles emitted from internal combustion engine is main concern because of its well known adverse health effects. So Europe decided to start the regulation about diesel engine particle number emissions. The nanoparticles smaller than 50nm in diameter have the ability to penetrate deep into interstitial tissue of luge, where they may cause severe respiratory inflammation and acute pulmonary toxicity. Recent studies have showed that spark ignition engines emit particles number concentration comparable to those from diesel engines with DPF under high load and rich mixture conditions, including cold starts and acceleration. So this study investigated emission characteristics of ultrafine particles according to fuel injection type in gasoline vehicles and LPG vehicles. The test vehicles were tested on CVS-75 and NEDC vehicle test mode using the chassis dynamometer, CPC system applied as a particle measuring instrument at the end of dilution tunnel. As a result, the correlation between fuel injection type and particulate emission was determined. GDI vehicle emitted 10 times higher particles than PFI vehicles, and compared to Mixer and LPGI type LPG vehicle, LPLI vehicle emitted particles high.

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