• 제목/요약/키워드: Combustion heat

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자동차 터보충전기 터빈휠용 경량 고내열 주조 Ni기 초합금의 개발 (Development of New Ni-based Cast Superalloy with Low Density and High Temperature Capability for Turbine Wheel in Automotive Turbocharger)

  • 오키 유우타로;스미 요시노리;코야나기 요시히코
    • 한국주조공학회지
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    • 제42권6호
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    • pp.392-397
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    • 2022
  • In order to compliant the stringent exhaust emission regulations, higher fuel efficiency and cleaner exhaust gas in combustion engines have been required. To improve combustion efficiency, an exhaust gas temperature is increasing, therefore higher temperature resistance is required for components in exhaust system, especially turbine wheel in turbocharger. IN100 looks quite attractive candidate as it has high temperature properties with low density, however it has low castability due to poor ductility at high temperature. In this study, the balance of Al and Ti composition was optimized from the base alloy IN100 to improve the high temperature ductility by expanding the γ single phase region below the solidification temperature, while obtaining the high temperature strength by maintaining the volume fraction of γ' phase equivalent to IN100 around 1000℃. Furthermore, the high temperature creep rupture life increased by adding a small amount of Ta. The alloy developed in this study has high castability, low density and high specific strength at high temperature.

압축착화 디젤엔진에서 펜탄올/경유 혼합유의 연소 및 배기 특성에 관한 실험적 연구 (An Experimental Study on Combustion and Emission Characteristics of a CI Diesel Engine Fueled with Pentanol/Diesel Blends)

  • 권재성;김범수;양정현
    • 한국수소및신에너지학회논문집
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    • 제35권1호
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    • pp.97-104
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    • 2024
  • In this study, combustion experiments were conducted to assess engine performance and exhaust gas characteristics using four blends of 1-pentanol and diesel as fuel in a naturally aspirated 4-stroke diesel engine. The blending ratios of 1-pentanol were 5, 10, 15, and 20% by volume. The experiments were carried out under four different engine torque conditions (6, 8, 10, and 12 Nm) while maintaining a constant engine speed of 2,000 rpm for all fuel types. The results showed that the use of 1-pentanol/diesel blended fuel generally led to a decrease in brake thermal efficiency, attributed to the low calorific value of the blend and the cooling effect due to the latent heat of vaporization. Additionally, both brake specific energy consumption and brake specific fuel consumption increased. However, the use of the blended fuel resulted in a general decrease in NOx concentration, a decrease in CO concentration except some conditions, and a reduction in smoke opacity across all conditions.

LPG 예혼합 압축 착화 엔진의 배기가스 및 연소 특성 (Emissions and Combustion Characteristics of LPG HCCI Engine)

  • 염기태;장진영;배충식
    • 한국자동차공학회논문집
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    • 제14권4호
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    • pp.149-156
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    • 2006
  • This paper investigates the steady state combustion characteristics of LPG homogeneous charge compression ignition(HCCI) engine with variable valve timing(VVT) and dimethyl ether(DME) direct injection, to find out the benefits in exhaust gas emissions. VVT is one of the attractive ways to control HCCI engine. Hot internal residual gas which is controlled by VVT device, makes fuel is evaporated easily, and ignition timing is advanced. Regular gasoline and liquefied petroleum gas(LPG) were used as main fuel and dimethyl ether(DME) was used as ignition promoter in this research. Operating range and exhaust emissions were compared LPG HCCI engine with gasoline HCCI engine. Operating range of LPG HCCI engine was wider than that of gasoline HCCI engine. The start of combustion was affected by the intake valve open(IVO) timing and the ${\lambda}TOTAL$ due to the latent heat of vaporization, not like gasoline HCCI engine. At rich operation conditions, the burn duration of the LPG HCCI engine was longer than that of the gasoline HCCI engine. CAD at 20% and 90% of the mass fraction burned were also more retarded than that of the gasoline HCCI engine. And carbon dioxide(CO2) emission of LPG HCCI engine was lower than that of gasoline HCCI engine. However, carbon oxide(CO) and hydro carbon(HC) emission of LPG HCCI engine were higher than that of gasoline HCCI engine.

4실린더 커먼레일 디젤엔진에서 바이오디젤 혼합연료와 EGR율에 따른 연소 및 배기특성 (Combustion and Emission Characteristics of Biodiesel Blended Fuel by EGR Rate in a 4-cylinder CRDI Diesel Engine)

  • 정규수;이동곤;연인모;노현구;박성욱;이창식
    • 한국자동차공학회논문집
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    • 제19권4호
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    • pp.130-136
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    • 2011
  • This study describes the effect of EGR rate on the combustion and emissions characteristics of a four cylinder CRDI diesel engine using biodiesel (soybean oil) blended diesel fuel. The test fuel is composed of 30% biodiesel and 70% ULSD (ultra low sulfur diesel) by volumetric ratio. The experiment of engine emissions and performance characteristics were performed under the various EGR rates. The experimental results showed that ignition delay was extended, the maximum combustion pressure and heat release gradually were decreased with increasing EGR rate. Comparing biodiesel blended fuel to ULSD, the injection quantity of biodiesel blended fuel was further increased than ULSD. The emission results showed that $NO_x$ emission of biodiesel blended fuel becomes higher according to the increase of EGR rate. However, in the case of biodiesel blended fuel, HC, CO and soot emissions were decreased compared to ULSD.

붕소 화합물로 처리된 편백나무 시험편의 연소특성 (Combustion Characteristics of Cypress Specimens Painted with Solutions of Boron Compounds)

  • 정영진;진의
    • 한국화재소방학회논문지
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    • 제32권2호
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    • pp.1-6
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    • 2018
  • 붕산과 5붕산암모늄으로 처리한 편백나무 시험편의 연소특성에 관한 실험을 ISO 5660-1 표준에 따른 콘칼로리미터를 이용하여 수행하였다. 그 결과 붕산과 5붕산암모늄의 혼합된 투여는 그들의 시너지 효과에 의해 화재성능지수 값을 향상시켰다. 또한 붕소 화합물로 처리한 시험편은 공시편보다 총열방출율 값이 6.1~14.1% 감소되었다. 붕소화합물로 처리된 시편의 총연기방출율은 연소과정 전반에 걸쳐 감소되었으나 붕산/5붕산암모늄은 예외였다. 일산화탄소 최대농도는 15.8~25.5% 정도 감소하는 경향성이 있었다. 대체적으로 난연제로 처리한 목재는 화재 위험성이 낮아진 것으로 이해된다.

채널형상과 마하수가 천음속 연소에 미치는 영향에 대한 수치해석적 연구 (A Numerical Study of Channel Shape and Mach Number Effects on Transonic Combustion)

  • 이장창
    • 한국항공우주학회지
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    • 제33권11호
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    • pp.65-73
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    • 2005
  • 천음속 미교란 모델과 1단계 1차 Arrhenius 화학반응식을 이용하여 반응유체의 압축성 유동에 대하여 연구하였다. 유체 유동은 적은 열방출을 수반하는 희박 예혼합 반응에 국한시켰다. 천음속 연소에 끼치는 채널형상과 채널입구 마하수의 영향 등을 수치해석을 이용하여 조사하였다. 수치결과에서 채널확대는 주어진 채널길이 내에서 화학반응을 증가시키고 있음에 반하여 채널수축은 출구 근처에서 화학반응을 억제시키고 있음을 보여주고 있다. 확대형 채널 내에서 입구유동 마하수 증가는 고정된 반응속도에서 유동을 가속시켰으며 불활성 유체 경우에는 나타나지 않는 약한 충격파가 나타났다. 또한 확대형 채널 출구 근처의 압력과 온도를 증가시키고 주어진 채널길이 내에서 반응체의 소비를 도와준다.

Predicting the Frequency of Combustion Instability Using the Measured Reflection Coefficient through Acoustic Excitation

  • Bae, Jinhyun;Yoon, Jisu;Joo, Seongpil;Kim, Jeoungjin;Jeong, Chanyeong;Sohn, Chae Hoon;Borovik, Igor N.;Yoon, Youngbin
    • International Journal of Aeronautical and Space Sciences
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    • 제18권4호
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    • pp.797-806
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    • 2017
  • In this study, the reflection coefficient (RC) and the flame transfer function (FTF) were measured by applying acoustic excitation to a duct-type model combustor and were used to predict the frequency of the combustion instability (CI). The RC is a value that varies with the excitation frequency and the geometry of the combustor as well as other factors. Therefore, in this study, an experimentally measured RC was used to improve the accuracy of prediction in the cases of 25% and 75% hydrogen in a mixture of hydrogen and methane as a fuel. When the measured RCs were used, an unstable condition was correctly predicted, which had not been predicted when the RCs had been assumed to be a certain value. The reason why the CI occurred at a specific frequency was also examined by comparing the peak of the FTF with the resonance frequency, which was calculated using Helmholtz's resonator analysis and a resonance frequency equation. As the CI occurred owing to the interaction between the perturbation in the rate of heat release and that in the pressure, the CI was frequent when the peak of the FTF was close to the resonance frequency such that constructive interference could occur.

MDO (Marine Diesel Oil) 에멀젼 연료에 의한 디젤엔진의 배출가스 저감 (The Exhaust Gas Reduction of Diesel Engine by MDO (Marine Diesel Oil) Emulsion Fuel)

  • 김문찬
    • 대한환경공학회지
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    • 제36권7호
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    • pp.476-482
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    • 2014
  • 본 연구는 에멀젼 연료의 특성과 배출가스에 관하여 연구하였다. 엔진 배출가스 측정은 엔진 dinamometer로 실시하였다. 유화연료는 연소실내에서 미세폭발을 일으켜 연료를 잘게 쪼개어 주어 smoke를 감소시킨다. 그리고 물이 연소실내의 기화열을 빼앗아 연소실 내부의 온도를 낮추어 NOx 생성을 억제하는 효과를 갖는다. ND-13모드의 각 모드별 배출가스온도가 MDO에 비해 유화연료를 사용했을 때 낮게 나온 것으로 뒷받침 될 수 있었다. 유화연료의 함수율이 증가함에 따라 NOx와 smoke의 배출량은 줄어들었으며, 출력도 함수율 증가에 따라 유화연료 자체의 발열량 감소로 인하여 줄어든 것으로 판단된다. ND-13모드에서 MDO 유화연료를 시험결과 함수율 17% 유화연료의 NOx 감소량은 약 24%, smoke의 총감소량은 약 73%, $SO_2$ 감소량은 약 11%, 그리고 약 13%의 출력손실을 확인하였다.

수소첨가 CNG기관의 성능 및 배출가스 특성에 관한 실험적 연구 (An Experimental Study on the Performance and Emission Characteristics with Hydrogen Enrichment in a CNG Engine)

  • 류규현;김인구
    • 한국수소및신에너지학회논문집
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    • 제26권2호
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    • pp.164-169
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    • 2015
  • Recent research has focused on alternative fuel to improve engine performance and to comply with emission regulation. Finding an alternative fuel and reducing environment pollution are the main goals for future internal combustion engines. The purpose of this study is to obtain low-emission and high-efficiency by hydrogen enriched CNG fuel in SI engine and is to clarify the effects of hydrogen enrichment in CNG fuelled engine on exhaust emission and performance. An experimental study was carried out to obtain fundamental data for performance and emission characteristics of hydrogen enrichment in SI engine. The experiment was conducted at 2500 rpm, bmep 2 bar, 4 bar conditions while CNG fuel was mixed with 10, 20 and 30% hydrogen blends. From the experimental results, combustion duration was shortened due to rapid flame propagation velocity of hydrogen and these were attributed to the burning velocity increasing exponentially with increasing hydrogen blending ratio. Hydrogen has much wider flammable limit than methane, gasoline and the minimum ignition energy is about an order of magnitude lower than for other combustion. By adding hydrogen, $CO_2$ and HC were reduced. However, $NO_X$ was increased dut to high rate of heat release for hydrogen substitutions.

선박 디젤유 및 선박 디젤유 에멀젼을 이용한 자동차용 디젤엔진의 연소특성 (Combustion Characteristics of MDO and MDO Emulsion in Automotive Diesel Engine)

  • 박진규;오정모;김형익;이창희;이기형
    • 대한기계학회논문집B
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    • 제36권9호
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    • pp.945-951
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    • 2012
  • 물 에멀젼 연료는 연소과정 중 물의 기화에 따른 증발잠열 흡수로 인한 연소온도 저하와 급격한 증발에 의한 미소폭발로 인하여 연료가 미립화되어 NOx와 Soot의 동시 저감이 가능하고, 전처리 및 후처리 기술과 달리 추가적인 장치가 필요하지 않으며, 별도의 개조 없이 기존 디젤엔진에 사용 가능하므로 이에 관한 연구가 주목 받고 있다. 또한 국제유가가 상승함에 따라 기존에 사용되는 연료보다 저등급의 연료를 엔진에 사용하기 위한 적용가능성에 대한 연구가 요구되고 있다. 따라서 본 연구는 기존의 경유보다 저 등급인 선박 디젤유와 물과 선박 디젤유를 혼합한 유중수적형(W/O:water in oil)의 선박 디젤유 에멀젼 연료를 자동차 디젤엔진에 적용하여 기본 연소특성 및 배기특성을 파악하였다.