• 제목/요약/키워드: Maximum Heat Release Rate

검색결과 128건 처리시간 0.018초

디젤기관에 있어서 흡기습도 변화가 연소 특성과 배기배출물 특성에 미치는 영향 (Effects of Suction Air Humidity on the Combustion and Exhaust Emissions Characteristics in Diesel Engine)

  • 임재근;김동호
    • Journal of Advanced Marine Engineering and Technology
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    • 제24권4호
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    • pp.421-426
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    • 2000
  • A study on the combustion and exhaust emissions characteristics of diesel engine with various suction air humidity is performed experimentally. In this paper, suction air humidity is changed from RH 50% to RH 90%, the experiments are performed at engine speed 1800rpm, and main measured parameters are cylinder pressure, fuel consumption rate, CO, HC, NOx and Soot emissions etc. Increase of suction air humidity from RH 50% to RH 90% does not effect specific fuel consumption, decreases maximum pressure in cylinder, ratio of maximum pressure rise and net heat release, and delays ignition timing. Also, that increases CO and HC emissions, decreases NOx emissions, but does not constant in changing tendency on emission.

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Visualization of Diesel and GTL Spray Combustion and Soot Formation in a Rapid Charging Combustion Vessel with Shadowgraph Method

  • Kim, Ki-Seong;Azimov, Ulugbek;Lee, Yong-Ho
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권7호
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    • pp.1019-1029
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    • 2008
  • In this study, visual investigation of sprays and flames has been performed and soot formation in Diesel and GTL fuels has been compared in a specially designed Rapid Charging Combustion Vessel (RCCV) under various ambient gas $O_2$ concentrations and two injection pressures. It has been concluded that soot in the mixing-controlled combustion of Diesel and GTL fuels has similar tendency to be formed in the leading portion of the jet boundaries. Auto-ignition delay for GTL fuel is shorter than that for diesel fuel. The temporal and special variation of soot concentration in the diesel flame jets at various $O_2$ concentrations was correlated with the heat release rate. Soot concentration appears in the regions when diffusion combustion starts, and its concentration reaches maximum at the peak of heat release curve and then decreases due to oxidation. Visualization by shadowgraph method showed that soot decreases with lower $O_2$ concentration, and higher injection pressure.

배관용 보온재의 난연 성능 시험방법에 따른 최대 발열량 분석 (Analysis of the Maximum Heat Release Rate in Accordance with the Test Method of the Flame Retardant Performance for Pipe Insulation)

  • 유우준;박정욱;신연제;박형규;임옥근
    • 한국화재소방학회논문지
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    • 제34권1호
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    • pp.18-25
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    • 2020
  • 본 연구에서는 보온재의 설치 상태를 고려한 ISO 20632와 NFPA 274 시험 기준에 따른 발열량 산출 결과를 분석하였다. 이를 위해서 보온재 총 6종(은박 발포폴리에틸렌(PE(S)), 무은박 발포폴리에틸렌폼(PE(N)), 고무발포(Rubber), 일본-폴리에틸렌폼(PE(J)), 일본-폴리우레탄폼(PU(J)) 그리고 일본-스티로폼(ST(J)))에 대해서 EN 13501-1과 화재성장곡선에 따른 난연 등급을 구분하였다. 그 결과 PU(J), PE(J) 그리고 PE(N)는 Class E 및 Ultra-fast, NFPA 274 시험기준에 의한 PE(S)는 Class D 및 Fast, ISO 20632에 의한 PE(S)는 Class C 및 Slow, 그리고 Rubber와 ST(J)는 Class B 및 Slow로 나타났다. 하지만, 난연 등급 평가 기준인 최대 발열량에 대한 시간평균 기울기는 시험 방법에 따라서 동일 보온재에 대하여 다르게 나타났으며, 보다 정확한 원인을 분석하기 위한 기초 연구가 필요한 것으로 판단된다.

내장용 판재 및 루버의 연소발열특성 연구 (A Study on the Burning Characteristics of Interior Boards and Louvers)

  • 남동군;김성찬
    • 한국화재소방학회논문지
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    • 제28권2호
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    • pp.34-39
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    • 2014
  • 건축물의 성능위주 소방설계의 활용성 및 신뢰성을 향상시키기 위해서는 다양한 화재실험 및 조사 등을 통해 가연물의 연소물성에 관한 광범위하고 다양한 데이터베이스가 필요하다. 본 연구에서는 건축물의 성능위주 소방설계에 활용하기 위해 건축물의 내장용 판재 2종과 내장용 루버 3종을 대상으로 연소시험을 실행하여 연소발열특성 등을 파악하였다. 또한 내장용 판재는 그 두께에 따라 최대열방출률 등 연소발열성상에 차이가 발생할 가능성이 있으므로 판재의 두께에 따라 연소시험을 수행하였다. 실험결과 내장재 판재 및 루버의 단위연소량당 평균발열량은 15.3MJ/kg~16.9MJ/kg이었고, 내장용 판재의 평균최대열방출률과 평균최대이산화탄소 농도는 판재의 두께에 따라 차이가 있는 것이 확인되었다.

디젤기관에서 경유/부탄올 혼합연료의 기관성능 및 연소특성 해석 (Analysis of performance and combustion characteristics of D.O./butanol blended fuels in a diesel engine)

  • 김상암;왕우경
    • 수산해양기술연구
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    • 제55권4호
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    • pp.411-418
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    • 2019
  • In this study, to investigate the effect of physical and chemical properties of butanol on the engine performance and combustion characteristics, the coefficient of variations of IMEP (indicated mean effective pressure) and fuel conversion efficiency were obtained by measuring the combustion pressure and the fuel consumption quantity according to the engine load and the mixing ratio of diesel oil and butanol. In addition, the combustion pressure was analyzed to obtain the pressure increasing rate and heat release rate, and then the combustion temperature was calculated using a single zone combustion model. The experimental and analysis results of butanol blending oil were compared with the those of diesel oil under the similar operation conditions to determine the performance of the engine and combustion characteristics. As a result, the combustion stabilities of D.O. and butanol blending oil were good in this experimental range, and the indicated fuel conversion efficiency of butanol blending oil was slightly higher at low load but that of D.O. was higher above medium load. The premixed combustion period of D.O. was almost constant regardless of the load. As the load was lower and the butanol blending ratio was higher, the premixed combustion period of butanol blending oil was longer and the premixed combustion period was almost constant at high load regardless of butanol blending ratio. The average heat release rate was higher with increasing loads; especially as butanol blending ratio was increased at high load, the average heat release rate of butanol blending oil was higher than that of D.O. In addition, the calculated maximum. combustion temperature of butanol blending oil was higher than that of D.O. at all loads.

Chemkin 기반의 1차원 대향류 확산 화염 모델을 활용한 재순환율 및 수소 함량에 따른 메탄-수소 무화염 연소 특성 해석 연구 (Numerical Study of Methane-hydrogen Flameless Combustion with Variation of Recirculation Rate and Hydrogen Content using 1D Opposed-flow Diffusion Flame Model of Chemkin)

  • 유지호;박진제;이용운;홍종섭;이영재
    • 청정기술
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    • 제28권3호
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    • pp.238-248
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    • 2022
  • 세계는 탄소 중립 사회로의 전환을 추진하고 있으며, 탄화수소계 연료를 수소로 대체함으로써 탄소 중립에 대한 기여를 기대할 수 있다. 하지만 수소 연소에 따른 질소산화물을 제어하기 위한 기술이 필요하며, 무화염 연소 기술이 하나의 대안이 될 수 있다. 본 연구는 수소 함량 및 배가스 재순환율에 따른 메탄-수소 연료의 연소 및 반응 특성을 분석하기 위해 Chemkin 기반의 1차원 대향류 확산화염 모델을 이용하여 해석을 수행하였다. 메탄 연소시 재순환율이 2에서 3으로 증가할 때 열방출의 흡열 구간이 없고 최대 열방출률 영역이 하나로 병합되는 무화염 연소가 달성되었다. 재순환율 3의 수소 전소 시 열방출 측면에서 무화염 연소가 달성되었으나, 화염 구조의 측면에서는 무화염 연소 달성 여부의 판단이 어렵다. 하지만 NO 생성량은 메탄 무화염 연소와 비교하여 유사한 수준으로 예측되었기에 수소 무화염 연소를 규정하기 위해서는 화염 구조, 열방출, NOx 생성에 대한 복합적인 고려가 필요하다.

직분식 소형 과급 디젤엔진에서 EGR이 배기배출물에 미치는 영향 (The Effect of EGR on Exhaust Emissions in a Direct Injection Diesel Engine)

  • 장세호;고대권
    • 한국자동차공학회논문집
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    • 제13권5호
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    • pp.188-194
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    • 2005
  • The direct injection diesel engine is one of the most efficient thermal engines. For this reason DI diesel engines are widely used for heavy-duty applications. But the world is faced with very serious problems related to the air pollution due to the exhaust emissions of diesel engine. So, that is air pollution related to exhaust gas resulted from explosive combustion should be improved. Exhaust Gas Recirculation(EGR) is a proven method to reduce NOx emissions. In this study, the experiments were performed at various engine loads while the EGR rates were set from $0\%$ to $30\%.$ The emissions trade-off and combustion of diesel engine are investigated. The brake specific fuel consumption rate is very slightly fluctuated with EGR in the range of experimental conditions. The ignition delay increased with increasing EGR rate. The maximum value of premixed combustion for the rate of heat release is increased with increasing EGR rate. NOx emissions are decreased with increasing EGR rate at high load and high speed. It was found that the exhaust emissions with the EGR system resulted in a very large reduction in oxides of nitrogen at the expense of higher smoke emissions.

스크러버형 EGR시스템 디젤기관의 배기 배출형 특성에 관한 연구 (A Study on the Characteristics of Exhaust Emissions in Diesel Engines with Scrubber EGR System)

  • 하정호
    • Journal of Advanced Marine Engineering and Technology
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    • 제22권4호
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    • pp.481-489
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    • 1998
  • The effects of recirculated exhaust gas on the characteristics of fuel economy combustion and exhaust emissions have been experimentally investigated by a four-cylinder four cycle indirect injection water-cooled and marine diesel engine operating at several loads and speeds. in order to reduce the soot contents in the recirculated exhaust gas to intake system of the engine a novel diesel soot removal system with a cylinder-type scrubber which has 6 water injectors(A water injector has 144 nozzles in 1.0 mm diameter) is specially designed and manufactured for the experiment system The experiments in this study are performed at the fixed fuel injection timing of $15.3^{\circ}$ BTDC regardless of experimental conditions, The brake specific fuel consumption rate is slightly fluctuated with EGR in the range of experimental conditions, The maximum value of premixed combustion for the rate of heat release is decreased with EGR at engine load 25% and the ignition is slightly delayed with EGR at engine load 100% NOx emissions are markedly decreased with EGR especially at high loads while soot emissions are increased as the EGR rate rises.

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냉각프레임 설치 유무에 따른 스프링 침대 매트리스의 화재성상에 관한 연구 (Study on the Fire Behavior of Spring Bed Mattress with and Without a Cooling Frame)

  • 서보열;박계원;홍원화
    • 한국화재소방학회논문지
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    • 제32권2호
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    • pp.24-29
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    • 2018
  • 스프링 침대 매트리스의 화재안전성을 향상시키기 위한 방안으로 냉각재료(물)을 포함한 냉각프레임을 제작하여 침대 매트리스 아래 또는 침대 매트리스와 침대 매트리스 받침대 사이부분에 냉각프레임을 설치하여 냉각프레임 설치 유무에 따른 실물규모 화재시험을 실시하였다. 시험 초기(약 3분)에는 비슷한 화재성상을 보이나 이후에는 냉각프레임이 없는 경우는 급격한 화재성장이 확인 되었으며, 냉각프레임이 있는 경우는 성장되지 않고 쇠퇴가 진행되었다. 침대 매트리스 상단표면에서의 화염전파는 반원방향으로 유사하게 진행되었으며, 평균 화염전파속도는 약 0.005 m/s 분석되었다. 최대화염높이는 냉각프레임이 없는 경우 약 2.7 m, 냉각프레임이 설치된 경우 약 1.8 m로 분석되었다. 또한 최대열방출율(Heat release rate)은 냉각프레임이 없는 경우는 약 740 kW, 냉각프레임이 설치된 경우는 약 400 kW 측정되었다. 결과적으로 냉각프레임 설치를 통해 침대 매트리스 화재시 화염높이 및 열방출율이 저감되는 것으로 확인되었다.

대향류 확산화염의 고온공기 연소특성에 관한 수치해석 (A Numerical Analysis of the Characteristics with High Temperature Air Combustion in Counterflow Diffusion Flame)

  • 조은성;히데아키 코바야시;정석호
    • 한국연소학회지
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    • 제8권4호
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    • pp.9-14
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    • 2003
  • High temperature air combustion technology has been utilized by using preheated air over 1100 K and excessive exhaust gas recirculation. Numerical analysis was performed to investigate the combustion characteristics with high temperature deficient oxygen air combustion by adopting a counterflow as a model problem accounting for detailed chemical kinetics. Methane($CH_4$) was used as a test fuel and calculated oxidizer conditions were low temperature high oxygen (300K, $X_{O2}=0.21$) and high temperature low oxygen (1300K, $X_{O2}=0.04$) conditions. The latter case showed that the flame temperature is lower than the former case and its profile showed monotonic decrease from oxidizer to fuel side, without having local maximum flame temperature at high stretch rate. Also, heat release rate was one order lower and it has one peak profile because of low oxygen concentration and heat release rate integral is almost same for stretch rate. High temperature low oxygen air combustion shows low NO emission characteristics.

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