• 제목/요약/키워드: Combustion heat

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자체 예열식 촉매 열 교환식 연소특성 (The Combustion Characteristice of the Self Preheating Type Catalyic Heat Exchanger)

  • 유상필;송광섭;서용석;조성준;류인수
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 2001년도 춘계 학술발표회 논문집
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    • pp.45-52
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    • 2001
  • 촉매연소의 응용기기 개발을 위한 연구의 일환으로, 촉매연소가 도입된 열교환기에 대한 연소특성을 분석하였다. 정상상태에서 촉매연소를 이용한 혼합가스의 예열과 가열매체에 대한 열 공급이 동시에 이루어지도록 장치를 구성하고, 특성실험을 수행하였다. 혼합가스의 예열온도, 유속, 당량비 등에 대한 연소특성을 분석하고, 촉매 층의 온도분포에 따른 연소특성도 살펴보았다. 제한된 온도범위 내에서 연소반응이 정상상태에 도달되는 것은 촉매연소 기기 개발에 매우 중용한 요소이며, 이를 위해서 혼합가스의 예열온도, 유속 당량비 등이 일정한 범위에서 제어되어야 하고, 촉매 층의 열평형이 이루어져야 됨을 알았다.

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대형기관 모사 정적연소실에서 매립지 가스의 연소특성에 대한 연구 (II) - 연소 분석 - (Combustion Characteristics of Landfill Gas in Constant Volume Combustion Chamber for Large Displacement Volume Engine (II) - Combustion Analysis -)

  • 권순태;박찬준;엄인용
    • 대한기계학회논문집B
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    • 제37권8호
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    • pp.743-752
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    • 2013
  • 본 논문은 대형 상용기관을 모사한 정적연소실에서 매립지 가스의 연소 특성에 대한 복수의 논문 중 두 번째로, 연소압력 측정을 기반으로 연소과정을 해석하였다. 해석 결과 연소에 유리한 조건일수록 두 개의 압력 정점이 존재하며, 이는 연소에 의한 열발생과 열전달에 의한 냉각효과의 상호 작용이며 두 정점의 크기는 미연가스 분율에 따라 달라진다. 또한 연소과정 중 열발생에는 4개의 주요 변곡점이 발생하고, 이는 점화위치로부터 화염전파에 따른 전열 면적 변화과정이 주원인이며 연소에 불리한 조건일수록 변곡점은 증가하고 열발생은 복잡한 형태를 지니는데, 이는 연소기간 연장이 주원인이다. 결론적으로 점화위치와 관련된 화염전파 과정 및 전열 면적의 변화과정 그리고 대형 연소실에 의한 연소기간 연장의 효과가 상호 복잡하게 작용하면서 매우 특이한 형태의 열발생 곡선이 생성된다.

EFFECT OF ADDITIVE ON THE HEAT RELEASE RATE AND EMISSIONS OF HCCI COMBUSTION ENGINES FUELED WITH RON90 FUELS

  • Lu, X.C.;Ji, L.B.;Chen, W.;Huang, Z.
    • International Journal of Automotive Technology
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    • 제8권1호
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    • pp.1-7
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    • 2007
  • The effect of the di-tertiary butyl peroxide (DTBP) additive on the heat release rate and emissions of a homogeneous charge compression ignition (HCCI) engine fueled with high Research Octane Number (RON) fuels were investigated. The experiments were performed using 0%, 1%, 2%, 3%, and 4% (by volume) DTBP-RON90 blends. The RON90 Fuel was obtained by blending 90% iso-octane with 10% n-heptane. The experimental results show that the operation range was remarkably expanded to lower temperature and lower engine load with the DTBP additive in RON90 fuel. The first ignition phase of HCCI combustion was observed at 850 K and ended at 950 K while the hot ignition occurred at 1125 K for all fuels at different engine working conditions. The chemical reaction scale time decreases with the DTBP addition. As a result, the ignition timing advances, the combustion duration shortens, and heat release rates were increased at overall engine loads. Meanwhile, the unburned hydrocarbon (UHC) and CO emissions decrease sharply with the DTBP addition while the NOx emissions maintain at a lower level.

Ni-25at.%Al 금속간화합물의 연소합성반응에 미치는 사전 Annealing 처리의 영향 (Effects of Pre-Annealing Treatment on the Combustion Synthesis of Ni3Al Intermetallics Coating)

  • 이한영;모남규
    • Tribology and Lubricants
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    • 제37권2호
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    • pp.62-70
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    • 2021
  • The problem with intermetallics coating using the heat of molten casting is that the heat generated during combustion synthesis dissolves the coating and the substrate metal. This study investigates whether pre-annealing before synthesis can control the reaction heat, with the aim of Ni3Al coating on the casting surface. Therefore, the effects of the annealing temperature and time on the combustion synthesis behavior of the powder compact of Ni-25at%Al after annealing were investigated. As results, the reaction heat when synthesized decreased as the annealing temperature was high and the annealing time was longer. This was attributed to the fact that Al was diffused to Ni particles during low temperature annealing and intermediate Ni-Al compounds were formed during high temperature annealing. After combustion synthesis, however, it was found that their microstructures were almost identical except for the amount of intermediate intermetallics. Furthermore, an annealing temperature above 450℃, at which intermediate compounds begin to form, is needed to prevent the dissolving problem during synthesizing. The intermetallics synthesized after annealing at higher temperature and prolonger annealing time showed a good wear resistance. This might be because much intermediate intermetallics of high hardness were remained in the microstructure.

CNG 직접분사식 연소기에서의 열량해석(2) : 비균질급기 (Analysis of Heat Quantity in CNG Direct Injection Bomb(2) : Inhomogeneous Charge)

  • 최승환;전충환;장영준
    • 한국자동차공학회논문집
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    • 제12권2호
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    • pp.24-31
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    • 2004
  • A cylindrical constant volume combustion bomb is used to investigate the combustion characteristics and to analyzer the heat quantity of inhomogeneous charge methane-air mixture. To analyze the heat quantity, some definitions including the CHR ratio, the UHC ratio and the HL ratio are needed and are calculated. It is shown that the effect of stratification is not significant in case of the overall excess air ratio of 1.1, mainly due to the higher heat loss and lower thermal efficiency compared to those of homogeneous condition. In the case of the overall excess air ratio of 1.4, as the initial charge pressure decreases, the CHR ratio has been decreased while the HL ratio has been increased, Generally, as the initial charge pressure increases, the amount of injection mixture has been decreased and has resulted in lower mean velocity and turbulence intensity for injection mixture. Also, the injected mixture is too rich to result in mixing deficiency in combustion chamber. From these results, it could be possible to acquire the improvement of thermal efficiency and the reduction of heat loss simultaneously through the 2-stage injection in CNG direct injection engine.

맥동연소온수기의 연소실과 노도의 컴퓨터 시뮬레이션 (A Computer Simulation of the Combustion and Flueway of a Pulse Combustion Water Heater)

  • 강건;신세건;김민식
    • 태양에너지
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    • 제9권3호
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    • pp.64-72
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    • 1989
  • In this study, the computer simulation for the heat transfer in pulse combustion water heater is performed. The attention is focused to the effects of the installation of corebuster in the flue tube on heat transfer. The energy equations are established for both wall and gas side in the combustion chamber, flue way, exhaust chamber and muffler, and the numerical calculation is executed. Zone method takes longer computer calculation time compared with semi-zone method. Semi-zone method is chosen for numerical calculation. As a result of this study, it is found that the installation of the core buster in flue tube increases total heat transfer. It is also found that the total heat transfer is increased with the increasing of the ratio of the cross section area of corebuster to that of the flue tube. However, the heat transfer effect is negligible for the area ratio above 0.5.

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정적 연소실에서의 열 손실 해석 모델 (Analysis of Heat Loss Effect of Combustion in Closed Vessel)

  • 이대훈;권세진
    • 한국연소학회지
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    • 제6권1호
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    • pp.14-19
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    • 2001
  • Interests and importance of down-scale combustor is increasing with the emerging need for miniaturized power source which is now a bottleneck of micro system development. But in down scaled combustor increased heat loss compared to thermal energy generation inhibits the usability and application of the device, so as a preliminary work of down scaled combustor fabrication. Modeling tool for the device should be established, in this study modeling approach of closed vessel combustion phenomena that can express heat loss effect and resulting quenching is proposed and the result is compared with experiment data. From this model heat loss effect following combustor scale down can be further understood, and further more design parameter and analysis tool can be obtained.

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Combustion Instability Modeling for a Lean Premixed Gas Turbine Combustor using Flame Transfer Function Approach

  • Kim, Daesik;Cha, Dong-Jin
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2012년도 제45회 KOSCO SYMPOSIUM 초록집
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    • pp.53-54
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    • 2012
  • In an IGCC plant, one of the most important issues on fuel flexibility in the lean premixed combustor is combustion instabilities. They are characterized by large amplitude pressure oscillations which are caused by unsteady heat release from the flames. The relationship between the unsteady heat release and flow oscillation can be qualitatively and quantitatively explained by flame transfer function. This paper introduces combustion instability modeling methods based on the flame transfer function approach.

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촉매연소 시스템 안정화 : 고온용 열교환기를 이용한 능동제어 (Catalytic Combustion System Stability : Active Centre with High Temperature Heat Exchanger)

  • 유상필;송광섭;류인수
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 2002년도 추계 학술발표회 논문집
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    • pp.133-140
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    • 2002
  • Catalytic combustion known as one of the traditional oxidation methods of VOC gas is restricted to its applicable fields because of its reaction characteristics. But recently innovative improvement of catalytic endurance makes its applicable range broader from MEMs to industrial power generation. Therefore, control technologies based on the catalytic combustion characteristics are researched and developed dynamically. Especially, the stable control of catalytic combustion is an essential factor in a view of maximizing its efficiency. In this research, the fuel equivalence ratio and the preheating temperature of mixture gas is controlled by catalytic combustion system enhanced in heat transfer with high temperature heat exchanger. As a result the combustion characteristics of system was investigated, and both passive and active control type were compared and analyzed.

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열정산과 적용사례 조사에 의한 제강 전기로용 조연버너 적용 타당성 연구 (Validity Study on Installation of a Combustion Burner for Electric Arc Furnace in Steel Making Plant by the Heat Balance Check and Case Study)

  • 김현진;허진혁;문승재;유호선
    • 플랜트 저널
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    • 제6권1호
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    • pp.71-75
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    • 2010
  • In this study, the validity study has been carried out to apply the combustion burner in an electric arc furnace. The validity of applying the combustion burner has been studied in the aspect of the operation through the calculation of heat balance. The average decrease rate of power on time is 11.2%. When the maintainability is compared to the door lance manipulator type, the multi-functional combustion burner is simple to replace and repair. The location of burner can be adopted according to the drawings which are recommended in this study. As a result, the validity of applying the combustion burner to improve an efficiency of electric arc furnace has been confirmed.

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