• 제목/요약/키워드: Combustion time

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대향 부연소실이 있는 밀폐연소실 내의 $NO_x$ 저감기구에 대한 연구 (A Study on NOx Reduction Mechanism in a Closed Vessel with Opposed Dual Pre-chambers)

  • 김재헌;이수갑;정인석
    • 한국연소학회지
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    • 제2권1호
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    • pp.17-27
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    • 1997
  • It is well known that NOx formation has a strong dependence on the maximum temperature and correspondingly with the maximum chamber pressure of a closed combustion system. However, in a case of impinging-jet-flame (IJF hereafter) combustion with opposed dual pre-chambers, low $NO_x$ formation with high pressure could be achieved, but its mechanism has not been clearly understood so far. In this study, a three-dimensional analysis is adopted to resolve time-variant local properties that might indicate the mechanism of IJF combustion. Numerical results are verified by comparing them with experiments. The IJF combustion in a vessel with no pre-chamber, with single pre-chamber, and with dual pre-chambers is studied. The orifice diameter and the volumetric ratio of pre-chamber are used as geometric parameters. The effects of main-chamber ignition delay time and combustion time of main-chamber, orifice exit velocity, orifice exit temperature, turbulent kinetic energy of main-chamber and spatial distribution of temperature in the latter stage of combustion are investigated. A longer main-chamber ignition delay and a shorter main-chamber combustion time suppress the formation of high temperature region with respect to mean temperature, which consequently results in less NO production.

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부실식 정적연소실내 층상혼합기의 연소특성(II) (Combustion Characteristics of Stratified Mixture in a Constant Volume Combustion Chamber with Sub-chamber (II))

  • 김봉석;권철홍;류정인
    • 한국자동차공학회논문집
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    • 제3권5호
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    • pp.122-134
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    • 1995
  • The present study was investigated combustion characteristics of methane-air mixtures at stratified charge in a constant volume combustion chamber. The main results obtained from this study can be summarized as follows. In case of ${\phi}_s=1.0$, total burning times greatly affected rather than initial time of pressure increase and maximum combustion pressure. In case of ${\phi}_t=1.0$, initial time of pressure increase and total burning times were affected considerably in comparison with the case of ${\phi}_s=1.0$. Also, even the very lean mixture which total equivalence ratio is ${\phi}_t=0.69$(${\phi}_s=1.0$, ${\phi}_m=0.65$), by changing configuration of the critical passage-hole and using a stratified mixture, it is possible to decrease substantially the initial time of pressure increase. total burning times and NOx concentration without deteriorating combustion characteristics such as maximum combustion pressure, rate of heat release etc. in comparison with the use of single chamber(in case of ${\phi}=1.0$) only. Specifically, our trends were revealed remarkably in the case of Type D which is reduced a flame contact area of sub-chamber side of the passage-hole.

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3단 덕트 시스템에서 화염전달함수가 연소불안정 모델링 결과에 미치는 영향 (Effects of Flame Transfer Function on Modeling Results of Combustion Instabilities in a 3 Step Duct System)

  • 홍수민;김대식
    • 한국분무공학회지
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    • 제25권3호
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    • pp.119-125
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    • 2020
  • In this paper, we used Helmholtz solver based on 3D finite element method to quantitatively analyze the effects of change of gain, time delay and time delay spread, which are the main variables of flame transfer function, on combustion instability in gas turbine combustor. The effects of the variable of flame transfer function on the frequency and growth rate, which are the main results of combustion instability, were analyzed by applying the conventional heat release fluctuation model and modified one considering the time spread. The analysis results showed that the change of gain and time delay in the same resonance mode affected the frequency of the given resonance modes as well as growth rate of the feedback instability, however, the effect of time delay spread was not relatively remarkable, compared with the dominant effect of time delay.

시간지연 모델을 이용한 충돌형 분사기의 연소응답 인자 도출 및 정량화에 관한 수치해석적 연구 (A Numerical Study on Quantification of Combustion-Response Parameters of Impinging-Jet Injectors using Time-Lag Model)

  • 손진우;김철진;손채훈
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2012년도 제45회 KOSCO SYMPOSIUM 초록집
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    • pp.5-7
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    • 2012
  • This study presents relations between the time lag and interaction index of the impinging-jet injectors using time lag model in a model chamber. To analyze the response of the flame, 5% amplitude of oxidizer velocity is artificially perturbed at a resonance frequency. At the mixing point of fuel and oxidizer, which determines the characteristic length, the relationship between velocity perturbation and heat release rate is quantified by combustion parameters of interaction index and time lag. As the improved method to apply the time-lag, the method using the average velocity obtained from numerical results is suggested.

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화염전달함수의 위상차를 이용한 시간지연 분석 (Time Lag Analysis Using Phase of Flame Transfer Function)

  • 표영민;김지환;김대식
    • 한국분무공학회지
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    • 제21권2호
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    • pp.104-110
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    • 2016
  • Main purpose of the current paper is to show results of time lag analysis using phase information of flame transfer function in order to predict combustion instabilities in a gas turbine combustor. The flame transfer function (FTF) is modeled using a commercial Computational Fluid Dynamics (CFD) code (Fluent). Comparisons of the modeled flame shapes with the measured ones were made using the optimized heat transfer conditions and combustion models. The FTF modeling results show a quite good agreement with the measurement data in predicting the phase delay (i.e. time lag). Time lag analysis results using the phase of FTF shows better combustion instability prediction accuracy than using time lag calculated from the steady state flame length.

부실식 정적연소실내 층상혼합기의 연소특성( I ) (Combustion Characteristics of Stratified Mixture in a Constant Volume Combustion Chamber with Sub-chamber( I ))

  • 김봉석;권철홍;류정인
    • 한국자동차공학회논문집
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    • 제3권1호
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    • pp.65-75
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    • 1995
  • The present study was investigated combustion characteristics of methane-air mixtures at stratified charge in a constant volume combustion chamber. The results indicated that even the vety lean mixture, which is normally not flammable in single chamber type, could be burned within. a comparatively short time by using sub-chamber with stratified charge method. And the lean inflammability limit of mixture in a main chamber was about ($\phi_m$cr=O.46, when the equivalence ratio of a sub-chamber was $\phi_s$= 1.0. Initial time of pressure increase and total burning times were decreased and maximum combustion pressure. was increased as the equivalence ratio of both sub and main chamber approached unity. Specifically, initial time of pressure increase and total burning times were greatly affected rather by. the equivalence ratio of sub-chamber than that of main chamber. The maximum combustion pressure was little affected if the total equivalence ratio lies in the same range.

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석유류 POOL FIRE에 있어서의 열적인 영향(I) (Thermal Effects in the Pool Fire of Fuels(I))

  • 정국삼;강민호;이덕영
    • 한국안전학회지
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    • 제11권1호
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    • pp.75-83
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    • 1996
  • This paper was concerned with pool fire about many used kerosene and diesel oil. In order to know the thermal effects of kerosene and diesel oil, temperature change in the pool fire of these fuels were obtained as a variation of combustion time and the tank's height and diameter by using the data acquisition system, And fuel combustion velocity were derived as a function of the diameter and wall thickness of tanks and combustion time. As a result, when the tank's height was 15㎝, the greater diameter the higher temperature rising regardless of tank's wall thickness and fuels. But, when the tank's height is 30㎝, temperature rising was not higher than 15㎝. Also, temperature rising in the pool fire of kerosene much higher than diesel oil. Kerosene's combustion velocity was about two times faster than diesel oil. And, kerosene's combustion velocity was increased according to the increasing of tank's diameter and combustion time. But, diesel oil's combustion velocity was a little increased or not. Surrounding temperature change of tank with the pool fire was obtained temperature distribution of 0∼35℃ according to the change of tank's diameter and distance from the tank's wall.

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혼합비와 입자 크기에 따른 마그네슘 입자군 연소 화염의 실험 (Experimental Study of Magnesium Dust Combustion Flame on the Temperature Measurement According to Equivalence Ratio and Particle Size)

  • 천홍기;임지환;윤웅섭
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제36회 춘계학술대회논문집
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    • pp.157-163
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    • 2011
  • 마그네슘 입자 군 연소 실험 장치를 제작하고 연소 실험을 수행하였다. 예혼합 화염용 버너에서 마그네슘 입자의 공급 질유량을 변화시켰을 때 점화 지연시간의 변화를 확인하였다. 마그네슘의 질량유량을 증가시킴에 따라 점화 지연시간이 단축됨을 확인하였다. 또한 마그네슘 입자 크기 별, 혼합비에 따라 변화시켰을 군 연소 화염 온도를 two wavelength pyrometry 를 이용하여 군 연소 화염온도를 측정하였다. 입자 크기별 군 연소 화염온도는 거의 비슷함을 확인 할 수 있었으며, 당량비에 따른 화염온도의 측정을 통해 연소되는 마그네슘 연소화염 분포의 특성을 알 수 있었다.

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화염 불안정성에 따른 개선된 이미지 처리 기법을 활용한 디젤-바이오디젤 혼합 연료 액적의 연소 특성 (The Combustion Characteristics of Diesel-Biodiesel Blended Fuel Droplets Using the Modified Image Processing Method According to Flame Instability)

  • 최주환;임영찬;서현규
    • 한국분무공학회지
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    • 제26권3호
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    • pp.142-148
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    • 2021
  • The objective of this study is to analyze the basic flame behavior characteristics using the single fuel droplet combustion of diesel, palm-based biodiesel, and canola-based biodiesel. The results were compared and analyzed through the post processed image, which was applied the threshold level for removing noise in the raw image. The raw image was taken by a high-speed camera during the entire combustion process. At the same time, the maximum flame length, which was measured by the application code of the MATLAB program, the ignition delay, and the combustion period were compared and analyzed.

Diesel기관의 연소에 의한 열발생율의 연구 (STUDY ON HEAT RELEASE RATE BY COMBUSTION IN DIESEL ENGINE)

  • 안수길
    • 한국수산과학회지
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    • 제8권3호
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    • pp.150-156
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    • 1975
  • Diesel 기관의 연소는 매우 복잡한 현상이다. 이 복잡한 연소과정을 각운전조건하에서 구한 열발생율에 의해 해석했으며 그 결과 다음 사항이 밝혀졌다. 1. Diesel기관의 연소기간은 예혼합기연소기관과 황산연소기관으로 나누어 생각할 수 있다. 2. 예혼합기연소부분이 클수록 효율은 양호하나 최고압력이 높아져 정숙한 운전이 되지 못하고 확산연소기간이 길수록 운전은 정숙하나 효율은 떨어지고 배기온도는 상승한다. 3. 예혼합기 연소부분은 주로 발화지연에 지배되나 확산연소기간은 산소의 확산에 지배된다. 4. 실험범위내에서 기관의 효율은 분사량과 회전수가 일정하면 분사시기가 빠를수록 효율은 증가했으나 압력의 상승은 효율의 증가보다 높았다.

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