• Title/Summary/Keyword: 컵버너

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The coflow effects on the flame stability of Heptane pool fire (헵탄 풀화재에서 화염안정성에 관한 주위류 효과)

  • Jeong, Tae-Hee;Lee, Eui-Ju
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2012.04a
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    • pp.258-261
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    • 2012
  • 풀화재에서 화염화염진동은 주위공기와의 밀도차에 의한 부력효과에 기인하여 주로 발생한다. 본 연구는 풀화재의 화염불안정성에 대해 산화제 유속 및 농도 변화에 따른 효과를 검토하기 위하여 컵버너 실험을 수행하였다. 실험결과는 산화제의 농도를 변화시켰을 경우에는 산화제의 불활성기체의 농도가 증가할수록 청염의 길이가 길어지고 컵버너 끝단으로부터 부상되는 것이 관찰된다. 한편, 산화제의 유속이 증가함에 따른 진동주파수가 감소함을 보인다. 이는 무차원 변수로 표현되는 주파수와 부력의 관계로 도시하였을 때 다양한 속도스케일을 사용할 수 있었지만, 연료와 산화제의 유속차로 정의되는 특성속도인 경우에 정지되어 있는 공기중에서의 풀화재 진동과 일치하는 관계식을 얻을 수 있었다. 그리고 진동주파수는 산화제 희석율과는 특정한 관계를 보이지 않는데 이는 국부적 화염구조와 연관성을 가지기 때문으로 판단된다.

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The Effects of Velocity and Concentration in the Oxidizer of Heptane Pool Fires on the Flame Stability (헵탄 풀화재 화염안정성에 관한 산화제 유속 및 농도 효과)

  • Jeong, Tae-Hee;Lee, Eui-Ju
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.3
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    • pp.309-314
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    • 2012
  • Flame flickering occurs mainly because of the buoyancy force for pool fires under ambient air. The cup-burner flame was used for experimental investigation of the effect of the oxidizer velocity on the gravitational instability. The results showed that the flickering frequency decreased with increasing oxidizer velocity. The frequency-buoyancy relation with nondimensional variables coincided with that of the buoyant flume and pool fires when the characteristic velocity was defined as the difference between the fuel and oxidizer velocities, which implies that the origin of the gravitational instability is the Kelvin-Helmholtz instability in the shear layer. The effect of the oxidizer composition on the instability was also examined through nitrogen dilution in the oxidizer stream. As the concentration of inert gas increased, the length of the blue flame increased and lift-off behavior was observed. The oscillation frequency was independent of the dilution ratio, but was related to the local flame structure.

A study on the Characteristics of the Blowing type Rotary Burner (송풍형 로터리 버너의 특성 연구)

  • Choi Y. H.;Kim K. H.;Yoon S. J.
    • Proceedings of the KSME Conference
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    • 2002.08a
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    • pp.303-306
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    • 2002
  • Liquid atomization by means of a spinning cup is widely used as a device for combustion, in cooling and spray drying. In this study, the blowing type rotary atomizer was experimental carried out the investigations on the characteristics of the blowing type rotary atomizer which is an air flow energy of blower instead of an electric motor most commonly used to a driven energy. The analysis on the rotary cup speed, air velocity with the blower conditions was performed and also the drop size was measured using LDPA. It was tried to analyzed on air-nozzle size and liquid flowrate as the result. It was found that the increase of the relative velocity between liquid and air improve significantly atomization liquid, and decrease of the liquid flowrate improved the maximum drop size though the mean drop size is really the same.

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A Study on the Measurement of Flame Extinguishing Concentration of Halon Alternatives by New Test Equipment (할론대체물질의 새로운 불꽃소화농도 측정장치에 관한 연구)

  • 김재덕;임종성;이윤우;이윤용
    • Fire Science and Engineering
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    • v.8 no.1
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    • pp.3-8
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    • 1994
  • A new test system was established to measure the flame extinguishing concentration of Halon alternatives. The main characteristic of this system is to use the solid paraffin with a wick instead of liquid fuel, such as n-Heptane. Our results showed that the extinguishing concentration of compounds was lower than that of other existing data, but the trend was consistent with others. The flame extinguishing concentration of all tested compounds were not almost effected by gas flow velocity. The system produces good reliable data with a minimum error for measuring the flame extinguishing concentration. Therefore our new system can be utilized as a standard equipment to evaluate Halon alternatives.

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The Mobile Heating of Used Magnesium (마그네슘을 이용한 휴대용 가열)

  • Kim, Soon-Gi
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2008.05a
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    • pp.227-230
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    • 2008
  • 본 논문은 알칼리토금속계인 마그네슘 등의 수화 반응에 수반되는 반응열과 전기화학적 작용을 이용하여 버너와 같은 화기를 이용하지 않고 야외에서 생수 등을 간접가열 하여 커피, 컵라면, 분유, 피자등의 음식을 가열 할 수 있는 발열제품을 개발하는 데이터를 얻었다. 마그네슘과 금속계 화합물을 혼합하여 tea bag에 넣어 셀 형태로 만들어 발열효과를 높이기 위해 특수시험관의 재질 및 두께의존성, 발열제 양과 혼합물질에 따른 온도특성 등을 확인하였다. 발열제에서 발생되는 열의 효율적인 전달과 포장 재질의 선정 및 휴대의 간편성 등을 고려하여 타당성을 검증하였다.

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Flame Instability in Heptane Pool Fires Near Extinction (소화근처 헵탄 풀화재의 화염불안정성)

  • Jeong, Tae Hee;Lee, Eui Ju
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.12
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    • pp.1193-1199
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    • 2012
  • A cup burner experiment was performed to investigate the effect of the oxidizer velocity and concentration on flame instability near extinction. Heptane was used as a fuel and air diluted by nitrogen and carbon dioxide was used in the oxidizer stream. Two types of flame instabilities at the flame base and at axial downstream were observed near extinction. The instability at the flame base could be characterized by cell, swing, and rotation modes, and the cell mode changed to the rotation mode through the swing mode as the oxidizer velocity increased. To assess the parameters for the flame instability, the initial mixture strengths, Lewis number, and adiabatic flame temperature were investigated under each condition. The Lewis number might be the most important among them, but it is impossible to generalize because of the insufficient number of cases. Furthermore, the axial periodic flickering motion disappeared at low and high oxidizer velocities near extinction. This resulted from the fact that low oxidizer velocity induced evaporated fuel velocity below the critical velocity and high velocity made the reacting fuel velocity comparable.

Quantitative Difference in the Extinguishing Concentration of Inert Gases with Fire Suppression Criteria in a Cup Burner Test (컵버너시험에서 소화기준에 따른 불활성기체의 소화농도에 대한 정량적 차이)

  • Cho, Jae-Ho;Hwang, Cheol-Hong
    • Fire Science and Engineering
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    • v.28 no.3
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    • pp.34-42
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    • 2014
  • The concentrations of inert gases ($N_2$, Ar, $CO_2$ and He) required to induce the flame instabilities such as swing, rotation, lifted and blow-out were measured in a cup burner nonpremixed flames for $CH_4$ and $C_3H_8$ fuels. Quantitative differences in the extinguishing concentration with fire suppression criteria (i.e. blow-out or onset of flame instability) were also examined. It was found that the difference in extinguishing concentration was increased with the appearance of lifted flame and the low extinguishing performance of inert gaseous. The maximum difference in extinguishing concentration with the suppression criteria was approximately 35% at the highest fuel velocity condition (1.3 cm/s) for the $C_3H_8$-air nonpremixed flame. It can be also expected that the extinguishing concentration by the criteria based on the onset of flame instability will provide the useful information from the viewpoint of the accurate and economical design concentration.

Fire Extinguishing Ability of Binary Gaseous Extinguishing Agents Evaluated by Cup Burner and Numerical Studies (이성분계 가스계소화약제 소화성능의 컵버너실험 및 이론적 고찰)

  • Kwon, Kyung-Ok;Won, Dong-Bin;Choi, Keun-Joo;Kim, Jong-Won;Shin, Dong-Il
    • Journal of the Korean Institute of Gas
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    • v.11 no.3
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    • pp.7-12
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    • 2007
  • The search for a new fire-extinguishing agent with all the desirable properties of halon 1301 has not been successful. To study binary gaseous extinguishing agents instead, one has to determine the extinguishing concentrations for several compositions of a given chemical in an inert gas. This process is expensive and time consuming. The fire suppression efficiencies of gas mixtures of HFC 125 and HFC 227ea with nitrogen as total flooding agents were studied by cup burner method. It was shown that addition of small amounts of those extinguishants to nitrogen can enhance the suppression effectiveness of the inert gas. As expected, the degree of synergism was highest at low concentrations of the chemical. For each binary system, extinguishing concentrations of the pure compounds and one binary data were used to predict the extinguishing concentrations for the entire range of binary composition. The predicted values were very close to experimental data.

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