• 제목/요약/키워드: two-staged combustion

검색결과 27건 처리시간 0.031초

공기 다단 연소 기법 적용에 따른 미연탄소분 및 질소산화물 배출특성 (Characteristics of UBC and NOx Emission in Air Staging Combustion)

  • 김정우;임호;고영건;전충환
    • 대한기계학회논문집B
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    • 제40권10호
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    • pp.637-644
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    • 2016
  • 본 연구의 목적은 석탄 입자 연소 시 공기 다단 연소 적용에 따른 UBC(Unburned Carbon) 및 질소 산화물(NOx) 배출 특성을 분석하는 것이다. 이를 위해 공기 다단 연소가 가능한 2단 하향 분류층 반응기(Two Staged Drop Tube Furnace, Two Staged DTF)를 설계 및 제작하였다. 아역청탄(Tanito)의 단일 및 다단 연소 실험을 진행하여 UBC 및 NOx 배출 특성을 분석하였다. 그 결과, 단일 연소 조건에서 온도 및 공기비가 증가함에 따라서 UBC 함량이 감소했지만 NOx의 농도는 증가했다. 특히 과농 연료 연소 영역에서 NOx 저감 반응이 일어났으며, 이때 반응 온도가 증가할수록 NOx 저감 반응이 활성화 될 뿐아니라 UBC는 감소되었다. 공기 다단 연소 실험의 경우 석탄 입자의 UBC 증가량에 비해 높은 NOx 저감 효과를 얻을 수 있었다.

연료다단 연소기의 NOx 발생특성에 관한 실험적 연구 (The experimental study on the NOx formation of fuel staged combustor)

  • 한지웅;안국영;김한석;정진도
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2001년도 제22회 KOSCI SYMPOSIUM 논문집
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    • pp.163-171
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    • 2001
  • The characteristics of NOx emission in multi fuel/air staged combustor have been experimentally studied. The design concept of multi fuel/air staged combustor is creation of two separate flame, a primary flame is act as a pilot Dame for the secondary combustion stage combustion zone, where most of fuel bums. Experiments were performed on a semi-industrial scale (thermal input 0.233 MW) in a laboratory furnace and Liquefied Petroleum Gas(LPG) was used as primary and secondary fuels. The study included parametric study to identify the optimum operating conditions which are primary/secondary fuel ratio, primary/secondary air ratio, primary swirl intensity and secondary swirl intensity for reducing NOx emission. The test demonstrated that NOx emission can be reduced by ${>}$70% in accordance with operating conditions.

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회전 아크 적용 플라즈마 저 NOx 버너 연소특성 (Characteristics of Low NOx Plasma Burner Incorporating with Rotating Arc Plasma)

  • 김관태;강희석;이대훈;송영훈;박재언
    • 한국수소및신에너지학회논문집
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    • 제22권6호
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    • pp.934-941
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    • 2011
  • Characteristics of low NOx burner is investigated. Low NOx burner introduced in this paper adopts two staged combustion with plasma burner for the 1st stage combustion. Extensive parametric tests were done to figure out the effect of burner stoichiometry, staged thermal load, electric power for plasma generation. Overall NOx production by burner shows effective reduction by adopting plasma staged burner. and the aspects depends on the fuel stoichiometry of 1st stage burner or operating condition of plasma burner. It is promising to use plasma burner as an alternative tools of low NOx burner technology.

다단 연소기를 이용한 LNG 화염의 NOx 발생에 관한 실험적 연구 (An Experimental Study on the NOx Formation of LNG Flame in Fuel Staged Combustor)

  • 정진도;한지웅;안국영
    • 대한기계학회논문집B
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    • 제28권4호
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    • pp.389-394
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    • 2004
  • An experimental study on the NOx formation of LNG flame in fuel staged combustor has been studied. The design concept of multi fuel/air staged combustor is creation of two separate flame, a primary flame is a act as a pilot flame for the secondary combustion stage combustion zone, where most of fuel bums. Experiments were performed on a semi-industrial scale (thermal input 0.233 MW) in a laboratory furnace and Liquefied Natural Gas(LNG) was used as a primary and secondary fuels. This study included parametric study to identify the optimum operating conditions which are primary/secondary fuel ratio, and primary/secondary air ratio for reducing NOx emission with two types of nozzle. The test demonstrated that NOx emission can be reduced by >70% in accordance with operating conditions.

다단 연소기를 이용한 LNG 화염의 NOx 발생에 관한 실험적 연구 (An Experimental study on the NOx Formation of LNG Flame in Fuel Staged Combustor)

  • 한지웅;안국영;김한석;정진도;박경진
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집B
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    • pp.161-166
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    • 2001
  • An Experimental study on the NOx formation of LNG flame in fuel staged combustor has been studied. The design concept of multi fuel/air staged combustor is creation of two separate flame, a primary flame is act as a pilot flame for the secondary combustion stage combustion zone, where most of fuel burns. Experiments were performed on a semi-industrial scale (thermal input 0.233 MW) in a laboratory furnace and Liquefied Natural Gas(LNG) was used as primary and secondary fuels. The study included parametric study to identify the optimum operating conditions which are primary/secondary fuel ratio, and primary/secondary air ratio for reducing NOx emission with two types of nozzle. The test demonstrated that NOx emission can be reduced by >70% in accordance with operating conditions.

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환경친화형 연료분할-고속분사식 버너 개발 (A Development of Environmental-friendly Burner with High Injection Velocity by Multi-staged Fuel-injection)

  • 추재민;고영기;김종우;김철민
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2005년도 제31회 KOSCO SYMPOSIUM 논문집
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    • pp.148-155
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    • 2005
  • In this study, Development of 300,000kcal/hr high velocity Injection burner with fuel multi-stage was performed using experiments. The characteristics of NOx emission in multi fuel/air staged combustor have been experimentally studied. The design concept of multi fuel/air staged combustor is creation of two separate flame, a primary flame is largest access air combustion and the secondary flame is complete combustion zone, where most of fuel bums. Experiments were performed on an industrial scale in a laboratory furnace and Liquefied Natural Gas(LNG) was used as primary and secondary fuels. Comparison of outlet NOx and outlet Temperature under various air rate and primary/ secondary fuel ratio was performed. The test demonstrated that NOx emission con be reduced by 70% in accordance with operating conditions.

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탄연소시 N-release특성과 2단연소에 의한 NOx 저감에 관한 연구 (Studies on NOx reduction by two-staged combustion and characteristics of N-release in pulverized coal combustion)

  • 한웅;박주식;김성완;최상일
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2000년도 제20회 KOSCO SYMPOSIUM 논문집
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    • pp.45-56
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    • 2000
  • 미분탄 연소시 발생하는 질소산화물(NOx)은 석탄의 형태 및 등급에 따라 다르게 나타난다. 석탄에 함유되어 있는 질소 성분은 준역청탄인 경우 촤보다 휘발분에 많이 분포되어 있으며, 역청탄인 경우 촤에 많이 분포되어 있음을 확인하였다. 석탄에 함유되어 있는 질소의 분포에 따라 연속과정에 의해 최대로 발생할수 있는 질소산화물의 양과 질소산화물로 전환되는 정도를 예측할 수 있었다. NOx 방출은 석탄중에 함유되어 있는 질소성분의 양에 영향을 받으며, 고온 노출 시 방출되는 휘발성분의 양의 증가 그리고 공기비를 감소함으로서 질소산화물의 저감율을 증가시킬 수 있었다. 특히 질소산화물의 환원은 연료가 풍부한 조건에서 연소초기 고온으로 연소하는 경우 효과적이었다. 또한 2단 연소에 의한 방법으로 1단에서는 저공기비로 유지하고 2단에서 추가적인 공기를 공급함으로서 최종 공기비는 1.2인 조건에서 효과적으로 NOx를 저감할 수 있었다.

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연료다단 연소기의 NOx 발생특성에 관한 실험적 연구 (An Experimental Study on the NOx Formation of Fuel Staged Combustor)

  • 정진도;안국영;한지웅
    • 한국자동차공학회논문집
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    • 제11권6호
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    • pp.73-79
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    • 2003
  • The characteristics of NOx emission in multi fuel/air staged combustor have been experimentally studied. The design concept of multi fuel/air staged combustor is creation of two separate flame, a primary flame is act as a pilot flame for the secondary combustion stage combustion zone, where most of fuel burns. Experiments were performed on a semi-industrial scale (thermal input 0.233 ㎿) in a laboratory furnace and Liquefied Petroleum Gas(LPG) was used as primary and secondary fuels. The study included parametric study to identify the optimum operating conditions which are primary/secondary fuel ratio, primary/secondary air ratio, primary swirl intensity and secondary swirl intensity for reducing NOx emission. The test demonstrated that NOx emission can be reduced by >70% in accordance with operating conditions.

공기 다단 연소기 화염의 NO 발생특성에 관한 연구 (Investigation of NO Formation Characteristics in Multi Staged Air Combustor)

  • 김한석;안국영;백승욱;유명종
    • 대한기계학회논문집B
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    • 제25권11호
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    • pp.1594-1605
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    • 2001
  • In this study, a numerical simulation was developed which was capable of predicting the characteristics of NO formation in pilot scale combustor adopting the air-staged burner flame. The numerical calculation was constructed by means of establishing the mathematical models fur turbulence, turbulent combustion, radiation and turbulent nitric oxide chemistry. Turbulence was solved with standard k-$\xi$ model and the turbulent combustion model was incorporated using a two step reaction scheme together with an eddy dissipation model. The radiative transfer equation was calculated by means of the discrete ordinates method with the weighted sum of gray gases model for CO$_2$and H$_2$O. In the NO chemistry model, the chemical reaction rates for thermal and prompt NO were statistically averaged using the $\beta$ probability density function. The results were validated by comparison with measurements. For the experiment, a 0.2 MW pilot multi-air staged burner has been designed and fabricated. Only when the radiation was taken into account, the predicted gas temperature was in good agreement with the experimental one, which meant that the inclusion of radiation was indispensable for modeling multi-air staged gas flame. This was also true of the prediction of the NO formation, since it heavily depended on temperature. Subsequently, it was found that the multi-air staged combustion technique might be used as a practical tool in reducing the NO formation by controlling the peak flame temperature.

초소형 리포머용 2단 초소형 연소기 내 연소특성에 관한 연구 (Combustion Characteristics in a Two-staged Microcombustor for a Micro Reformer System)

  • 김기백;권오채
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.2238-2243
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    • 2007
  • A new microcombustor configuration for a micro fuel-cell reformer integrated with a micro evaporator was studied experimentally and computationally. The present microcombustor is simply cylindrical to be easily fabricated but two-staged, expending downstream, to feasibly control ignition and stable burning. Results show that the aspect ratio of the first stage and the wall thickness of the microcombustors substantially affect ignition and thermal characteristics. For the optimized design conditions, a premixed microflame was easily ignited in the expanded second stage combustor, moved into the smaller first stage combustor, and finally stabilized therein. The measured and predicted temperature distributions across the microcombustor walls indicated that heat generated in the microcombustor is well transferred. Thus, the present microcombustor configuration could be applied to the practical micro reformers integrated with a micro evaporator for use of fuel cells.

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