• Title/Summary/Keyword: 미분탄

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입자크기에 따른 석탄 가스화기내의 반응성 유동장 모사

  • 조석연;서경원
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 1996년도 추계학술발표회 논문집
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    • pp.150-156
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    • 1996
  • 본 연구에서는 Alaska Usibelli 아역청탄이 사용되는 실린더형 석탄 가스화기내에서 석탄의 입자크기가 반응성 유동장과 주요 생성물의 농도분포에 미치는 영향을 고찰하기 위하여 미분탄 입자의 크기를 40$mu extrm{m}$, 60$\mu\textrm{m}$, 100$\mu\textrm{m}$, 120$\mu\textrm{m}$ 및 140$\mu\textrm{m}$로 각각 나누어 전산모사를 수행하였다. 모사결과, 가스화기 내에서 석탄의 입자크기가 가스화 생성물의 농도와 유동장에 커다란 영향을 미침을 알 수 있었다. 입자의 크기가 100$\mu\textrm{m}$일 때 가스화기 출구에서 주 생성물인 CO와 H2가 초대로 생성되고 이때 이들의 평균 몰분율은 각각 0.62, 0.16(dry basis, inert free)으로 예측되었다.

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2단 동축형 Cyclone 연소기를 이용한 저공해 미분탄 연소특성 연구 (A Study on Low Emission Pulverized Coal Combustion in the 2 Staged Coaxial Cyclone Combustor)

  • 최상일;박주식;김성완;김호영
    • 한국연소학회지
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    • 제4권1호
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    • pp.67-83
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    • 1999
  • The objective of this study is development of low emission pulverized coal combustor for reducing pollutant emission generated from coal combustion. Low emission combustion technology for reducing NOx and fly ash was investigated by using 2 stage coaxial cyclone combustor. Staged combustion was employed for NOx reduction and high temperature slagging combustion was also studied for fly ash removal in the combustor. The result of this study shows that the low emission combustion system can reduce the amount of atmospheric pollutions with improved boiler efficiency and performance.

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미분탄 연소로에서 연소특성에 미치는 석탄특성에 관한 연구 (Effect of Coal Properties on Combustion Characteristics in a Pulverized Coal Fired Furnace)

  • 이병화;송주헌;이천성;장영준;전충환
    • 대한기계학회논문집B
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    • 제33권10호
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    • pp.737-747
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    • 2009
  • This study is to investigate the effect of the moisture, volatile matter and particle size in the coal on the pulverized coal combustion characteristics using CFD. The results show that as the moisture content in coal increases, flame temperature decreases because of heat loss driven from latent heat of vaporization and reduction of heating value. As the volatile matter content in the coal increases, the temperature in the region near the burner increases, while the temperature in rear region of boiler decreases. The solution to keep the temperature in the rear region of boiler is suggested that particle size is needed to be larger. As the particle size increases, the temperature in the rear region of boiler show tendency to increase, for combustion burning time of coal could be extended.

입자분리기 최적 설계를 위한 다상 유동 해석 (Analysis of Gas-Solid Flow for the Optimum Design of Coal Splitter)

  • 육심균;류제욱;이익형;이상룡
    • 대한기계학회논문집B
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    • 제27권11호
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    • pp.1604-1611
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    • 2003
  • The experimental investigation of a coal splitter used in the 500㎿(e) boilers of fossil power plant is carried out to validate the design criteria. To predict air flow and the amount of particles at the exit, velocity and the weight of particles are measured on test planes using the coal splitter model with two-dimensional phase doppler particle analyzer and the glass fiber filter. It is found that the position of guide plate influences significantly both flow rates of gas and particle at the exit. Gas flow rate was a linear function of the guide plate, whereas particle flow rate was a exponential function of it.

석탄연소보일러 개조공사에 적용된 저NOx 미분탄 버너의 성능 평가 (Performance Evaluation of Low NOx Pulverized Coal Burner Applied in Coal Fired Boiler Refurbishment Project)

  • 김상현;송시홍;김혁제;김혁필
    • 한국연소학회지
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    • 제11권4호
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    • pp.22-26
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    • 2006
  • To meet the environmental requirements, Doosan Heavy Industries & Construction Co., Ltd. (Doosan) had developed low NOx pulverized coal burner and it was applied to boiler retrofit project, 130 ton/hr coal fired cogeneration boiler, in 2003. NOx emissionand unburned carbon (UBC) in fly ash were measured during the commissioning tests. In this paper, the operation results of low NOx pulverized coal burner installed in 130 ton/hr coal fired boiler are presented. Burners emitted 160 ppm (@6 % $O_2$ basis) NOx and 3 % UBC with Chinacoal containing 0.86 % fuel nitrogen. And also it was shown that NOx emission rate of low NOx pulverized coal burner is linearly increased with fuel-nitrogen fraction of coal.

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혼합 대류 유동시스템에 부유된 고흡수 방사하는 입자의 열 확산 (Thermophoresis of highly absorbing, emitting particles suspended in a mixed convection flow system)

  • ;여석준
    • 오토저널
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    • 제14권3호
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    • pp.115-125
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    • 1992
  • 혼합 대류 이상 유동 시스템에 부유된 슈트와 미분탄과 같은 고흡수, 방사하는 입자의 열확산적 입자이동에 대한 복사 및 부력효과를 수치적으로 검토하였다. 기체 및 입자유동의 지배방정식 들은 Euler 관점의 two-fluid model의 근간에서 수행되었으며, 에너지 보존식의 비선형 복사 생 성항은 P-1 근사방법에 의해 계산되었다. 혼합 대류 유동에서의 입자의 열확산 현상은 복사 열 전달과 커플링되며, 복사효과의 증가는 부력효과를 상대적으로 감소시켜 부력효과에 의한 입자 부착율을 완화시켰다. 복사효과가 무시될 때 Grashof 수의 증가에 따라 입자의 확산효과는 감 소되었으며, 복사효과가 함께 작용될 때 입자 부착율은 증가됨을 보였다.

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미분탄의 집단점화 해석 (Analysis of Group Ignition of Pulverized Coal Particles)

  • 서경근;김호영
    • 한국연소학회지
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    • 제4권2호
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    • pp.1-10
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    • 1999
  • Pulverized coal is widely used as the source of electrical power generation and industrial processes. Numerical analysis on the transient ignition process of the cloud of pulverized coal particles in various cases is carried out. Particle radius, initial particle temperature, number density are chosen as major parameters that influence the characteristics of ignition and combustion. The result can be summarized as follow. The ignition occurs at the position that is closed to the surface of the cloud. Maximum temperature and velocity appear at ignition point, and the concentrations of gaseous fuel and oxidizer decrease rapidly near the ignition point. The chemical reaction takes place in wider zone as number density and particle radius decrease. The ignition delay is shortest when particle radius is about $50\;{\mu}m$, and tends to be shorter as number density and initial ambient temperature increase.

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공기 다단공급식 미분탄 버너의 NOx 저감 특성 (NOx Reduction Characteristics of Air Staging Burner for Pulverized-coal Combustion)

  • 박주식;김성완;최상일
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2001년도 제23회 KOSCO SYMPOSIUM 논문집
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    • pp.153-160
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    • 2001
  • The combustion test used DTF was performed to obtain the characteristics of NOx emission and reduction. In this test, major factor of NOx emission was a stoichiometric air ratio. At the onset of combustion to be rich oxygen, NOx was produced rapidly. Optimum condition for NOx reduction was formed under about AR:0.7 in the combustion test of Alaska coal. Investigations were undertaken with 200KW(th) test combustor. In combustion test, the major variables were coal feed ratio of center/outer, stoichiometric air ratio at the onset of combustion. The lowest NOx emission, 182ppm(6% O2 base), was achieved at about AR:0.6 of the first combustion stage with low NOx burner. Also, unburned carbon content of char collected in this combustion condition was about 1wt%.

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미분탄 연소에서 NOx 저감을 위한 공기다단의 효과 (Effect of Air Staging on NOx Reduction in Pulverized Coal Combustion)

  • 장길홍;장인갑;선칠영;천무관;양관모
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 1999년도 제19회 KOSCO SYMPOSIUM 논문집
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    • pp.149-154
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    • 1999
  • The influences of air staging on NOx emission and burnout of coal flames were investigated using 1MWth combustion test facility. The experiments showed that variation of overall excess air ratio led to a relatively higher NOx emission level for ${\lambda}=1.2.$ When air staging was applied to the combustion air, it was confirmed that a fuel rich primary combustion zone was established and unburned char was burened completely by mixing with the staged air supplied radially around the flame. The NOx emissions were redued by increasing the staged air flow rate, and staging air was suggested to be more than 40% of the total combustion air for the substantial NOx reduction.

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