• 제목/요약/키워드: Furmace temperature

검색결과 3건 처리시간 0.018초

보일러 화로내 연소가스 온도분포 구현에 관한 연구 (A Study on Monitoring of Gas Temperature in Boiler Furnace)

  • 장석원
    • 에너지공학
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    • 제15권3호
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    • pp.188-193
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    • 2006
  • 본 논문은 보일러 화로내 임의의 단면에서 다수의 음속 측정기를 설치하여 음속을 측정하고 평균온도, 최고온도, 최저온도로부터 세분화시킨 격자의 온도를 구하여 온도분포를 구현하는 방법에 대한 이론적 고찰과 적용결과에 관한 것이다. 음속 측정기 간 음속을 측정하여 보일러 내부의 연소가스 온도를 측정하고 화로를 임의의 격자로 구분하여 각 격자에 해당하는 온도값을 주위 격자의 온도구배로부터 유추하여 구한 뒤 모든 격자의 온도값을 완성하여 화로의 온도분포를 구현하는 방법에 대한 이론 및 관련 시스템을 구성하고 실제 현장적용하여 결과를 분석하였다.

Pb Splashing 합금으로부터 Zn정련에 관한 연구 (A Study on the Purification of Zn from Pb Splashing Alloy)

  • 박재욱;김용하;이대열;신형기;김진한;박성수;정원섭
    • 자원리싸이클링
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    • 제6권4호
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    • pp.3-10
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    • 1997
  • Electric are furnace dust (EAF dust) generated in steel production based on scrap melting is contained Zn and Fe about 25 and 30 percent by weight, respectively. From a metallurgical point of view, the dust could be regarded as a raw material for Zn and Fe source. To recover the Zn in the metal from EAF dust, many system are proposed such as Arc Plasma Furmace and Pb splasher method. In this study, to recover high purity Zn from Pb splasing alloy, Zn distillation is carried out at the temperature of 1123, 1173, 1223, 1273 K, the gas flow rate of 2.5, 5.0, 8.0 Ni/min and the distilling time of 10, 30, 60, 90 minutes. The main results obtained from this study are as follows:(1) The amount of evaporated Zn and its evaporating rate increased with increasing temperature, but purity of Zn decreased with increasing temperature. Optimum temperature range was found out to be between 1173∼1223K. (2) The amount of evaporated Zn and evaporation rate increased with increasing gas flow rate at a given temperature and distillation time. Gas flow rate has more influence over the amount of evaporated Zn and evaporation rate with increasing temperature.

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연소로에서 NO 배출 및 연소특성에 대한 수치해석적 연구 (Numerical Simulation of NO Emission and Combustion Characteristics in Furnace)

  • 전영남
    • 한국대기환경학회지
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    • 제12권5호
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    • pp.577-585
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    • 1996
  • A screening study was performed in order to resolve the flow, combustion and emission characteristics of the gas furmace with co-axial diffusion flane burner. A control-valume based finite-difference method with the power-law scheme was employed for discretization. Numerical procedure for the differential equation was used by SIMPLEST to enclosute rapid converge. A k-.varepsilon. model was incorporated for the closure of turbulence. The mass fraction and mixture fraction were calculated by cinserved scalar method. An equilibrium analysis was employed to determine the concentration of radicals in the product stream and conserbation equations were them solved for N amd NO by Zelovich reaction scheme. The method was exercised in a simple one-dimensional case first, to determine the effects of air ratio, temperature and residence time on NO formation and applied to a furnace with co-axial diffusion flame burner.

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