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Information Journal Paper

Title

PRODUCTION AND EMMISSION OF POLLUTANTS IN LIQUID FUEL FIRED TUNNEL FURNACES

Pages

  71-84

Abstract

 This paper presents and analyses production and emission of POLLUTANTS CO, NOx and soot from experimental and CFD work undertaken on a 2 MW cylindrical furnace with changeable length. The experimental measurements are carried out using chemiluminescence and infra-red techniques to measure NOx and CO respectively. Soot mass fraction is measured gravimetrically. The predicted radial variations of temperature and pollutants at two axial cross sections and the effect of furnace length on pollutant emissions compare well with the experimental measurements. The results show that an increase in length of furnace decreases CO and soot mass fractions, but increases NO concentration up to a maximum and then decreases slowly. The results also show that the centerline profiles of pollutant concentrations reach a maximum The location of the maximum centerline CO coincides with the maximum soot location, while the location of NO peak is at more axial distance from the nozzle.

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    APA: Copy

    MOGHIMAN, M.. (2001). PRODUCTION AND EMMISSION OF POLLUTANTS IN LIQUID FUEL FIRED TUNNEL FURNACES. JOURNAL OF SCHOOL OF ENGINEERING, 13(2), 71-84. SID. https://sid.ir/paper/22572/en

    Vancouver: Copy

    MOGHIMAN M.. PRODUCTION AND EMMISSION OF POLLUTANTS IN LIQUID FUEL FIRED TUNNEL FURNACES. JOURNAL OF SCHOOL OF ENGINEERING[Internet]. 2001;13(2):71-84. Available from: https://sid.ir/paper/22572/en

    IEEE: Copy

    M. MOGHIMAN, “PRODUCTION AND EMMISSION OF POLLUTANTS IN LIQUID FUEL FIRED TUNNEL FURNACES,” JOURNAL OF SCHOOL OF ENGINEERING, vol. 13, no. 2, pp. 71–84, 2001, [Online]. Available: https://sid.ir/paper/22572/en

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