دورية أكاديمية

NUMERICAL SIMULATION OF NOx EMISSION CHARACTERISTICS DURING COMBUSTION IN 350 MW SUPERCRITICAL COGENERATION TANGENTIALLY BOILER.

التفاصيل البيبلوغرافية
العنوان: NUMERICAL SIMULATION OF NOx EMISSION CHARACTERISTICS DURING COMBUSTION IN 350 MW SUPERCRITICAL COGENERATION TANGENTIALLY BOILER.
المؤلفون: Wei-Shu WANG, Zhi-Hao HUANG, Miao TIAN, Ji-Hong WANG, Shan-Shan SHANGGUAN, Ming-Yu YAO
المصدر: Thermal Science; 2020, Vol. 24 Issue 5A, p2717-2728, 12p
مصطلحات موضوعية: COAL combustion, GAS furnaces, FURNACES, PULVERIZED coal, COGENERATION of electric power & heat, BOILERS, TEMPERATURE distribution, COMBUSTION
مستخلص: In light of a 350 MW supercritical cogeneration tangential boiler, the combustion and the NOx release mechanism in the furnace were numerically simulated. The combustion characteristics were analyzed, and the influencing factors, such as the pulverized coal concentration, the velocity of separated over-fire air and the boiler load, on NOx release in the furnace were also systematically studied. The results show that the central air-flow in the furnace rises spirally, and an inverted V-type temperature distribution is formed. The generation of NOx can be effectively restrained by increasing the concentration of pulverized coal properly. Compared with the conventional concentration, the concentration of NOx at the furnace exit can be reduced by 29.63% by taking high pulverized coal concentration. The concentration of NOx at the furnace exit can be drastically reduced by increasing the velocity of separated over-fire air. When decreasing boiler load, the concentration of NOx at furnace exit declines at first and then increases. [ABSTRACT FROM AUTHOR]
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قاعدة البيانات: Complementary Index
الوصف
تدمد:03549836
DOI:10.2298/TSCI191010006W