Image from Google Jackets

Flow-field deflection within a cold small-scale model for a down-fired 300 MWe utility boiler at asymmetric staged-air distribution

By: Publication details: ene./feb. 2011Description: 11 p. ; 86-96 In: Energy & fuels 25Summary: Transcripción del resumen del autor. Deflected flow fields and large combustion differences between zones near front and rear walls have been found in Mitsui Babcock Energy Limited (MBEL) down-fired pulverized-coal boilers under a symmetric air distribution. To eliminate or mitigate the flow-field deflection and achieve relatively symmetric combustion in these boilers, the distribution of the staged air between the front and rear walls was adjusted to construct an asymmetric staged-air distribution. Cold airflow experiments over a wide range of asymmetric staged-air distributions [viz., differences in the ratio of staged-air mass flux between the front and rear walls (Rd) of -50, -25, 0, 13, 25, and 50%] were conducted within a small-scale furnace of a MBEL down-fired pulverized-coal 300 MWe utility boiler. At settings of Rd = -50, -25, 0, and 13%, there was a deflected flow field in the lower furnace, and this airflow was directed upward later near the front wall than near the rear wall. With Rd increasing from -50 to 13%, the flow-field deflection weakened. For settings of Rd = 25 and 50%, there was another flow-field deflection, with the downward airflow reversing direction earlier near the front wall than near the rear wall. With an increase in Rd from 25 to 50%, the flow-field deflection became more pronounced. To establish a flow field along with an appropriate airflow reach for more economical operation, an optimal setting of Rd = 13% was found for the staged-air distribution between the front and rear walls.
Item type: Artículo de Revista
Holdings
Current library Status Barcode
Biblioteca Alejandro Angel Bulgheroni Not for loan 200052391

Transcripción del resumen del autor. Deflected flow fields and large combustion differences between zones near front and rear walls have been found in Mitsui Babcock Energy Limited (MBEL) down-fired pulverized-coal boilers under a symmetric air distribution. To eliminate or mitigate the flow-field deflection and achieve relatively symmetric combustion in these boilers, the distribution of the staged air between the front and rear walls was adjusted to construct an asymmetric staged-air distribution. Cold airflow experiments over a wide range of asymmetric staged-air distributions [viz., differences in the ratio of staged-air mass flux between the front and rear walls (Rd) of -50, -25, 0, 13, 25, and 50%] were conducted within a small-scale furnace of a MBEL down-fired pulverized-coal 300 MWe utility boiler. At settings of Rd = -50, -25, 0, and 13%, there was a deflected flow field in the lower furnace, and this airflow was directed upward later near the front wall than near the rear wall. With Rd increasing from -50 to 13%, the flow-field deflection weakened. For settings of Rd = 25 and 50%, there was another flow-field deflection, with the downward airflow reversing direction earlier near the front wall than near the rear wall. With an increase in Rd from 25 to 50%, the flow-field deflection became more pronounced. To establish a flow field along with an appropriate airflow reach for more economical operation, an optimal setting of Rd = 13% was found for the staged-air distribution between the front and rear walls.

1



Instituto Argentino del Petróleo y del Gas
Maipú 639 (C1006ACG) – Buenos Aires – Argentina
Tel: (54 11) 5277 IAPG (4274)
Lu - Vie 11 a 17 hs
Mail: biblio@iapg.org.ar


Copyright © 2026, Instituto Argentino del Petróleo y del Gas, todos los derechos reservados.

Protección de datos personales