Ultra-low NOx Burner Arrangements in Furnace Revamps: Utilization of CFD Modeling to Prevent and Mitigate Adverse Furnace Flow Patterns | AIChE

Ultra-low NOx Burner Arrangements in Furnace Revamps: Utilization of CFD Modeling to Prevent and Mitigate Adverse Furnace Flow Patterns

Authors 

Erazo, J. - Presenter, John Zink Co.
Chen, S. - Presenter, John Zink Co.
Hendrix, B. - Presenter, John Zink Co.
Wendel, K. - Presenter, John Zink Co.

As NOx emission regulation continues to become more stringent, the need to revamp existing furnaces with Ultra-low NOx burner technology will continue to rise. Ultra-low NOx emissions from process burners are typically achieved by combining staged combustion with internal flue gas recirculation. As a result, the flames from an Ultra-low NOx burner are longer and exhibit lower peak flame temperatures compared to the flames from a conventional type of burner. These characteristics make the performance of Ultra-low NOx burners more susceptible to adverse furnace flow patterns than conventional burners. In order to mitigate the effects of adverse furnace flow patterns, tools such as computational fluid dynamics (CFD) can be used to reveal the dynamics inside of a particular furnace. This knowledge can then be used to optimize the burner design. The John Zink Company frequently uses CFD modeling in this fashion. Several successful case studies are presented.

Checkout

This paper has an Extended Abstract file available; you must purchase the conference proceedings to access it.

Checkout

Do you already own this?

Pricing

Individuals

AIChE Pro Members $225.00
AIChE Graduate Student Members $225.00
AIChE Undergraduate Student Members $225.00
AIChE Explorer Members $275.00
Non-Members $275.00