Chemical equilibrium analysis and CFD simulation of coal combustion and NOx formation


Autoria(s): Zhang Y; Zhou LX; Wei XL(魏小林); Sheng HZ(盛宏至)
Data(s)

10/09/2004

Resumo

A full two-fluid model of reacting gas-particle flows with an algebraic unified second-order moment (AUSM) turbulence-chemistry model is used to simulate Beijing coal combustion and NOx formation. The sub-models are the k-epsilon-kp two-phase turbulence model, the EBU-Arrhenius volatile and CO combustion model, the six-flux radiation model, coal devolatilization model and char combustion model. The blocking effect on NOx formation is discussed. In addition, the chemical equilibrium analysis is used to predict NOx concentration at different temperature. Results of CID simulation and chemical equilibrium analysis show that, optimizing air dynamic parameters can delay the NOx formation and decrease NOx emission, but it is effective only in a restricted range. In order to decrease NOx emission near to zero, the re-burning or other chemical methods must be used.

Identificador

http://dspace.imech.ac.cn/handle/311007/13804

http://www.irgrid.ac.cn/handle/1471x/6618

Idioma(s)

英语

Fonte

MULTIPHASE, NON-NEWTONIAN AND REACTING FLOWS,Proceedings of the 2nd International Symposium on Multiphase, Non-Newtonian and Reacting Flows, SEP 10-12, 2004 Hangzhou, PEOPLES R CHINA, v.2,p.170-173

Palavras-Chave #力学
Tipo

会议论文