http://www.cnr.it/ontology/cnr/individuo/prodotto/ID263066
Modeling and experiments (in a cold flow model reactor) to study char-wall interaction and segregation phenomena during slagging entrained-flow coal gasification (Contributo in atti di convegno)
- Type
- Label
- Modeling and experiments (in a cold flow model reactor) to study char-wall interaction and segregation phenomena during slagging entrained-flow coal gasification (Contributo in atti di convegno) (literal)
- Anno
- 2013-01-01T00:00:00+01:00 (literal)
- Alternative label
M. Troiano, A. Aprovitola, F. Ambrosino, F. S. Marra, P. Salatino, F. Montagnaro, R. Solimene (2013)
Modeling and experiments (in a cold flow model reactor) to study char-wall interaction and segregation phenomena during slagging entrained-flow coal gasification
in 14th International Conference on Coal Science & Technology, State College, Pennsylvania, USA, September 29-October 3
(literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
- M. Troiano, A. Aprovitola, F. Ambrosino, F. S. Marra, P. Salatino, F. Montagnaro, R. Solimene (literal)
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- Pagina fine
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#titoloVolume
- Proceedings of the 14th International Conference on Coal Science & Technology (literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#pagineTotali
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#affiliazioni
- Dipartimento di Ingegneria Chimica, dei Materiali e della Produzione Industriale, Università degli Studi di Napoli Federico II, Piazzale Vincenzo Tecchio 80, 80125 Napoli, Italia;
Istituto di Calcolo e Reti ad Alte Prestazioni,Consiglio Nazionale delle Ricerche, Via Pietro Castellino 111, 80131 Napoli, Italia;
ENEA, CR Portici, Piazzale Enrico Fermi 1, 80055 Portici, Italia;
stituto di Ricerche sulla Combustione, Consiglio Nazionale delle Ricerche,Piazzale Vincenzo Tecchio 80, 80125 Napoli, Italia;
Dipartimento di Scienze Chimiche, Università degli Studi di Napoli Federico II,Complesso Universitario di Monte Sant'Angelo, 80126 Napoli, Italia (literal)
- Titolo
- Modeling and experiments (in a cold flow model reactor) to study char-wall interaction and segregation phenomena during slagging entrained-flow coal gasification (literal)
- Abstract
- Aim of this communication is to report on the recent findings by this research group on modeling and
experiments, the latter carried out in a cold flow model reactor, to study char-wall interaction and
segregation phenomena during slagging entrained-flow coal gasification. This work illustrates how
different modeling approaches can be jointly used to understand segregation patterns of char particles.
RANS-based simulations of the full-scale geometry with coal particle injection and tracking aimed to
obtain the behaviour of the flow field and particle trajectories. Simulations enabled to estimate the effect
of swirl and tangential flow on the bulk-to-wall char particle deposition rate. Then, RANS results were
adopted in a more detailed model based on the solution of the filtered Navier-Stokes equations, where a
turbulence LES approach for the Eulerian gas phase was applied. This enabled the assessment of the char
particle deposition rates and the nature of char-slag interaction. This paper also reports on preliminary
results of an experimental investigation aimed at the development of a phenomenological model of the
fate of coal/ash particles. The study specifically addresses the interaction between the lean-dispersed
particle phase and the reactor walls, and the establishment of a particle segregated phase in the near-wall
region of the gasifier. A lab-scale cold flow reactor has been designed and set up, where molten wax is
air-atomized into a mainstream of air to simulate the fate of char/ash particles in a real hot environment.
Characterization of the hydrodynamics of the lean-dispersed phase, of its interaction with the wall, of the
build-up of the liquid wall layer has been accomplished with a focus on the 'sticky wall-sticky particle'
subregime. The particle deposition rate at the wall and the wax droplets partitioning between the leandispersed
phase and the wall liquid layer have been assessed under a range of operating conditions. (literal)
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