Publication detail

Mixing of flu-gas stream by local acceleration in channel of biomass boiler

POSPÍŠIL, J. LISÝ, M. ŠPILÁČEK, M.

Czech title

Promíchávání proudu spalin místním zrychlením proudu v kanálu biomasového kotle

English title

Mixing of flu-gas stream by local acceleration in channel of biomass boiler

Type

conference paper

Language

en

Original abstract

A built up numerical model represents the afterburner channel in a two-chamber biomass boiler with capacity 200 kW. The boiler is designed for combustion of very moist biomass. The trace gas was used for identification of mixing quality. The trace gas was virtually distributed in separate points in front of the duct. 3D concentration fields in the duct were computed. 2D concentration fields in the cross section led in the end of the duct was used for evaluation of mixing quality. Target of carried out parametrical studies was to find out an optimum shape of an afterburner channel which could provide maximum mixing of combustion air flow with a flow of flue gas and combustible components in volatile matter. Adjustments to the channel shape can help to increase combustion efficiency and decrease emission production (especially CO, particulate matter and organic gaseous compounds). A local acceleration of the flow was used for encouragement of mixing process in the duct. Different size of cross section windows was tested and compared from the view of mixing quality.

Czech abstract

Zastavěné numerický model reprezentuje přídavného spalování kanálu v kotli dvoukomorovým biomasy s kapacitou 200 kW. Kotel je určen pro spalování velmi vlhké biomasy. Trasa plyn byl použit pro identifikaci míchání kvalitu. Trasa plyn byl prakticky distribuován v oddělených bodech v přední části potrubí. Byly vypočítány 3D koncentraci pole v potrubí. 2D koncentrace pole v řezu vedené v konci kanálu byla použita pro vyhodnocení kvality míchání. Cílem prováděných parametrických studií bylo zjistit optimální tvar přídavným spalováním kanálu, který by mohl poskytnout maximální promíchání proudu spalovacího vzduchu s proudem spalin a hořlavých součástí v těkavých látek. Úpravy tvaru kanálu může pomoci zvýšit účinnost spalování a snížení produkce emisí (zejména CO, pevných částic a organické plynných sloučenin). Místní zrychlení průtoku byla použita pro povzbuzení proces míchání v potrubí. Různé velikosti sekce Windows příčných byla testována a porovnány z pohledu míchání kvalitu.

English abstract

A built up numerical model represents the afterburner channel in a two-chamber biomass boiler with capacity 200 kW. The boiler is designed for combustion of very moist biomass. The trace gas was used for identification of mixing quality. The trace gas was virtually distributed in separate points in front of the duct. 3D concentration fields in the duct were computed. 2D concentration fields in the cross section led in the end of the duct was used for evaluation of mixing quality. Target of carried out parametrical studies was to find out an optimum shape of an afterburner channel which could provide maximum mixing of combustion air flow with a flow of flue gas and combustible components in volatile matter. Adjustments to the channel shape can help to increase combustion efficiency and decrease emission production (especially CO, particulate matter and organic gaseous compounds). A local acceleration of the flow was used for encouragement of mixing process in the duct. Different size of cross section windows was tested and compared from the view of mixing quality.

Keywords in Czech

CFD analýza, spaliny, míchání, emise

Keywords in English

CFD analysis, flue-gas, mixing, emissions

RIV year

2015

Released

16.07.2015

Publisher

WSEAS Press

Location

Zakyntos, Řecko

ISBN

978-1-61804-324-5

ISSN

2227-4359

Book

Reacent Advances in Environmental and Earth Sciences and Economic

Volume

38

Number

1

Edition number

38

Pages from–to

345–350

Pages count

6

BIBTEX


@inproceedings{BUT120146,
  author="Jiří {Pospíšil} and Martin {Lisý} and Michal {Špiláček},
  title="Mixing of flu-gas stream by local acceleration in channel of biomass boiler",
  booktitle="Reacent Advances in Environmental and Earth Sciences and Economic",
  year="2015",
  volume="38",
  number="1",
  month="July",
  pages="345--350",
  publisher="WSEAS Press",
  address="Zakyntos, Řecko",
  isbn="978-1-61804-324-5",
  issn="2227-4359"
}