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Catalytically stabilized combustion of lean methane-air-mixtures: a numerical model

Abstract

The catalytically stabilized combustion of lean methane/air mixtures has been studied numerically under conditions closely resembling the ones prevailing in technical devices. A detailed numerical model has been developed for a laminar, stationary, 2-D channel flow with full heterogeneous and homogeneous reaction mechanisms. The computations provide direct information on the coupling between heterogeneous-homogeneous combustion and in particular on the means of homogeneous ignitions and stabilization. (author) 4 figs., 3 refs.
Authors:
Dogwiler, U; Benz, P; Mantharas, I [1] 
  1. Paul Scherrer Inst. (PSI), Villigen (Switzerland)
Publication Date:
Jun 01, 1997
Product Type:
Miscellaneous
Report Number:
ETDE/CH-mf-97750556
Reference Number:
SCA: 034000; PA: CH-97:0E0215; EDB-97:090279; SN: 97001800486
Resource Relation:
Other Information: PBD: 1997; Related Information: Is Part Of Paul Scherrer Institut annual report 1996. Annex V: PSI general energy technology newsletter 1996; Daum, C.; Leuenberger, J. [eds.]; PB: 125 p.
Subject:
03 NATURAL GAS; METHANE; COMBUSTION; CATALYTIC COMBUSTORS; AIR; LAMINAR FLOW; MATHEMATICAL MODELS; THEORETICAL DATA; EXPERIMENTAL DATA
OSTI ID:
492046
Country of Origin:
Switzerland
Language:
English
Other Identifying Numbers:
Other: ON: DE97750556; TRN: CH97E0215
Availability:
OSTI as DE97750556
Submitting Site:
CH
Size:
pp. 60-61
Announcement Date:
Jul 24, 1997

Citation Formats

Dogwiler, U, Benz, P, and Mantharas, I. Catalytically stabilized combustion of lean methane-air-mixtures: a numerical model. Switzerland: N. p., 1997. Web.
Dogwiler, U, Benz, P, & Mantharas, I. Catalytically stabilized combustion of lean methane-air-mixtures: a numerical model. Switzerland.
Dogwiler, U, Benz, P, and Mantharas, I. 1997. "Catalytically stabilized combustion of lean methane-air-mixtures: a numerical model." Switzerland.
@misc{etde_492046,
title = {Catalytically stabilized combustion of lean methane-air-mixtures: a numerical model}
author = {Dogwiler, U, Benz, P, and Mantharas, I}
abstractNote = {The catalytically stabilized combustion of lean methane/air mixtures has been studied numerically under conditions closely resembling the ones prevailing in technical devices. A detailed numerical model has been developed for a laminar, stationary, 2-D channel flow with full heterogeneous and homogeneous reaction mechanisms. The computations provide direct information on the coupling between heterogeneous-homogeneous combustion and in particular on the means of homogeneous ignitions and stabilization. (author) 4 figs., 3 refs.}
place = {Switzerland}
year = {1997}
month = {Jun}
}