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Adding steam influences the combustion process inside the combustor, which should be taken into account during combustor design.
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As the reason of NOX emission as the primary critical issues for combustion organization scheme during the combustor R&D, the development status of several classical low emission combustors in the word is referred in this paper.
A dynamic simulation model has been developed to describe the behavior of a single fuel particle during its lifetime in a combustor.
The decomposition of sulfates present within bottom ashes produced during operation of a fluidized bed combustor is not complete under continuously reducing conditions (2% CO) at 950∘C.
For example, carbon monoxide is an intermediate species and during combustion in the fluidised bed combustor is likely to be formed within localised regions of the fluidised bed material, where fuel-rich conditions may momentarily occur to prevent complete combustion to carbon dioxide because of insufficient oxygen being present in the local region.
The frequency of thermo-acoustic instabilities may vary during operation of combustors, a feature that must be included in the design of robust acoustic dampers tuned to damp specific unstable modes.
These eight procedures were rigorously followed during each test: 1. Move the combustor to the test area.
In addition, the chapter evaluates burner and combustor design concepts for lower NOx during O2 firing based on recommendations made by CFD modeling.
In these conditions, CaO particles fed into the fluidized bed combustor react with the CO2 generated during biomass combustion, allowing for an effective CO2 capture.
This paper presents an experimental and theoretical investigation of the response of a turbulent premixed flame during thermoacoustic limit cycle in a simple, laboratory combustor.
Planar laser-induced fluorescence (PLIF) imaging of OH was used in the main section of the combustor to examine flameholding and flame propagation during a series of evaluations at conditions simulating Mach-5.5 flight.
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