Three-Dimensional Chemiluminescence Imaging of Unforced and Forced Swirl-Stabilized Flames in a Lean Premixed Multi-Nozzle Can Combustor

Author:

Samarasinghe Janith1,Peluso Stephen1,Szedlmayer Michael1,De Rosa Alexander1,Quay Bryan1,Santavicca Domenic2

Affiliation:

1. e-mail:

2. e-mail:  Center for Advanced Power Generation, The Pennsylvania State University, University Park, PA 16802

Abstract

A tomographic image reconstruction technique has been developed to measure the 3D distribution of CH* chemiluminescence of unforced and forced turbulent premixed flames. Measurements are obtained in a lean premixed, swirl-stabilized multi-nozzle can combustor. Line-of-sight images are acquired at equally spaced angle increments using a single intensified charge-coupled device camera. 3D images of the flames are reconstructed by applying a filtered back projection algorithm to the acquired line-of-sight images. Methods of viewing 3D images to characterize the structure, dynamics, interaction and spatial differences of multi-nozzle flames are presented. Accuracy of the reconstruction technique is demonstrated by comparing reconstructed line-of-sight images to measured line-of-sight downstream-view images of unforced flames. The effect of the number of acquired projection images on the quality of the reconstruction is assessed. The reconstructed 3D images of the unforced multi-nozzle flames show the structure of individual flames as well as the interaction regions between flames. Forced flame images are obtained by phase-synchronizing the camera to the forcing cycle. The resulting 3D reconstructions of forced flames reveal the spatial and temporal response of the multi-nozzle flame structure to imposed velocity fluctuations, information which is essential to identifying the underlying mechanisms responsible for this behavior.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference35 articles.

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3. Radon, J., 1917, “Über die Bestimmung von Funktionen Durch ihre Integralwerte Längs Gewisser Mannigfaltigkeiten,” Berichte über die Verhandlungen der Sächsische Akademie der Wissenschaften (Reports on the proceedings of the Saxony Academy of Science), pp. 262–277.

4. The Radon Transform on Euclidean Space;Commun. Pure Appl. Math.,1966

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