1994Electronics LettersRequires access

Engine flame imaging using electrical capacitancetomography

R. He, Cheng Xie, R. C. Waterfall, M.S. Beck, Christopher M. Beck

Open publisher page 35 citations

Abstract

First results of engine flame imaging using electrical capacitance tomography (ECT) are described. A six-electrode capacitance sensor fabricated as part of a research engine provides 15 capacitance measurements per scan. A transputer-based ECT system is used to reconstruct the cross-sectional images of flames in the engine from successive sets of capacitance measurements. The prototype system is capable of capturing flame images at 315 frames per second and has potential for monitoring engine performance.

About this research paper

What this paper is about

First results of engine flame imaging using electrical capacitance tomography (ECT) are described. A six-electrode capacitance sensor fabricated as part of a research engine provides 15 capacitance measurements per scan. A transputer-based ECT system is used to reconstruct the cross-sectional images of flames in the engine from successive sets of capacitance measurements. The prototype system is capable of capturing flame images at 315 frames per second and has potential for monitoring engine performance.

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OpenAlex reports 35 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

First results of engine flame imaging using electrical capacitance tomography (ECT) are described. A six-electrode capacitance sensor fabricated as part of a research engine provides 15 capacitance measurements per scan. A transputer-based ECT system is used to reconstruct the cross-sectional images of flames in the engine from successive sets of capacitance measurements. The prototype system is capable of capturing flame images at 315 frames per second and has potential for monitoring engine performance.

Key concepts: Electrical capacitance tomography, Capacitance, Engine coolant temperature sensor, Materials science, Capacitance probe, Electrode, Capacitive sensing, Tomography

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