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Journal of Combustion
Article . 2012 . Peer-reviewed
License: CC BY
Data sources: Crossref
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Journal of Combustion
Article
License: CC BY
Data sources: UnpayWall
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Journal of Combustion
Article . 2012
Data sources: DOAJ
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Extending Lean Operating Limit and Reducing Emissions of Methane Spark-Ignited Engines Using a Microwave-Assisted Spark Plug

Authors: orcid Anthony DeFilippo;
Anthony DeFilippo
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Anthony DeFilippo in OpenAIRE
orcid Yuji Ikeda;
Yuji Ikeda
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Yuji Ikeda in OpenAIRE
Samveg Saxena; orcid Vi H. Rapp;
Vi H. Rapp
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Vi H. Rapp in OpenAIRE
Ahsa Moon; Atsushi Nishiyama; orcid Robert W. Dibble;
Robert W. Dibble
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Robert W. Dibble in OpenAIRE
+1 Authors

Extending Lean Operating Limit and Reducing Emissions of Methane Spark-Ignited Engines Using a Microwave-Assisted Spark Plug

Abstract

A microwave-assisted spark plug was used to extend the lean operating limit (lean limit) and reduce emissions of an engine burning methane-air. In-cylinder pressure data were collected at normalized air-fuel ratios ofλ=1.46,λ=1.51,λ=1.57,λ=1.68, andλ=1.75. For eachλ, microwave energy (power supplied to the magnetron per engine cycle) was varied from 0 mJ (spark discharge alone) to 1600 mJ. At lean conditions, the results showed adding microwave energy to a standard spark plug discharge increased the number of complete combustion cycles, improving engine stability as compared to spark-only operation. Addition of microwave energy also increased the indicated thermal efficiency by 4% atλ=1.68. Atλ=1.75, the spark discharge alone was unable to consistently ignite the air-fuel mixture, resulting in frequent misfires. Although microwave energy produced more consistent ignition than spark discharge alone atλ=1.75, 59% of the cycles only partially burned. Overall, the microwave-assisted spark plug increased engine performance under lean operating conditions(λ=1.68)but did not affect operation at conditions closer to stoichiometric.

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Keywords

QC251-338.5, Heat

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