Lean premixed combustion is widely used in power generation due to low nitric oxide emissions. Recent interest in syngas requires a better understanding of the role of hydrogen addition on the combustion process. In the present study, the extinction process of hydrogen enriched premixed flames near lean blow out (LBO) in a swirl-stabilized combustor has been examined in both unconfined and confined configurations. High speed images of the flame chemiluminescence are recorded, and a proper orthogonal decomposition (POD) procedure is used to extract the dominant flame dynamics during the LBO process. By examining the POD modes, the spectral information and the statistical properties of POD coefficients, the effect of hydrogen addition on the LBO processes are analyzed and described in the paper. Results show that in unconfined flames, the shear layer mode along with flame rotation with local quenching and reignition is dominant in the methane-only case. For the open hydrogen enriched flames, the extinction times are longer and are linked to the lower minimum ignition energy for hydrogen that facilitates reignition events. In confined methane flames, a conical flame is observed and the POD mode representing the burning in the central recirculation zone appears to be dominant. For the 60% hydrogen enriched flame, a columnar burning pattern is observed and the fluctuation energies are evenly spread across several POD modes making this structure more prone to external disturbances and shorter extinction times.
Skip Nav Destination
Article navigation
Research-Article
Flame Dynamics With Hydrogen Addition at Lean Blowout Limits
Shengrong Zhu,
Shengrong Zhu
Turbine Innovation and Energy
Research (TIER) Center,
Department of Mechanical Engineering,
e-mail: shengrong11@gmail.com
Research (TIER) Center,
Department of Mechanical Engineering,
Louisiana State University
,Baton Rouge, LA 70803
e-mail: shengrong11@gmail.com
Search for other works by this author on:
Sumanta Acharya
Sumanta Acharya
1
Professor
Turbine Innovation and Energy
Research (TIER) Center,
Department of Mechanical Engineering,
e-mail: acharya@me.lsu.edu
Turbine Innovation and Energy
Research (TIER) Center,
Department of Mechanical Engineering,
Louisiana State University
,Baton Rouge, LA 70803
e-mail: acharya@me.lsu.edu
1Corresponding author.
Search for other works by this author on:
Shengrong Zhu
Turbine Innovation and Energy
Research (TIER) Center,
Department of Mechanical Engineering,
e-mail: shengrong11@gmail.com
Research (TIER) Center,
Department of Mechanical Engineering,
Louisiana State University
,Baton Rouge, LA 70803
e-mail: shengrong11@gmail.com
Sumanta Acharya
Professor
Turbine Innovation and Energy
Research (TIER) Center,
Department of Mechanical Engineering,
e-mail: acharya@me.lsu.edu
Turbine Innovation and Energy
Research (TIER) Center,
Department of Mechanical Engineering,
Louisiana State University
,Baton Rouge, LA 70803
e-mail: acharya@me.lsu.edu
1Corresponding author.
Contributed by the Coal, Biomass and Alternate Fuels Committee of ASME for publication in the JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER. Manuscript received October 9, 2013; final manuscript received November 27, 2013; published online January 9, 2014. Editor: David Wisler.
J. Eng. Gas Turbines Power. May 2014, 136(5): 051506 (12 pages)
Published Online: January 9, 2014
Article history
Received:
October 9, 2013
Revision Received:
November 27, 2013
Citation
Zhu, S., and Acharya, S. (January 9, 2014). "Flame Dynamics With Hydrogen Addition at Lean Blowout Limits." ASME. J. Eng. Gas Turbines Power. May 2014; 136(5): 051506. https://doi.org/10.1115/1.4026321
Download citation file:
Get Email Alerts
Cited By
Inter-Stage Pressure Drop of Multi-Stage Brush Seal with Differentiated Structure
J. Eng. Gas Turbines Power
Mixture Distribution in Spark Ignited Port Fuel Injection Engines: A Review.
J. Eng. Gas Turbines Power
Experimental Investigation of Combustion Dynamics in a High-Pressure Liquid-fueled Swirl Combustor
J. Eng. Gas Turbines Power
Related Articles
Dynamics of Premixed H2/CH4 Flames Under Near Blowoff Conditions
J. Eng. Gas Turbines Power (November,2010)
An Experimental Study of Lean Blowout With Hydrogen-Enriched Fuels
J. Eng. Gas Turbines Power (April,2012)
Experiments on Flame Flashback in a Quasi-2D Turbulent Wall Boundary Layer for Premixed Methane-Hydrogen-Air Mixtures
J. Eng. Gas Turbines Power (January,2011)
An Improved Core Reaction Mechanism for Saturated C 0 -C 4 Fuels
J. Eng. Gas Turbines Power (February,2012)
Related Chapters
Introduction
Nanomaterials in Glucose Sensing: Biomedical & Nanomedical Technologies - Concise Monographs
A High Temperature Tubular Solar Receiver for Production of Hydrogen and Carbon Nanoparticles from Methane Cracking
Inaugural US-EU-China Thermophysics Conference-Renewable Energy 2009 (UECTC 2009 Proceedings)
Analysis of the Coal-Bed Methane Mass Development
Geological Engineering: Proceedings of the 1 st International Conference (ICGE 2007)