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Gollner Fire Research Group


The Gollner Fire Research Group, led by Assistant Professor Michael J. Gollner is broadly interested in fire science problems, utilizing experiments and combustion and fluid dynamics theory to solve problems related to fire spread in the wildland and built environments, material flammability, sustainable/green building fire safety and smoke and toxic product transport.
Please note our group recently moved from the University of Maryland to the University of California, Berkeley. A new website will be coming soon. Until then, you can explore what is already posted and updated contact information below:
Contact Michael:
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Michael J. Gollner
Assistant Professor and Deb Faculty Fellow
Department of Mechanical Engineering
University of California, Berkeley
6135 Etcheverry Hall
Berkeley, CA  94720-1740 
             
Office: (510)642-3371
Email: mgollner@berkeley.edu
I still maintain my affiliation with the University of Maryland:
Visiting Associate Professor
Department of Fire Protection Engineering
University of Maryland, College Park

Curriculum Vitae
Department Webpage
ResearchGate
Google Scholar Citations[/wpcol_1half_end]

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Recent Posts

  • Students present at Stanford Combustion conference
  • Professor Gollner testifies to Congress
  • Christina Liveretou awarded Onassis Foundation Scholarship
  • Congratulations to Xingyu Ren on the SFPE Student Scholar Award!
  • Prof. Gollner Presents at 2021 UC Wildfire Symposium Series

Michael GollnerFollow5,9772,358

Michael Gollner
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27 Mar

Smoke flow produced by smouldering combustion

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Retweet on TwitterMichael Gollner Retweeted
24 Mar

Units being released.

Sounds like early indications show a lithium ion battery responsible. (Scooter battery most likely)

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22 Mar

Beautiful work by ⁦@Xiaoyu_Ju⁩ & Yuji Nakamura: New Technique Generates Non-Flickering Flames at Normal Gravity and Atmospheric Pressure. I’ve watched this flickering flame development for years and the results have been fascinating

APS Physics

New Technique Generates Non-Flickering Flames at Normal Gravity and Atmospheric Pressure

Flickering flames are more unstable. Researchers have come up with a novel way to keep them still.

www.aps.org

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