Most tornado related deaths occur in the southeastern United States, not Tornado Alley. This is due, in part, to the hilly terrain that limits the use of weather radar in this region. Deaths are likely to rise since there is evidence indicating that Tornado Alley is shifting eastward. This has motivated a return to considering infrasound (sound below human hearing) from tornadoes as a potential means of improving warnings in hilly terrain. Current warnings do not make use of these sounds due to the lack of understanding of the physical mechanism responsible for its production. This paper presents recent observations of tornadoes and a funnel cloud from fixed and mobile infrasound sensors. Then a review of the potential mechanisms for the infrasound is presented and discussed in light of the observations.
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8 May 2022
184th Meeting of the Acoustical Society of America
8–12 May 2023
Chicago, Illinois
Computational Acoustics: Paper 2pCA5
September 14 2023
Observations and potential mechanisms for tornado infrasound
Brian R. Elbing
;
Brian R. Elbing
1
Department of Mechanical & Aerospace Engineering, Oklahoma State University Stillwater
, Stillwater, Oklahoma, 74078, USA
; elbing@okstate.edu; trevor.wilson@okstate.edu; cepetri@okstate.edu; realk@okstate.edu; tswaim@okstate.edu; bblinds@sandia.gov
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Trevor C. Wilson;
Trevor C. Wilson
1
Department of Mechanical & Aerospace Engineering, Oklahoma State University Stillwater
, Stillwater, Oklahoma, 74078, USA
; elbing@okstate.edu; trevor.wilson@okstate.edu; cepetri@okstate.edu; realk@okstate.edu; tswaim@okstate.edu; bblinds@sandia.gov
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Christopher E. Petrin;
Christopher E. Petrin
1
Department of Mechanical & Aerospace Engineering, Oklahoma State University Stillwater
, Stillwater, Oklahoma, 74078, USA
; elbing@okstate.edu; trevor.wilson@okstate.edu; cepetri@okstate.edu; realk@okstate.edu; tswaim@okstate.edu; bblinds@sandia.gov
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Real J. KC;
Real J. KC
1
Department of Mechanical & Aerospace Engineering, Oklahoma State University Stillwater
, Stillwater, Oklahoma, 74078, USA
; elbing@okstate.edu; trevor.wilson@okstate.edu; cepetri@okstate.edu; realk@okstate.edu; tswaim@okstate.edu; bblinds@sandia.gov
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Taylor Swaim;
Taylor Swaim
1
Department of Mechanical & Aerospace Engineering, Oklahoma State University Stillwater
, Stillwater, Oklahoma, 74078, USA
; elbing@okstate.edu; trevor.wilson@okstate.edu; cepetri@okstate.edu; realk@okstate.edu; tswaim@okstate.edu; bblinds@sandia.gov
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Bryce Lindsey
Bryce Lindsey
1
Department of Mechanical & Aerospace Engineering, Oklahoma State University Stillwater
, Stillwater, Oklahoma, 74078, USA
; elbing@okstate.edu; trevor.wilson@okstate.edu; cepetri@okstate.edu; realk@okstate.edu; tswaim@okstate.edu; bblinds@sandia.gov
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Proc. Mtgs. Acoust. 51, 022001 (2023)
Article history
Received:
June 14 2023
Accepted:
August 30 2023
Connected Content
This is a companion to:
Tornado infrasound: Observations and potential mechanisms
Citation
Brian R. Elbing, Trevor C. Wilson, Christopher E. Petrin, Real J. KC, Taylor Swaim, Bryce Lindsey; Observations and potential mechanisms for tornado infrasound. Proc. Mtgs. Acoust. 8 May 2023; 51 (1): 022001. https://doi.org/10.1121/2.0001784
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