Waves: Internal and Interfacial
ORAL · T44 · ID: 1761126
Presentations
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The Spatial Energy Transfer Through Parametric Subharmonic Instability of Internal Wave Beams at High Reynold's Number
ORAL
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Presenters
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Zachary Taebel
- University of North Carolina at Chapel Hill
Authors
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Zachary Taebel
- University of North Carolina at Chapel Hill
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Alberto Scotti
- University of North Carolina at Chapel Hill
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Dylan D Odessa
- Wake Forest University
- University of North Carolina at Chapel Hill
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Pierre-Yves Passaggia
- Université d'Orléans
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Development and evolution of turbulence in convectively breaking internal solitary waves of depression shoaling over gentle slopes in the South China Sea.
ORAL
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Publication: Planned for Journal of Physical Oceanography 2023
Presenters
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Tilemachos Bolioudakis
- Cornell University
Authors
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Tilemachos Bolioudakis
- Cornell University
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Peter J Diamessis
- Cornell University
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Theodoros Diamantopoulos
- Cornell University
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Ren-Chieh Lien
- University of Washington
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Kevin G Lamb
- University of Waterloo
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Gustavo A Rivera-Rosario
- Cornell University
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Greg N Thomsen
- Wandering Wakhs Research
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Spectral-element-based simulation of a model internal swash zone
ORAL
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Presenters
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Pierre Lloret
- Cornell University
Authors
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Pierre Lloret
- Cornell University
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Peter J Diamessis
- Cornell University
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Marek Stastna
- University of Waterloo
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Greg N Thomsen
- Wandering Wakhs Research
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Small-scale instabilities in a plane inertial wave
ORAL
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Publication: Short-wavelength instabilities in a finite-amplitude plane inertial wave
Presenters
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Abhiram D S
- Indian Institute of Technology Madras
Authors
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Abhiram D S
- Indian Institute of Technology Madras
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Manikandan Mathur
- Geophysical Flows Lab, Department of Aerospace Engineering, Indian Institute of Technology Madras
- Geophysical Flows lab, Department of Aerospace Engineering, Indian Institute of Technology Madras
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Stability of internal gravity wave modes: from triad resonance to broadband instability
ORAL
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Publication: Stability of internal gravity wave modes: from triad resonance to broadband instability, JFM, vol 961, A22 (2023)
Presenters
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Christos Kakoutas
- MIT
Authors
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Triantaphyllos Akylas
- MIT
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Christos Kakoutas
- MIT
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Dynamics of Waves in Hydrogels
ORAL
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Publication: P. M. Comiskey, A. L. Yarin, S. Kim, D. Attinger. Prediction of blood backspatter from a gunshot in bloodstain pattern analysis. Physical Rev. Fluids v. 1, 043201 (2016).
A. Kolbasov, P.M. Comiskey, R. P. Sahu, S. Sinha-Ray, A. L. Yarin, B. S. Sikarwar, S. Kim, T.Z. Jubery, D. Attinger. Blood rheology in shear and uniaxial elongation. Rheologica Acta v. 55, 901-908 (2016).
P.M. Comiskey, A.L. Yarin, D. Attinger. High-speed video analysis of forward and backward spattered blood droplets. Forensic Science International, 276, 134-141 (2017).
P.M. Comiskey, A.L. Yarin, D. Attinger. Hydrodynamics of back spatter by blunt bullet gunshot with a link to bloodstain pattern analysis. Phys. Rev. Fluids 073906 (2017).
P.M. Comiskey, A.L. Yarin. Friction coefficient of an intact free liquid jet moving in air. Experiments in Fluids 59:65 (2018).
P.M. Comiskey, A.L. Yarin, D. Attinger. Theoretical and experimental investigation of forward spatter of blood from a gunshot. Physical Review Fluids 3, 063901 (2018).
D. Attinger, Y. Liu, R. Faflak, Y. Rao, B.A. Struttman, K. De Brabanter. P.M. Comiskey, A.L. Yarin. A data set of bloodstain patterns for teaching and research in bloodstain pattern analysis: gunshot backspatters. Data inBrief 22, 269–278 (2019).
D. Attinger, K. P.M. Comiskey, A.L. Yarin, K. de Brabanter. Determining the region of origin of blood spatters using probabilities and fluid dynamics. Forensic Science International 298, 323-331 (2019).
P.M. Comiskey, D. Attinger, A.L. Yarin. Implications of two backward blood spatter models based on fluid dynamics for bloodstain pattern analysis. Forensic Science International, 301, 299–305 (2019).
P.M. Comiskey, A.L. Yarin, D. Attinger. Hydrodynamics of forward blood spattering caused by a bullet of general shape. Phys. Fluids 31, 084103 (2019).
P.M. Comiskey, A.L. Yarin. Self-similar turbulent vortex rings: Interaction of propellant gases with blood backspatter and the transport of gunshot residue. J. Fluid Mech. 876, 859-880 (2019).
G. Li, N. Sliefert, J.B. Michael, A.L. Yarin. Blood backspatter interaction with propellant gases. Phys. Fluids 33, 043318 (2021).
N.Sliefert, G. Li, J.B. Michael, A.L. Yarin. Experimental and numerical study of blood backspatter interaction with firearm propellant gases. Phys. Fluids 33, 043319 (2021).
K. Chen, J. Michael, A.L. Yarin. Effect of secondary atomization on blood backspatter affected by muzzle gases. Phys. Fluids 35, 044115 (2023).Presenters
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Valentina Kosmerl
- University of Illinois at Chicago
Authors
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Valentina Kosmerl
- University of Illinois at Chicago
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Alexander L Yarin
- University of Illinois Chicago
- University of Illinois at Chicago
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ORAL · Withdrawn
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