
Jenna Hare
Dr. Jenna Hare is a Research Assistant Professor with the Center for Acoustics Research and Education as well as the Center for Coastal and Ocean Mapping. Her research interests lie at the intersection of the fields of physical oceanography and underwater acoustics with a focus on seafloor acoustics, sediment transport processes and bottom boundary layer dynamics. Dr. Hare completed her BSc in physics at Laval University (Quebec, Canada) followed by her M.Sc. and Ph.D. in oceanography at Dalhousie University (Nova Scotia, Canada).
Courses Taught
- OE 765/865: Underwater Acoustics
Research Interests
- Acoustics
- Ocean Acoustics
- Physical Oceanography
- Coastal Processes
Selected Publications
Hare, J., Lyons, A. P., Catoire, M., & Venegas, G. R. (2024). Measurements of temporal variability of acoustic scattering from the seafloor in shallow-water sandy sites.. J Acoust Soc Am, 156(4), 2727-2742. doi:10.1121/10.0030464
Hare, J., & Hay, A. E. (2023). On the internal velocity structure of sub-aqueous, gravity-driven granular flow: Measurements using MHz frequency sound. Physics of Fluids, 35(12). doi:10.1063/5.0177630
Hare, J., & Hay, A. E. (2022). On the concentration dependence of sound attenuation in aqueous suspensions of silt- and sand-sized sediment: A compilation and analysis of the available data.. JASA Express Lett, 2(3), 036002. doi:10.1121/10.0009830
Zedel, L., Hay, A. E., Wilson, G. W., & Hare, J. (2021). Pulse Coherent Doppler Profiler Measurement of Bedload Transport. Journal of Geophysical Research: Earth Surface, 126(4). doi:10.1029/2020jf005572
Hare, J., & Hay, A. E. (2020). On acoustic reflection from sand-sized water-saturated granular media at MHz frequencies: Measurements, models and the role of speckle.. J Acoust Soc Am, 148(5), 3291. doi:10.1121/10.0002657
Hare, J., & Hay, A. E. (2020). Phase speed in water-saturated sand and glass beads at MHz frequencies.. J Acoust Soc Am, 148(4), 2301. doi:10.1121/10.0002250
Hare, J., & Hay, A. E. (2018). Attenuation and group speed in water-saturated granular materials at MHz frequencies.. J Acoust Soc Am, 143(5), 2744. doi:10.1121/1.5033901
Hare, J., Hay, A. E., Zedel, L., & Cheel, R. (2014). Observations of the space-time structure of flow, turbulence, and stress over orbital-scale ripples. Journal of Geophysical Research: Oceans, 119(3), 1876-1898. doi:10.1002/2013jc009370