Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published October 2015 | Published + Supplemental Material
Journal Article Open

Linear and nonlinear wave propagation in booming sand dunes

Abstract

The current field study examines linear and non-linear acoustic waves found in large desert sand dunes using field measurements of wave speed, frequency content, dispersion, and polarization. At the dune fields visited, an avalanching of sand can trigger a loud booming or rumbling sound with narrow peak frequencies centered between 70 and 105 Hz with higher harmonics. Prior to the onset of the nearly monotone booming, the emission consists of short bursts or burps of sound of smaller amplitude and over a significantly broader range of frequencies. These burps created at dune sites have similar frequency content to sounds generated by small-scale shearing in laboratory-scale experiments. By investigating the wave characteristics of both burping and booming emissions, this manuscript demonstrates that booming and burping correspond with the transmission of different waves within the dune. The burping sounds correspond to a surface Rayleigh wave with nonlinear and dispersive properties. The booming emission results from a linear, non-dispersive P-wave, which supports an earlier analysis where booming is modeled as the trapping of the body waves in the dune's surficial layer. Besides characterizing the booming and burping emissions, this manuscript illustrates the effect of scale in the wave propagation of granular materials, when non-linear, dispersive waves across small scales transition to linear, non-dispersive waves across larger scales.

Additional Information

© 2015 AIP Publishing LLC. Received 20 March 2015; accepted 14 September 2015; published online 27 October 2015. The authors would like to thank Dr. Chiara Daraio for the stimulating and fruitful discussions on wave propagation in a granular material. The help of Dr. Christopher Earls Brennen, Natalie Becerra, Dr. Angel Ruiz-Angulo, Dr. Erin Koos, and many others was essential during the field experiments at Dumont and Eureka Dunes. Travel and equipment support for N.M.V. was provided through funding from the Pieter Langerhuizen Lambertuszoon Fonds. Raw data supporting Figures 1, 3–8, and 10 are available in the supplementary material.

Attached Files

Published - 1.4931971.pdf

Supplemental Material - 652491_0_data_set_7757931_nlcw9j.csv

Supplemental Material - 652491_0_data_set_7757932_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757933_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757934_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757935_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757936_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757937_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757938_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757939_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757940_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757941_nlcw9k.csv

Supplemental Material - 652491_0_data_set_7757942_nlcw9l.csv

Supplemental Material - 652491_0_data_set_7757943_nlcw9l.csv

Supplemental Material - readme.txt

Files

652491_0_data_set_7757943_nlcw9l.csv
Files (7.2 MB)
Name Size Download all
md5:9c2a19fb9551537ecd28bdd729492d82
507 Bytes Preview Download
md5:08e937053038fcfe966631dd7f8a3d15
4.3 MB Preview Download
md5:60d7284aefacc47abf77e06f36613328
63.7 kB Preview Download
md5:6483d62d157f1d0e816d12a783a38174
16.7 kB Preview Download
md5:5a645ca7d693b5d0c13761dee79d9094
33.2 kB Preview Download
md5:80a959b27d28f622577ac5519f060d72
116.3 kB Preview Download
md5:c1de75580ae0ee109dd8b8e0931ea837
259.4 kB Preview Download
md5:9e338430d382c5d9d854664999fd5138
116.6 kB Preview Download
md5:1c1b23d998fdf1035db74f9958fad99e
481.8 kB Preview Download
md5:f35d176bc190cce65fcce0a92cf00b97
440.7 kB Preview Download
md5:bfc34fde34d5cce2b6141df8109e848b
695.6 kB Preview Download
md5:e1477c52a190f51de2acc1cdc6995496
481.2 kB Preview Download
md5:f818b80f700f09ed935ff37428416376
194.2 kB Preview Download
md5:60289893cab9bb3660ec34771427b952
16.5 kB Preview Download
md5:389296bccedfcb4c034034a5539e6493
3.7 kB Preview Download

Additional details

Created:
August 20, 2023
Modified:
October 25, 2023