An inequality for longitudinal and transverse wave attenuation coefficients
Abstract
Total absorption, defined as the net flux of energy out of a bounded region averaged over one cycle for time harmonic motion, must be non-negative when there are no sources of energy within the region. This passivity condition places constraints on the non-dimensional absorption coefficients of longitudinal and transverse waves, and , in isotropic linearly viscoelastic materials. Typically, are small, in which case the constraints imply that coefficients of attenuation per unit length, , , must satisfy the inequality where , are the wave speeds. This inequality, which as far as the author is aware, has not been presented before, provides a relative bound on wave speed in terms of attenuation, or {\it vice versa}. It also serves as a check on the consistency of ultrasonic measurements from the literature, with most but not all of the data considered passing the positive absorption test.
Keywords
Cite
@article{arxiv.1605.04326,
title = {An inequality for longitudinal and transverse wave attenuation coefficients},
author = {Andrew N. Norris},
journal= {arXiv preprint arXiv:1605.04326},
year = {2017}
}
Comments
6 pages, 2 figures