Through second order in height, a normally incident acoustic plane wave has the displayed mean reflected amplitude for a Dirichlet boundary. The propagating part of the power spectrum of surface height contributes a positive real correction to the negative flat reflection coefficient, while the evanescent part contributes an imaginary correction. The mean linear rough correction is zero.
The quadratic coherent correction weights the power spectrum of surface height by , so equal root mean square heights can give different mean fields. Only an additional long-spatial-scale approximation, with spectrum concentrated at , reduces it to . Second-order surface scattering therefore contains information absent from first-order coherent reflection.
Articles by others on the same topic
There are currently no matching articles.