Assume you have to make a simple wavenumber integration code for propagation in Pekeris waveguides. a. Make a subroutine which computes the wavenumber kernel, or depth-dependent Green’s function,...


Assume you have to make a simple wavenumber integration code for propagation in Pekeris waveguides.


a. Make a subroutine which computes the wavenumber kernel, or depth-dependent Green’s function, along a contour belowthe positive realwavenumber axis. Make sure your code is numerically stable for large wavenumbers,


b. Check your code by qualitatively reproducing the kernels You decide to use FFP integration with a contour offset equal to the wavenumber sampling interval


c. What is the associated minimum attenuation of the wrap-around?


d. Using this offset, perform a numerical convergence analysis for the integration by computing the transmission loss at 46m depth and 10 km range for the Pekeris waveguide in assuming an attenuation of 0.5 dB/_ in the bottom.


e. Repeat the convergence analysis without contour offset and discuss the difference in convergence rate.


















May 19, 2022
SOLUTION.PDF

Get Answer To This Question

Submit New Assignment

Copy and Paste Your Assignment Here