Print Email Facebook Twitter Using reflected seismic waves to estimate rheological properties of the fluid-mud layer for port applications Title Using reflected seismic waves to estimate rheological properties of the fluid-mud layer for port applications Author Woofenden, George (TU Delft Civil Engineering & Geosciences) Contributor Kirichek, Alex (mentor) Draganov, D.S. (mentor) Wellmann, Florian (mentor) Degree granting institution Delft University of Technology Programme Applied Geophysics Date 2017-08-10 Abstract Current Port of Rotterdam procedure is to define the nautical depth based on the density of a fluid-mud layer, that settles at the bottom of the port. Rheological parameters could be an improved indicator for nautical depth and decrease the frequency and cost of dredging. I investigate the use of reflected seismic waves to derive in situ rheological parameters. I model a simplified port profile to investigate the effects of o_set on the types of seismic reflections acquired. Four models of how the density of the fluid-mud layer varies with depth are proposed. I undertake simple laboratory experiments to measure the effects of consolidation time, density and frequency has on the seismic velocities of the fluid-mud layer. From these laboratory experiments I calculate the shear modulus, bulk modulus, Young's modulus and Poisson's ratio for the fluid-mud layer of varying densities. Reflected seismic-wave velocities prove to be promising in deriving in situ rheological parameters, elastic constants and, potentially, viscosity. To reference this document use: http://resolver.tudelft.nl/uuid:edd49e99-362a-4be6-b66e-5b49496dc01d Part of collection Student theses Document type master thesis Rights © 2017 George Woofenden Files PDF msc_thesis_woofenden.pdf 5.59 MB Close viewer /islandora/object/uuid:edd49e99-362a-4be6-b66e-5b49496dc01d/datastream/OBJ/view