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A novel method to develop nanoporous polymeric membranes using self-assembled magnetic nanoparticles as templates (2013)
Thesis
Ng, J. K. G. (2013). A novel method to develop nanoporous polymeric membranes using self-assembled magnetic nanoparticles as templates. (Thesis). University of Hull. Retrieved from https://hull-repository.worktribe.com/output/4216058

Nanoporous membrane systems have received attention within the scientific community due to their potential in micro-fluidic devices and bio-medical applications over the past decades. The increasing interest in applications drives the development of... Read More about A novel method to develop nanoporous polymeric membranes using self-assembled magnetic nanoparticles as templates.

Laboratory scale experiments with water surface waves (2013)
Thesis
Bedard, R. J. A. (2013). Laboratory scale experiments with water surface waves. (Thesis). University of Hull. Retrieved from https://hull-repository.worktribe.com/output/4214779

The thesis presents the development, implementation and results of two series of experiments, at large and small scale, for the study of surface gravity waves. A number of measurement techniques are developed and implemented to capture space and time... Read More about Laboratory scale experiments with water surface waves.

Non-stationary regimes of surface gravity wave turbulence (2013)
Journal Article
Bedard, R., Lukaschuk, S., & Nazarenko, S. (2013). Non-stationary regimes of surface gravity wave turbulence. JETP Letters, 97(8), 459-465. https://doi.org/10.1134/S0021364013080055

We present experimental results about rising and decaying gravity wave turbulence in a large laboratory flume. We consider the time evolution of the wave energy spectral components in ω- and k-domains and demonstrate that emerging wave turbulence can... Read More about Non-stationary regimes of surface gravity wave turbulence.

Gravity wave turbulence in a large flume (2013)
Book Chapter
Bedard, R., Nazarenko, S., & Lukaschuk, S. (2013). Gravity wave turbulence in a large flume. In Advances in Wave Turbulence (187 - 237). World Scientific

We overview past and new experimental results on gravity wave turbulence obtained at The Deep flume facility in Hull. The relatively large size of this flume, 12m × 6m × 1.5m, allows us to study the pure gravity waves without being concerned with mod... Read More about Gravity wave turbulence in a large flume.