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   <dc:title>CFD analyses and performance comparison of micro-hydropowder plants</dc:title>
   <dc:creator>Grippa, Marco</dc:creator>
   <dc:subject>Àrees temàtiques de la UPC::Energies::Recursos energètics renovables</dc:subject>
   <dc:subject>Renewable energy sources</dc:subject>
   <dc:subject>Energies renovables</dc:subject>
   <dcterms:abstract>The project concerns the hydropower renewable energy technology at its micro scale:&#xd;
thanks to an internship performed with the Belgian startup TurbulentHydro, the purpose&#xd;
of this Master Thesis is to evaluate the energy performance of 2 di erent models currently&#xd;
under investigation: the so-called Flatblades and Streamlines con gurations. These&#xd;
layouts are similar in shape but di erent both in dimension and for the turbine used.&#xd;
After a little introduction on renewable energies and hydropower technology, the&#xd;
selected CFD simulation procedure and all its options have been explained as well as the&#xd;
choice of the turbulence model to apply, computing the meaningful parameters to add in&#xd;
the model. This dissertation highlights the &#xd;
uid dynamics behaviour by means of suitable&#xd;
softwares for this purpose: Autodesk Inventor, the 3D CAD mechanical design software&#xd;
in order to build, and edit when necessary, the geometries of the models considered,&#xd;
MeshMixer, a state-of-art software for locally adjusting the mesh of the starting model&#xd;
and OpenFOAM, a free and open source CFD program in order to run and evaluate any&#xd;
details of the analysis, simulating the operation conditions by means of its components&#xd;
and tools. Eventually, the most important CFD results are presented.&#xd;
Di erent con gurations bring di erent results. Regarding Flatblades model, the scope&#xd;
was re ned the CFD initial setup in order to achieve results as close to the real case&#xd;
validation as possible whereas, for Streamlines model, an additional new component has&#xd;
been added for improving the current design in terms of energy output at the turbine&#xd;
level. At the end, conclusions stated possible re nements and improvements for these&#xd;
simulations as well as uncertainties arose from the results that might be avoided for the&#xd;
next stages.</dcterms:abstract>
   <dcterms:issued>2016-09</dcterms:issued>
   <dc:type>UPC Master thesis</dc:type>
   <dc:rights>http://creativecommons.org/licenses/by-nc-nd/3.0/es/</dc:rights>
   <dc:rights>Open Access</dc:rights>
   <dc:rights>Attribution-NonCommercial-NoDerivs 3.0 Spain</dc:rights>
   <dc:publisher>Universitat Politècnica de Catalunya</dc:publisher>
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