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The chamber itself was a biomass combustion chamber.At the end a new technology design, the spherical-diffusor combustion chamber is presented and analyzed while taking into account the enthalpy defects. Since December 2017, the lock flag does not hold anymore. Alternatively, you may contact a potential examiner directly.
You find our contact details here The scope of the Master Thesis work is to investigate possible flow-induced causes for vibrations close downstream of the feed water pumps at a nuclear power plant.
The work will include fluid dynamic simulations with different levels of ambition from 1D system analysis to detailed LES of vortex shedding.
Finally, the mass conservation, momentum, cure and energy equations are implemented all together to simulate the simultaneous filling and curing processes present in the RIM process.
The obtained numerical results show a good global accuracy when compared with other available numerical and experimental results, though considerably long computation times are required to perform the simulations.
A detailed analysis of free-stream flames is given.
In the end, the conventional combustion chamber was used to optimize the combustion while using physical phenomenon such as the vortex breakdown effect.
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Biomass combustion chamber analysis and optimization using the toolbox Open FOAM® and the flamelet model built and published by the CRECK modeling group (Chemical Reaction Engineering and Chemical Kinetics Group, Milano, Italy). The following publication is the master thesis of Tobias Holzmann done within the Thermoprozesstechnik Group Bosch in Lollar (Gießen / Germany).
The thesis introduces the basics of computational fluid dynamics and turbulence modeling.