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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Capillarity and wetting of non-Newtonian droplets

Wang, Yuli January 2016 (has links)
Capillarity and dynamic wetting of non-Newtonian fluids are important in many natural and industrial processes, examples cover from a daily phenomenon as splashing of a cup of yogurt to advanced technologies such as additive manufacturing. The applicable non-Newtonian fluids are usually viscoelastic compounds of polymers and solvents. Previous experiments observed diverse interesting behaviors of a polymeric droplet on a wetted substrate or in a microfluidic device. However, our understanding of how viscoelasticity affects droplet dynamics remains very limited. This work intends to shed light on viscoelastic effect on two small scale processes, i.e., the motion of a wetting contact line and droplet splitting at a bifurcation tip.   Numerical simulation is employed to reveal detailed information such as elastic stresses and interfacial flow field. A numerical model is built, combining the phase field method, computational rheology techniques and computational fluid dynamics. The system is capable for calculation of realistic circumstances such as a droplet made of aqueous solution of polymers with moderate relaxation time, impacting a partially wetting surface in ambient air.   The work is divided into three flow cases. For the flow case of bifurcation tube, the evolution of the interface and droplet dynamics are compared between viscoelastic fluids and Newtonian fluids. The splitting or non-splitting behavior influenced by elastic stresses is analyzed. For the flow case of dynamic wetting, the flow field and rheological details such as effective viscosity and normal stress difference near a moving contact line are presented. The effects of shear-thinning and elasticity on droplet spreading and receding are analyzed, under inertial and inertialess circumstances. In the last part, droplet impact of both Newtonian and viscoelastic fluids are demonstrated. For Newtonian droplets, a phase diagram is drawn to visualize different impact regions for spreading, splashing and gas entrapment. For viscoelastic droplets, the viscoelastic effects on droplet deformation, spreading radius and contact line motion are revealed and discussed. / <p>QC 20160329</p>
2

Etude de la régulation de température d'un milieu fini homogène diffusif et incertain à l'aide des trois générations de la commande CRONE / Study of temperature regulation of a diffusive and uncertain homogeneous medium using the three generations of the CRONE command

Christophy, Fady 15 December 2016 (has links)
Le contrôle de la température d'un milieu thermique reste d'une grande importance en raison du coût économique qu'il peut engendrer. Ainsi, un moyen efficace de réduire les coûts de chauffage/refroidissement est de fournir un bon système de contrôle qui limite l'énergie nécessaire pour exécuter ces tâches. À cette fin, nous étudierons le contrôle d'une interface diffusive homogène finie utilisant le contrôleur CRONE de trois générations et contrôlons leurs comportements. La nouveauté de ce travail existe dans l'utilisation d'un contrôleur de commande fractionnaire (le contrôleur CRONE) appliqué à une unité d'ordre fractionnaire et l'utilisation d'un contrôleur complexe (la troisième génération) qui n'est pas si familier dans le domaine des contrôleurs. Les résultats montrent le comportement et la robustesse des contrôleurs CRONE de trois générations. / Controlling thermal medium’s temperature remains of a great importance, because of the economic cost that it may engender. Thus, one effective way to reduce heating/cooling cost is by providing a good control system that limits power needed to run these tasks. For this purpose, we will study the control of a finite homogeneous diffusive interface using the three generations CRONE controller and control their behaviors. The novelty of this work exists in the use of a fractional order controller (the CRONE controller) applied to a fractional order plant and the use of a complex controller (the third generation) which is not so familiar in the controllers domain. The results show the behavior and the robustness of the three generations CRONE controllers.

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