awesomesoli.blogg.se

Dlc collaboratory cu boulder
Dlc collaboratory cu boulder







A maximum number of 40 participants will be accepted. You are encouraged to register as soon as possible.

#Dlc collaboratory cu boulder registration

The registration deadline is May 1st, 2019. As this is an advanced course, it is expected that participants already have a working knowledge of numerical fluid mechanics. When registering, participants will be invited to submit a brief personal overview of their research and interests in two-phase flow.

dlc collaboratory cu boulder dlc collaboratory cu boulder

The Workshop does not have any registration fee in order to promote the participation of students/researchers. Workshop registration and inscription fee Further information about ICMF 2019 are available in the Event listed below in this page. The end of the Workshop coincides with the beginning of the 10th International Conference on Multiphase Flow (ICMF 2019), which will take place in Rio de Janeiro on May 19th-24th, 2019. The Workshop will be held at the Federal University of Rio de Janeiro (UFRJ), Instituto Alberto Luiz Coimbra de Pós-Graduação e Pesquisa de Engenharia (COPPE), Cidade Universitaria, Bloco G, Mechanical Engineering Department Google Maps. MagniniĪdditional information can be found in the 2019 Workshop flyer Workshop location and travel information Theodorakis (Polish Academy of Sciences) and Dr. de Oliveira (Federal University of Paraiba), Prof. Mangiavacchi (State University of Rio de Janeiro), Prof. Anjos (Federal University of Rio de Janeiro), Prof.

dlc collaboratory cu boulder

The international team of lecturers is as follows: Prof. The Workshop is now at its 4th edition, following the first two editions in 20 that took place at the EPFL in Lausanne, Switzerland, and the 2018 edition at Kobe University, Japan. In addition, experimental two-phase flow visualization techniques will presented. We are happy to present this Workshop on the latest advances in the computational modelling of the interfacial dynamics of capillary two-phase flow phenomena using Computational Fluid Dynamics (CFD), Lattice Boltzmann (LB) and Molecular Dynamics (MD) methods.







Dlc collaboratory cu boulder