[Turkmath:9496] Symposium on Multiscale, Multiphysics and Turbulent flow Simulations - ICNAAM 2014
Mine Çağlar
MCAGLAR at ku.edu.tr
24 Oca 2014 Cum 12:43:09 EET
Sayın liste üyeleri,
12th International Conference of Numerical Analysis and Applied Mathematics (ICNAAM 2014) kapsamında düzenlediğimiz aşağıda ayrıntıları verilen sempozyuma katılımınızı bekleriz.
İyi çalışmalar,
Mine Çağlar
Koç Üniversitesi Matematik Bölümü
ICNAAM 2014, 22-28 September 2014, Rodos Palace Hotel, Rhodes, Greece (http://www.icnaam.org/)
67) Title: The 1st Symposium on Multiscale, Multiphysics and Turbulent flow Simulations
Organizers: Prof. Dr. M. Serdar ÇELEBİ, Department of Computational Science and Engineering, Istanbul Technical University- Turkey, Phone: +90- 212 285 7012, Fax: +90- 212 285 7073 and Assoc. Prof. Dr. Mine ÇAĞLAR, Department of Mathematics, Koç University - Turkey, Phone: +90- 212 338 1315, Fax: +90- 212 338 1559.
E-mail: mscelebi at itu.edu.tr and mcaglar at ku.edu.tr
URL: Web: http://www.be.itu.edu.tr/konferans/
The aim of this Symposium is to cover research areas related to multiscale, multiphysics and turbulent flows and create a collaborative environment for the leading scientists and research groups to share their experiences in fundamental and applied aspects. The core objective is to have a thorough understanding of these fields by giving an in-depth analysis of the simulation and modeling approaches to demonstrate the recent novel methods and the theories.
Emphasis will not be only on the theoretical aspects but also on the implementation of numerical methods and algorithms used in large scale simulations of multiscale, multiphysics and turbulent flows. All application areas ranging from fluid dynamics and biomedical flows to environmental sciences are welcome.
The Symposium covers the following topics of interest but is not limited to:
*Multiscale methods and approaches
*Loose and tight coupling approaches for multiphysics problems
*Large scale parallel simulations
*Finite Element Methods
*Two- or three-phase flows
*Single and many-phase turbulent flows
*Turbulent reactive flows
*Large Eddy Simulations and subgrid modeling
*Work flows for multiscale models
*Parallel numerical algorithms related to flow simulations
*Discrete Element Method
*Lattice Boltzmann Method
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