The meeting of the seminar
«Supercomputer technologies
in science, education and industry»
| Chairman of the organizing committee | |
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Sadovnichy V.A. academician, rector of Lomonosov Moscow State University |
Co-Chairs of the organizing committee |
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Voevodin Vl.V. Corr. RAS, Director of Research Computing Center of Moscow State University |
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Sokolov I.A. academician, dean of the faculty of Computational Mathematics and Cybernetics of Lomonosov Moscow State University |
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Tikhonravov A.V. D. in Physics and Mathematics, Professor, Research Computing Center of Moscow State University |
Scientific Secretary of the seminar |
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| Kutov D.K. Research Computing Center of Moscow State University |
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The seminar was organized on the basis of the Scientific and Educational Center «Supercomputer Technologies». The reports cover all aspects of the use of supercomputers, parallel computing systems and distributed data processing methods for solving large computational problems. The seminar has a pronounced interdisciplinary nature, however, the various nuances of using supercomputer technologies are of interest to researchers from various fields.
The seminar is supported by the Moscow Center of Fundamental and Applied Mathematics.
Researchers, teachers, graduate and undergraduate students are invited.
PROGRAM
16:20 (GMT+3)
| Titarev V.A. | Doctor of Physical and Mathematical Sciences, Chief Researcher, FRC CS RAS |
Development and practical application of numerical modeling methods in problems of rarefied gas mechanics, propeller aeroacoustics and high-altitude aerodynamics
This report will provide a brief overview of the author's research findings in the development and practical application of numerical methods for gas flow modeling in four main areas of research. The first area is devoted to the development of high-precision nonlinear quasi-monotonic methods such as WENO and ADER for solving hyperbolic systems of conservation laws. The second area examines methods for solving kinetic equations, including efficient implicit schemes and methods on moving grids, and their application to solving spatial problems of rarefied gas mechanics. The third area develops a computational technology for modeling the aeroacoustics of complex propeller configurations in various flow regimes using unstructured grids with unmatched grid interfaces and its application to problems of flow past CROR propellers. The fourth area describes the development of an efficient implicit numerical method and software package for solving high-altitude aerodynamics problems and its application to problems of calculating the flow around the reentry vehicle of the next-generation manned transport vehicle (MV PTK) for S.P. Korolev RSC Energia.
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If you plan to participate in person and you do not have a pass to MSU, you must fill out the form no later than October 1 (Wednesday). Please note that access will be allowed only through the southern entrance of the Second Building of MSU and only during the seminar.





