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Transcript of International Scientific-Educational Programs and Projects of National Research University SSAU...
International Scientific-Educational Programs and Projects of National
Research University SSAU
Russia, Samara 2014
At the end of 1941 in our city called Kuibushev were evacuated enterprises of aviation industry that got the plan to produce airplanes IL-2 and aviation equipment. To prepare staff for this enterprises was founded Kuibushev aviation institute. Today it is Samara State Aerospace University (SSAU). In October 1942 first students began to learn.
1. 70-th anniversary of SSAU foundation
2
ABOUT SSAU
Since 1942 till now more than 70 000 students graduated from SSAU
10 schools, total 12 000 students
19 middle, 70 high, 35 postgraduate programs receive state license
54 departments (chairs), more than 800 lecturers
37 computer classrooms, media center
Total area of buildings 200 000 sq. meters
Sport complex with swimming pool
Aeronautics museum
Aviation engines history center
Training airdrome
7 dormitories and hotel
2. Educational capabilities of SSAU
3
One of the first among 28 innovative universities, which were approved to enter national project “Innovative programs of the institutes of higher education in Russia” in 2006-2007.
One of the main object of government investments in project “Development of nano-industry infrastructure in Russia” in 2008-2010.
One of the 29 national research universities in Russia. The status was approved in 2009. SSAU got annual grant for 5 –year program until 2013.
One of the 15 universities in Russia, which were approved to enter project “5-100” . SSAU got annual mega-grant from 2013 till 2020 for realization of its Roadmap. Main aim of this project is to enter top-100 in the world university rankings such as QS or ARWU.
3. Leading position of SSAU among technical universities in Russia:
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5
4. SSAU priority area for research and education
Generation of new ideas and engineering solutions
on the basis of fundamental sciences; transfer of
technologies in aerospace and other high-tech
economy directions
Strategic goalTo become one of the world’s leading scientific and
educational center, and to create an environment in
which scientists, designers, innovators and industry
leaders will be raised
Education
Aerospace
\
Space Engineering
Machine Dynamics and Vibroacoustics
Engines
Geoinformatics and computer
optics Research World’s leading research university in aerospace and complimentary breakthrough technologies, included in QS
“Engineering and Technology” Top-100 rating International interdisciplinary scientific and educational hub
Balance between main competences in aerospace and diversification of scientific and educational activities
High concentration of world’s leading scientists in breakthrough directions
One of the leading positions on the scientific and educational market in segment of high-tech technologies
Vision 2020
Mission
5. Qualitative change in students structure
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2013 2020
Increase in number masters and postgraduates in 2,5 times
Increase of additional education students in 3 times
Reduction of bachelor students number
Closure of non effective educational programs
2
1
Bachelors
Bachelors
Masters
Masters
PostgraduatesPostgraduates
Students and postgraduates Foreign studentsAttraction of young talents
►Regional, national and international competitions
►Development and implementation of informational seminars and additional classes
►Development of Talented Children Center
►Preparatory classes for foreign students
►Promotion in media, social media and targeted PR campaigns with leading agencies
►Summer schools
►Joint educational programs with technological companies
►Development of departments based on breakthrough research and educational programs
►Implementation of measures to improve the postgraduate system
BASIC CONCEPT - “EDUCATION THROUGH RESEARCH”
Leaders of production
6. Attraction of leading scientists will lead to increasein number of publications and average citation index
7
0
2
4
6
8
10
12
14
16
18
2020
1018
700
2019
936
700
2018
884
700
2017
827
650
2016
790
650
2015
763
650
2014
717
650
2013
650
650
Faculty in SSAU’s competitive areas
Visiting Professors
Attracted faculty with international reputation
Faculty attracted from Russian universities
Faculty attracted from RAS
Faculty attracted from SamSTU
K. LarinI. Meglinsky
1.100
1.000
900
800
700
600
500
400
300
200
100
0
Average citation Index per 1 faculty
J. Ordest
G. Daehn
A. Vakka
Total publications per yearAverage citation index per 1 faculty
Amount of publication (excluding integration with RAS)
2016
790
650
2015
763
650
2014
717
650
2013
650
650
2020
1018
700
2019
936
700
2018
884
700
2017
827
650
8
7. SSAU facilities
Space Rocket industrySpace Rocket industrySpace Rocket industrySpace Rocket industry
««SouzSouz--FGFG»»
««Souz-2Souz-2»»««Souz-USouz-U»»
Jet engine industryJet engine industryJet engine industryJet engine industry Aeronautics industryAeronautics industryAeronautics industryAeronautics industry
««NK-14-STNK-14-ST»» ««NK-37NK-37»»
««NK-33NK-33»»
««NK-32NK-32»»
««RD-180RD-180»»
Chassis and unitsChassis and units
««SSJ-100SSJ-100»»
««IL-476IL-476»»
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8. Main partners among enterprises
11stst launched on April the 19th, 2013 launched on April the 19th, 201311stst launched on April the 19th, 2013 launched on April the 19th, 2013
Students’ satellite Students’ satellite “AIST”“AIST”
Students’ satellite Students’ satellite “AIST”“AIST”
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9. Joint project with «Progress» State Rocket Space Centre
22stst launched on December the 28th, 2013 launched on December the 28th, 201322stst launched on December the 28th, 2013 launched on December the 28th, 2013
Jet engine NK-32 for Jet engine NK-32 for military aviation military aviation
Jet engine NK-32 for Jet engine NK-32 for military aviation military aviation
Universal engine core was Universal engine core was created by SSAU and created by SSAU and
“Kuznetsov”“Kuznetsov”
Universal engine core was Universal engine core was created by SSAU and created by SSAU and
“Kuznetsov”“Kuznetsov”Jet engine NK-65 Jet engine NK-65 for civil aviationfor civil aviationJet engine NK-65 Jet engine NK-65 for civil aviationfor civil aviation
Engine NK-361MEngine NK-361M for for locomotive locomotive
Engine NK-361MEngine NK-361M for for locomotive locomotive
Gas compressor Gas compressor station NK-36ST-32station NK-36ST-32
Gas compressor Gas compressor station NK-36ST-32station NK-36ST-32
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10. Joint project with Engine Building Plant «Kuznetsov»
11. Fields of SSAU international cooperation
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- Mutual educational programs and projects;
- Mutual science and research projects;
- Summer schools;
- Inviting foreign honorary professors and hosting lectures;
- Conferences, symposiums.
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CHINA
Harbin Instituteof Technology
2 years
RUSSIA
Samara StateAerospaceUniversity
3 years
2 years in China ++ 3 years in Russia == 5 years,2 degrees
2. Program of practical training together with Beijing polytechnic university (China)
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Aircraft design and construction
CHINA
BeijingPolytechnical
University
4 years
RUSSIA
Samara StateAerospaceUniversity
1 semester
Defenseof degree thesis
in Russia & China
Certificate of SSAUDiploma of BIT
15
1. International students project C’SPACE 2013 (France)
Group of post-graduate, under-graduate students and teachers successfully took part in the national launch campaign - C’Space 2011, 2012, 2013 - organized by the CNES, the French Space Agency in Biscarrosse
EXAMPLE OF STUDENTS’ PROJECTS
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2. Participation of SSAU in activities of ASRTU
Students’ innovation robot competition – Robot_2011
Students’ train of friendship – 2012During 70th anniversary of SSAU
Students’ train of friendship – 2013SSAU students during concert in China
3. The IХ-th International Summer School 2013
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1. Nanotechnologies research in collaboration with Beijing polytechnic university (China)
Diamond diffractive lenses for technological CO2-lenses
3-d photonic crystals coated by gold nanolayer
Nanophotonics and diffractive optics
EXAMPLES OF MUTUAL RESEARCH PROJECTS
Different approaches for fabrication of micro and nano-optical elements as well as for
optical meta-materials synthesis are developed.
Advanced numerical methods and software are developed for optical micro and nanostructure
design and simulation.
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2. Air-hydraulic system study in collaboration with University of Bath (Great Britain)
Shock absorbers of the hydraulic system
Analysis of outside and inside vibroacoustic
processes in the pumps and compressors
Exhaust silencer of the pneumatic
system
Suppression of pulsations and protection from noise
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3. Gas-dynamic research in collaboration with Haldor Topsoe A/S (Denmark)
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THANK YOU!
Thank you!